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Maric Lab

@hmariclab.bsky.social
193 followers 276 following 7 posts

#EmmyNoether Lab of Hans Maric @uni-wuerzburg.de #ChemBio #Peptides #PNA #Microarrays #ChemicalProbes pharmacological targeting of #PPI #IDR #RNA MaricLab.com www.uni-wuerzburg.de/en/rvz/researc… bit.ly/14S4Z8k.

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Maric Lab @hmariclab.bsky.social · 21/07/2025
Excited to share the new Peptide Libraries volume via Springer Nature (Methods in Molecular Biology series): link.springer.com/book/10.1007... 19 protocols & perspectives from leading labs on #PeptideLibraries design, synthesis & #screening. Thanks to co-editor Ronald Frank and all contributors!
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Christiane Huhn @christianehuhn.bsky.social · 11/05/2025
Our eSylites are on the cover of the current #JACS issue! Check it out 👇
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Journal of the American Chemical Society (JACS) @jacs.acspublications.org · 07/05/2025
On the cover of this week's #JACS: "eSylites: Synthetic Probes for Visualization and Topographic Mapping of Single Excitatory Synapses" Read it here 🔗 buff.ly/tunBPI2 #ChemSky
jacs-covers-25
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David Konrad @dbkonrad.bsky.social · 14/05/2025
We are looking for a PhD candidate in medicinal / organic chemistry with a passion for drug discovery to join our young and enthusiastic team @univie.ac.at. For details, visit: jobs.univie.ac.at/job/Universi.... Reposts are very much appreciated!
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Ylva Ivarsson @ivarssonlab.bsky.social · 06/05/2025
We uncover that the #USP8 rhodanese domain is a #peptide binding module that binds short linear motifs in potential substrates: biologydirect.biomedcentral.com/articles/10....
biologydirect.biomedcentral.com
Elucidation of short linear motif-based interactions of the MIT and rhodanese domains of the ubiquitin-specific protease 8 - Biology Direct
Ubiquitin-specific protease 8 (USP8) is a deubiquitinating enzyme with essential functions in protein trafficking and stability. It is a multidomain protein, with an N-terminal MIT (microtubule intera...
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Malte Gersch @maltegersch.bsky.social · 05/05/2025
Super happy to share that our work on the specific inhibition of USP30 - a clinical stage Parkinson's drug target - is now online at NSMB www.nature.com/articles/s41... Have a read if you fancy chimeric protein engineering or a framework for DUB ligandability. Huge congratulations to Nafizul & team!
nature.com
Chimeric deubiquitinase engineering reveals structural basis for specific inhibition of the mitophagy regulator USP30 - Nature Structural & Molecular Biology
Kazi et al. report the crystal structure of the mitochondrial deubiquitinase USP, a clinical stage Parkinson’s disease drug target, in complex with a specific inhibitor. The authors delineate a framew...
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Ivan Talucci @ivantalucci.bsky.social · 10/05/2025
Happy to share the positive review for "Epitope Sequence and Modification Fingerprints of Anti-Aβ Antibodies" doi.org/10.7554/eLif... Now online in @elife.bsky.social Looking forward to sharing the revised version!🔜 @hmariclab.bsky.social @uni-wuerzburg.de @maxplanck.de @unimedizin-goe.bsky.social
doi.org
Epitope Sequence and Modification Fingerprints of Anti-Aβ Antibodies
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Maric Lab @hmariclab.bsky.social · 12/05/2025
Just reviewed @elife.bsky.social Epitope Sequence and Modification Fingerprints of Anti-Aβ Antibodies Resource & deep dive into how therapeutic & research #Antibody detect key #AmyloidBeta variants in #AlzheimersDisease Thanks @unimedizin-goe.bsky.social, @mpi-nat.bsky.social & @uni-wuerzburg.de !
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Giorgia Danti @giorgiadanti.bsky.social · 05/05/2025
First post, first paper 🤭 Proud to share with all of you our work on mRNA blocking using our own high-throughput antisense approach! doi.org/10.1002/advs... Many thanks to @hmariclab.bsky.social, @jorg-vogel-lab.bsky.social and especially Linda for the amazing collaboration 😸
doi.org
High‐Throughput Tiling of Essential mRNAs Increases Potency of Antisense Antibiotics
The systematic tiling of essential genes’ mRNA here presented, proposes a valuable tool for the identification of novel PNA sequences with antibiotic potential. The high-throughput synthetic set up o...
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Jörg Vogel @jorg-vogel-lab.bsky.social · 05/05/2025
And this only the beginning! I’m glad we did that collaboration with the Maric lab. ASOs for the people!
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Maric Lab @hmariclab.bsky.social · 05/05/2025
Thrilled to see our work on targeted #mRNA blockade using high-throughput #antisense screening, now published in Advanced Science! 🚀 A true team effort in close collaboration with the @jorg-vogel-lab.bsky.social with special credit to Popella & Danti! ASOs for the people! bsky.app/profile/gior...
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PlessLab @plesslab.bsky.social · 14/03/2025
Our latest paper on the sodium leak channel NALCN complex is now online. We found that the neuronal SNARE proteins syntaxin 1A and SNAP25 inhibit sodium leak currents both in heterologous systems and in neurons! www.science.org/doi/10.1126/...
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Sauer Lab @sauer-lab.bsky.social · 12/02/2025
🆕 Our new functionalized docetaxel probe enables superior visualization of dense mitotic spindle structures during cell division by expansion microscopy! ▶️ pubs.acs.org/doi/10.1021/...
pubs.acs.org
Functionalized Docetaxel Probes for Refined Visualization of Mitotic Spindles by Expansion Microscopy
Visualizing the ultrastructure of mitotic spindles, the macromolecular machines that segregate chromosomes during mitosis, by fluorescence imaging remains challenging. Here we introduce an azido- and ...
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Clemens Schulte @clemensschulte.bsky.social · 20/03/2025
Make sure not to miss our latest paper out now in #JACS - presenting eSylites - small, peptide-based probes for precise mapping of neurons, etc.! Microscale thermophoresis (MST) played a huge part in optimizing the probes structure and sequence for binding affinity. #ChemicalBiology #Synapse
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Christiