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Max Crüsemann

@mcrusemann.bsky.social
444 followers 242 following 9 posts

#Naturalproducts researcher at Uni Bonn, interested in #biosynthesis, #genomemining, #discovery and #metabolomics

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Reposted by Max Crüsemann
Aurelien Carlier @acarlier.bsky.social · 13/06/2026
New preprint from the lab. Gousiekte is a disease of cattle and sheep in southern Africa caused by pavettamine, a toxin found in some plants grazed by the animals. We found that the toxin is actually made by obligate bacterial endophytes!
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Mitja M. Zdouc @mmzdouc.bsky.social · 31/05/2026
After a short hiatus from social media, I am back with some exciting news: I have recently been appointed assistant professor for Natural Product Research at the University of Vienna and have started my own research group: ZdoucLab.org!
zdouclab.org
Zdouc Lab
Microbial Natural Products Meet Data Science. The Zdouc research lab at the University of Vienna investigates naturally occurring, specialized molecules called natural products. These small molecules ...
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Mitja M. Zdouc @mmzdouc.bsky.social · 31/05/2026
Are you correlating natural product #metabolomics and bioactivity data? Annoyed by the lack of tools that also integrate #antiSMASH results? Meet #FERMO, our metabolomics data analysis webtool (fermo.bioinformatics.nl), now finally published in ACS Meas Sci Au doi.org/10.1021/acsm...
doi.org
FERMO: A Dashboard for Biochemometric Prioritization of Molecular Features from Mass Spectral Data
Many natural products can selectively modulate biological processes, making them prime candidates for drug discovery. However, the complexity of biological samples makes clear attribution of activity ...
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Jonathan Parra @jonathanparra.bsky.social · 20/05/2026
Evolutionary strategies of late-stage diversification in bacterial biosynthetic gene clusters portlandpress.com/essaysbioche... Nice review by @pthiel.bsky.social and Aleksandra Nivina
portlandpress.com
Evolutionary strategies of late-stage diversification in bacterial biosynthetic gene clusters
Abstract. Natural products are complex chemical molecules produced by organisms to carry out a wide range of functions. The remarkable chemical diversity of these compounds arises from the diversity o...
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Reposted by Max Crüsemann
Nadine Ziemert @nadineziemert.bsky.social · 20/05/2026
I recently joined Cassandra Quaves podcast to talk about natural products, genome mining, hidden microbial chemistry, and how computational biology and AI can help us find new molecules from DNA. m.youtube.com/watch?v=yEav... Feedback is highly appreciated, can’t watch myself 🙈 #secmet
m.youtube.com
Genome Mining and the Quest for New Antibiotics with Dr Nadine Ziemert
YouTube video by TeachEthnobotany
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Reposted by Max Crüsemann
Mitja M. Zdouc @mmzdouc.bsky.social · 26/02/2026
Great to see it finally published! I've tried it during beta testing and it works great! Users of v1 will feel at home right away!
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Brian O. Bachmann @brianobachmann.bsky.social · 25/02/2026
We are delighted to share our vision in #RSCChemBioy of how to incorporate natural product discovery (and any drug discovery) into the framework of personalized medicine - drug discovery using patients, but not in patients! #natprod #secmet pubs.rsc.org/en/content/a...
Overview of the paper in cartoon form
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Sam Williams @samwill.bsky.social · 18/02/2026
Check out our paper in @asm.org Applied and Environmental Microbiology 🍾 OSMAC guided bioprospecting of Atlantic sponges reveals novel bacterial species and the antimicrobial thiazole alkaloid agrochelin II | Applied and Environmental Microbiology journals.asm.org/doi/10.1128/... #secmet #microsky
journals.asm.org
OSMAC guided bioprospecting of Atlantic sponges reveals novel bacterial species and evidence for the antimicrobial thiazole alkaloid agrochelin II | Applied and Environmental Microbiology
Bioactive microbial natural products remain the preeminent source of new lead compounds for drug development. Due to the increasingly high levels of strain and compound rediscovery from terrestrial en...
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Reposted by Max Crüsemann
Conor McClune @cmcclune.bsky.social · 18/02/2026
Lovely C&EN @cenmag.bsky.social story on the history and personal impact of the cancer drug Taxol. After spending recent years deciphering how yew trees, our source for Taxol, synthesize this lifesaving drug, it’s so nice to see it in the larger context #secmet #medsky Plants are amazing chemists.
cen.acs.org
Paclitaxel saved my life. New discoveries could boost supply
After decades, scientists have finally pieced together the 23-step biosynthetic pathway to produce this cancer drug
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Reposted by Max Crüsemann
Ákos T Kovács @evolvedbiofilm.bsky.social · 17/02/2026
Ah, a nice continuation of their previous Paenibacillus-mediated bioconversion of Pseudomonas lipopeptide (which I already like a lot); now, characterization of enzymes behind the process
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Reposted by Max Crüsemann
Maite Colinas @maitecolinas.bsky.social · 10/02/2026
In our latest preprint we report the unexpected discovery of Epi-STR, an R-stereoselective ortholog of the S-selective canonical Strictosidine synthases (STRs). Found in the rather obscure plant Pogonopus specious. This work was led by my stellar student Clara Morweiser! #natprod #PlantScience
Scheme showing the Pictet-Spengler reaction between tryptamine and a secoiridoid by canonical S-selective STRs compared to the newly discovered Epi-STR. On the right a photo of the pink flowers of Pogonopus speciosus. Photo taken by Eva Rothe.
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Ákos T Kovács @evolvedbiofilm.bsky.social · 18/01/2026
Phylogeny-­ Aware Metabologenomics Accurately Assigns Natural Products to Biosynthetic Gene Clusters @microbiotech.bsky.social by Judith Boldt et al from Ulrich Nübel and @drrolfmueller.bsky.social enviromicro-journals.onlinelibrary.wiley.com/doi/pdf/10.1...
enviromicro-journals.onlinelibrary.wiley.com
Phylogeny‐Aware Metabologenomics Accurately Assigns Natural Products to Biosynthetic Gene Clusters
We report a statistical approach for associating biosynthetic gene clusters with their cognate metabolites and demonstrate its unprecedented power for scalable natural product discovery. Notably, it ...
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Reposted by Max Crüsemann
Natural Product Reports @natprodreports.rsc.org · 14/01/2026
🔓Don't miss this #OpenAccess review by Eric W. Schmidt, Vinayak Agarwal & co. at @utah.edu & @gtsciences.bsky.social looking at peptidic natural products isolated from the sponge hosts and the associated microbiome #natprod #secmet Check it out in full on our website🔽
pubs.rsc.org
Discovery, biosynthesis, and bioactivities of peptidic natural products from marine sponges and sponge-associated bacteria
Covering 2010 to 2025 Sponges are benthic, sessile invertebrate metazoans that are some of the most prolific sources of natural products in the marine environment. Sponge-derived natural products are…
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Reposted by Max Crüsemann
Piel Lab @piellab.bsky.social · 18/11/2025
Happy to share work by Maria and awesome collaborators published in Nature Chem Bio! Using metagenomic, single-bacterial, and biochemical methods we provide insights into uncultivated bacterial symbionts as rich sources of bioactive natural products in marine sponges. #DrugDiscovery #NaturalProducts
nature.com
Chemical richness and diversity of uncultivated ‘Entotheonella’ symbionts in marine sponges - Nature Chemical Biology
Marine sponges host bacteria that produce diverse bioactive compounds. Here, the authors conduct a large-scale metagenomic, single-bacterial and biochemical study to reveal the untapped biosynthetic p...
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Reposted by Max Crüsemann
Dr Katherine Duncan @kateduncan.bsky.social · 04/11/2025
Molecules to medicine: advances in metabolomics for natural product drug discovery by Victoria Deleray, Pieter C Dorrestein & Nicole E Avalon #naturalproducts #secmet #metabolomics www.sciencedirect.com/science/arti...
sciencedirect.com
Molecules to medicine: advances in metabolomics for natural product drug discovery
Recent advances in metabolomics are accelerating natural product (NP) drug discovery. NPs possess diverse biological relevance and comprise a signific…
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Reposted by Max Crüsemann
Dan Udwary @danudwary.secondarymetabolism.com · 04/11/2025
So cool. Greg Challis shows that a methylenomycin precursor is a better antibiotic than methylenomycin itself. This is in S.coelicolor A3(2)! Probably many similar examples yet to be discovered of pathways intermediates being useful, but consistently overlooked. #secmet pubs.acs.org/doi/10.1021/...
pubs.acs.org
Discovery of Late Intermediates in Methylenomycin Biosynthesis Active against Drug-Resistant Gram-Positive Bacterial Pathogens
The methylenomycins are highly functionalized cyclopentanone antibiotics produced by Streptomyces coelicolor A3(2). A biosynthetic pathway to the methylenomycins has been proposed based on sequence analysis of the proteins encoded by the methylenomycin biosynthetic gene cluster and the incorporation of labeled precursors. However, the roles played by putative biosynthetic enzymes remain experimentally uninvestigated. Here, the biosynthetic functions of enzymes encoded by mmyD, mmyO, mmyF, and mmyE were investigated by creating in-frame deletions in each gene and investigating the effect on methylenomycin production. No methylenomycin-related metabolites were produced by the mmyD mutant, consistent with the proposed role of MmyD in an early biosynthetic step. The production of methylenomycin A, but not methylenomycin C, was abolished in the mmyF and mmyO mutants, consistent with the corresponding enzymes catalyzing the epoxidation of methylenomycin C, as previously proposed. Expression of mmyF and mmyO in a S. coelicolor M145 derivative engineered to express mmr, which confers methylenomycin resistance, enabled the resulting strain to convert methylenomycin C to methylenomycin A, confirming this hypothesis. A novel metabolite (premethylenomycin C), which readily cyclizes to form the corresponding butanolide (premethylenomycin C lactone), accumulated in the mmyE mutant, indicating the corresponding enzyme is involved in introducing the exomethylene group into methylenomycin C. Remarkably, both premethylenomycin C and its lactone precursor were one to two orders of magnitude more active against various Gram-positive bacteria, including antibiotic-resistant Staphylococcus aureus and Enterococcus faecium isolates, than methylenomycins A and C, providing a promising starting point for the development of novel antibiotics to combat antimicrobial resistance.
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Pablo Ivan Nikel @pabnik.bsky.social · 03/11/2025
Growth-coupled microbial biosynthesis of the animal pigment xanthommatin — Led by Leah Bushin, featuring M. Gracia Alvan, @danielvolke.bsky.social @oscarpuiggene.bsky.social in a fantastic collaboration w/Brad Moore @labnikel.bsky.social @natbiotech.nature.com 🦑 www.nature.com/articles/s41...
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Nadine Ziemert @nadineziemert.bsky.social · 28/10/2025
Happy to share our newest manuscript about the discovery and hererologous expression of metanodin, a new lassopeptide with unprecedented structural features directly from soil metagenomes. pubs.acs.org/doi/full/10.... #secmet #lassopeptides #syntheticbiology
pubs.acs.org
Discovery and Heterologous Expression of the Soil Metagenome-Derived Lasso Peptide Metanodin with an Unprecedented Ring Structure
Culture-independent metagenomic approaches have proven to be effective tools for identifying previously hidden biosynthetic gene clusters (BGCs) encoding novel natural products with potential medical relevance. However, producing these compounds remains challenging as metagenomic BGCs often originate from organisms phylogenetically distant from available heterologous hosts. Lasso peptides, a subclass of ribosomally synthesized and post-translationally modified peptide (RiPP) natural products, exhibit diverse bioactivities, yet no lasso peptide has previously been discovered directly from a metagenome. Here, we report the discovery and heterologous expression of the first soil metagenome-derived lasso peptide. Expression of its biosynthetic gene cluster in Escherichia coli, followed by mass spectrometry analysis, strongly supported the predicted amino acid sequence and lasso structure of the peptide. Notably, this lasso peptide is the first to feature asparagine as the ring-forming residue at position one. Taxonomic analysis of the corresponding BGC identified an uncultivated member of the Steroidobacterales family (Gammaproteobacteria) as the closest known relative of the potential native host. These findings underscore the potential of metagenomic genome mining to reveal structurally novel RiPPs and to expand our understanding of the natural diversity of lasso peptides.
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Dr Katherine Duncan @kateduncan.bsky.social · 27/10/2025
Marine Biosciences Assistant/Associate Prof job at University of Florida explore.jobs.ufl.edu/en-us/job/53... [for MNP folks, this is where Sansa Loesgen @loesgenlab.bsky.social is based]
explore.jobs.ufl.edu
University of Florida - Details - Assistant/Associate Professor in Marine Bioscience
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Mehdi Beniddir @mehdibeni.bsky.social · 13/10/2025
Thrilled to share with you a recent work from our group: Computational Mass Spectrometry-Based Reassessment of European Amanita sect. Phalloideae Cyclopeptidome | Journal of Natural Products pubs.acs.org/doi/10.1021/... Please have a look to the associated MassQL compendium.
pubs.acs.org
Computational Mass Spectrometry-Based Reassessment of European Amanita sect. Phalloideae Cyclopeptidome
An advanced metabolomic workflow featuring expert knowledge-tailored mass spectral queries and multi-informative molecular networking was applied to French DNA-barcoded collections of Amanita species ...
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Reposted by Max Crüsemann
bioRxivpreprint @biorxivpreprint.bsky.social · 16/10/2025
IDBac: an open-access web platform and compendium for the identification of bacteria by MALDI-TOF mass spectrometry. www.biorxiv.org/content/10.1101/202…
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Natural Product Reports @natprodreports.rsc.org · 26/09/2025
Be sure to read this review, part of our Industrial Perspective themed collection, by Stefano Donadio & co. from NAICONS Srl discussing the trends in metabolite discovery from Actinomycetes #secmet #natprod Find it in full below👇
pubs.rsc.org
Trends in metabolite discovery from Actinomycetes
Covering: 2013 to 2023 In this review, we analyzed the scientific literature of the period 2013–2023 that reported novel specialized metabolites from the Actinomycetes, one of the most prolific…
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Marnix Medema @marnixmedema.bsky.social · 27/09/2025
Awesome work, @mmzdouc.bsky.social !
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Nadine Ziemert @nadineziemert.bsky.social · 27/09/2025
Happy to share our newest preprint. PhyloNaP as a user friendly database of phylogeny for enzymes involved in natural product production and as public repository for well curated phylogenetic trees. Happy Tree Building!!! #phylogeny #secmet #bioinformatics www.biorxiv.org/content/10.1...
biorxiv.org
PhyloNaP: a user-friendly database of Phylogeny for Natural Product-producing enzymes
Phylogenetic analysis is widely used to predict enzyme function, yet building annotated and reusable trees is labor-intensive and requires extensive knowledge about the specific enzymes. Existing reso...
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Dan Udwary @danudwary.secondarymetabolism.com · 24/09/2025
(I have one too! Probably lots of overlap...) And check out the Secondary Metabolism feed. Lots of awesome science here on Bluesky! bsky.app/profile/did:...
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Mitja M. Zdouc @mmzdouc.bsky.social · 25/09/2025
@mitjare.bsky.social kicking off the second day of the VAAM Workshop at @freieuniversitaet.bsky.social talking about the phyllosphere, its bacterial inhabitants and the natural products they produce - including surfactants!
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dnarnaresearch.bsky.social @dnarnaresearch.bsky.social · 26/09/2025
PhyloNaP: a user-friendly database of Phylogeny for Natural Product-producing enzymes doi.org/10.1101/2025...
doi.org
PhyloNaP: a user-friendly database of Phylogeny for Natural Product-producing enzymes
Phylogenetic analysis is widely used to predict enzyme function, yet building annotated and reusable trees is labor-intensive and requires extensive knowledge about the specific enzymes. Existing reso...
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Reposted by Max Crüsemann
Metabolomics-guided Natural Product Discovery @ Leibniz-HKI @mnd-hki.bsky.social · 26/09/2025
Just wrapped up inspiring days of science and networking at the VAAM Workshop “Biology of Bacteria Producing Natural Products” in Berlin! Our team’s first conference ended on a high note — 2nd prize for best poster! 🥈🥳 Thanks to the organizers @niedermeyer-lab.bsky.social for a fantastic meeting. 🙏
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Maximilian Frey @maximilianfrey.bsky.social · 29/08/2025
pubs.rsc.org/en/content/a... We just published the paper Biosynthesis of biologically active terpenoids in the mint family (Lamiaceae) in Natural Products Reports. Thanks to everyone involved! :)
pubs.rsc.org
Biosynthesis of biologically active terpenoids in the mint family (Lamiaceae)
Covering: 2000 to 2025The Lamiaceae family, the sixth largest among angiosperms, is renowned for its rich diversity of terpenoids, many of which exhibit remarkable bioactivities, including anti-inflam...
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Alex Chase 🧬🌋🌊 @microbomics.bsky.social · 12/07/2025
New work led by the amazing @aprillukowski.bsky.social lab. Love working on these interdisciplinary projects discovering new chemical diversity in nature. Microbes are the best chemists! pubs.acs.org/doi/10.1021/...
pubs.acs.org
Metagenomic Identification of Brominated Indole Biosynthetic Machinery from Cyanobacteria
Halogenated indole natural products have been isolated from a variety of organisms, including plants, marine algae, marine invertebrates, and bacteria. Aquatic cyanobacteria, in particular, are rich producers of brominated indoles, but their cognate biosynthetic enzymes have only been successfully linked in a limited number of natural products, such as the eagle-killing toxin aetokthonotoxin (AETX). The biosynthetic pathway for AETX involves five enzymes, two of which were previously undescribed due to incomplete annotations as hypothetical proteins. Our recent elucidation of AETX biosynthesis established functions of the two previously unknown proteins as enzymes responsible for tryptophan halogenation (AetF) and nitrile synthesis (AetD). Given their sequence novelty, we queried metagenomic data sets for these two enzymes and identified two new cyanobacterial haloindole biosynthetic gene clusters (BGCs) from marine sediment in Moorea, French Polynesia, and soil-derived samples in Maunawili Falls, Hawaii. We characterized the recovered BGCs by biochemically validating a new AetF homologue that exclusively halogenates free indole, rather than tryptophan as observed in AETX biosynthesis, and a new AetD homologue that harbors distinct substrate preferences, expanding the scope of nitrile biosynthesis. Additional characterization of core and accessory enzymes within these AETX-like BGCs highlights the breadth and diversity of haloindole biosynthetic machinery in cyanobacteria.
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FrankeLab @frankelab.bsky.social · 10/07/2025
Extremely happy to see our withanolide biosynthesis paper out in @natcomms.nature.com‬ rdcu.be/evHOF Fantastic team effort with the Pucker group @bpucker.bsky.social‬ @puckerlab.bsky.social‬ at @unibonn.bsky.social and Heretsch, Herde and Witte groups at @unihannover.bsky.social. Funded by @dfg.de
rdcu.be
Phylogenomics and metabolic engineering reveal a conserved gene cluster in Solanaceae plants for withanolide biosynthesis
Nature Communications - Withanolides are plant steroids with potent bioactivities found in many medicinal plants including Withania somnifera, but their biosynthetic pathway is largely unknown....
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Nature Chemical Biology @natchembio.nature.com · 13/06/2025
A new paper reports the genomic discovery and biochemical characterization of a widely distributed gene cluster family for briarane diterpenoid biosynthesis in metazoans www.nature.com/articles/s41...
nature.com
A widespread metabolic gene cluster family in metazoans - Nature Chemical Biology
Grayson et al. report the genomic discovery and biochemical characterization of a widely distributed gene cluster family for briarane diterpenoid biosynthesis in metazoans. This study expands our unde...
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Brian O. Bachmann @brianobachmann.bsky.social · 13/06/2025
Dracomicins, Hybrid Oligosaccharide–Nonribosomal Peptide Antibiotics from Amycolatopsis Species pubs.acs.org/doi/10.1021/...
On the left, a picture of a Petri dish showing an amycalotopsis from which comes in the center, a cartoon dragon and under the dragon the molecules called Dracomycins, which are drawn in the shape of the dragon. On the right a petri dish showing a cartoon of zones of inhibition.
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Dr Katherine Duncan @kateduncan.bsky.social · 13/06/2025
Save the date!
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Nadine Ziemert @nadineziemert.bsky.social · 30/05/2025
New preprint: we sequenced one soil sample with ultra-deep hybrid metagenomics and found… → 800+ MAGs → 11,000+ BGCs → and still nowhere near saturation. Soil is wild. Preprint here: www.biorxiv.org/content/10.1... #microbiome #metagenomics #BGCs #naturalproducts #secmet
biorxiv.org
Ultra-deep long-read metagenomics captures diverse taxonomic and biosynthetic potential of soil microbes
Background Soil ecosystems have long been recognized as hotspots of microbial diversity, but most estimates of their complexity remain speculative, relying on limited data and extrapolation from shall...
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Mingxun Wang @mingxunwang.bsky.social · 12/05/2025
I am thrilled to share after years of work/procrastination that the MassQL manuscript is finally published in @natmethods.nature.com - "A universal language for finding mass spectrometry data patterns". This was an team effort from all co-authors that helped shape MassQL and how it could be used.
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Martin Grininger @m-grininger.bsky.social · 23/04/2025
📢 The University of Frankfurt (Germany) is hiring a Full Professor in Organic Synthesis -->Cutting-edge research in an open, collaborative environment? Check out the call and join one of Germany’s leading research universities. #AcademicJobs #FacultyPosition www.nature.com/naturecareer...
nature.com
Professor (W3) in Organic Synthesis - Frankfurt am Main, Hessen (DE) job with Johann Wolfgang Goethe-Universität Frankfurt | 12838450
Goethe University Frankfurt am Main invites applications for the position of Professor (W3) in Organic Synthesis at the Faculty of Biochemistry, Ch...
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Gerry Wright @gdwantibiotics.bsky.social · 26/03/2025
The latest discovery from the lab and great colleagues at McMaster and U Illinois, Chicago. Lariocidin, a new lasso peptide antibiotic that inhibits the ribosome. rdcu.be/efdha
rdcu.be
A broad-spectrum lasso peptide antibiotic targeting the bacterial ribosome
Nature - A new lasso peptide antibiotic exhibits broad-spectrum activity against Gram-negative and Gram-positive bacteria by interfering with bacterial protein synthesis, is unaffected by common...
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Max Crüsemann @mcrusemann.bsky.social · 28/02/2025
Hybrid does the trick-Happy to share our latest paper on the biosynthesis of the nitro-Tyr residue in the nonribosomal anti-TB antibiotic rufomycin that involved unexpected RiPP precursor nitration. Congrats to all authors and great collaboration with Max Cryle! www.cell.com/chem/fulltex...
cell.com
Ribosomal pentapeptide nitration for non-ribosomal peptide antibiotic precursor biosynthesis
We discovered and characterized the biosynthesis of the noncanonical 3-nitrotyrosine building block found in the potent non-ribosomal antituberculosis peptide antibiotic rufomycin. In this pathway, a ...
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Pieter Dorrestein @pieterdorrestein.bsky.social · 27/02/2025
It’s not every day one gets to publish an article with NASA astronauts. This journey started in 2019 and withe the goal to understand the microbial and chemical make-up of the space station. We had lots of experience with analysis from swabs on earth.
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Michael Witting @metabomichael.bsky.social · 28/02/2025
I'm happy to share a correspondence in @naturemetabolism.bsky.social in which I was involved. #metabolomics #lipidomics www.nature.com/articles/s42...
nature.com
Discovery of metabolites prevails amid in-source fragmentation - Nature Metabolism
Nature Metabolism - Discovery of metabolites prevails amid in-source fragmentation
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Nadine Ziemert @nadineziemert.bsky.social · 06/02/2025
I recently joined the Tiny Matters podcast talking about the resurrection of ancient antibiotics and how reviving ancient molecules could help us understand the diversity of bacterial chemistry 🧪💡 🎧 Listen here: www.acs.org/pressroom/ti... #Evolution #Antibiotics #Paleomycin #TinyMatters #SecMet
acs.org
Can evolution go backwards? - American Chemical Society
Can more complex traits revert back to a simpler form?
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Russell Cox Chem @russellcoxchem.bsky.social · 27/01/2025
pubs.acs.org/doi/10.1021/...
pubs.acs.org
Identification of a Biosynthetic Gene Cluster for the Production of the Blue-Green Pigment Xylindein by the Fungus Chlorociboria aeruginascens
Xylindein is a blue-green pigment produced by the fungi Chlorociboria aeruginascens and Chlorociboria aeruginosa. Its stunning color and optoelectronic properties make xylindein valuable for textiles ...
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Nigel Mouncey @nigelmouncey.bsky.social · 17/01/2025
Our new review article "Microbial secondary metabolites: advancements to accelerate discovery towards application" in Nature Reviews Microbiology is now published! rdcu.be/d6BHX
rdcu.be
Microbial secondary metabolites: advancements to accelerate discovery towards application
Nature Reviews Microbiology - In this Review, Dinglasan and colleagues explore innovations that facilitate rapid microbial secondary metabolite discovery, focusing on recent techniques for the...
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Nature Microbiology @natmicrobiol.nature.com · 08/01/2025
OUT NOW - Streptomyces secretes a siderophore that sensitizes competitor bacteria to phage infection www.nature.com/articles/s41...
nature.com
Streptomyces secretes a siderophore that sensitizes competitor bacteria to phage infection - Nature Microbiology
A secondary metabolite sensitizes competitor Bacillus subtilis to a wide panel of lytic phages by sequestering iron and preventing the activation of Spo0A.
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Max Crüsemann @mcrusemann.bsky.social · 06/01/2025
Way to go Leah!
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Dr Katherine Duncan @kateduncan.bsky.social · 06/01/2025
Antarmycins: Discovery, Biosynthesis, Anti-pathogenic Bacterial Activity, and Mechanism of Action from Deep-Sea-Derived Pseudonocardia antarctica pubs.acs.org/doi/full/10....
pubs.acs.org
Antarmycins: Discovery, Biosynthesis, Anti-pathogenic Bacterial Activity, and Mechanism of Action from Deep-Sea-Derived Pseudonocardia antarctica
The rapid emergence of antimicrobial-resistant pathogenic microbes has accelerated the search for novel therapeutic agents. Here we report the discovery of antarmycin A (1), an antibiotic containing a...
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Dr Katherine Duncan @kateduncan.bsky.social · 06/01/2025
Happy New Year! I enjoyed a relaxing 2 weeks off, no travel, spending time with family & friends, coastal walks, gym, coffee, great food and even a little bit of snow. Had a total break from social media and emails, deleted X in my last act before the holidays and am excited about the year ahead.
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Mitja M. Zdouc @mmzdouc.bsky.social · 10/12/2024
Are you working on natural products? We’ve just released version 4.0 of the MIBiG data standard and repository! It now includes 3059 biosynthetic gene clusters, thanks to the combined efforts of 288 expert contributors. A thread: (1/8) academic.oup.com/nar/advance-...
academic.oup.com
MIBiG 4.0: advancing biosynthetic gene cluster curation through global collaboration
Abstract. Specialized or secondary metabolites are small molecules of biological origin, often showing potent biological activities with applications in ag
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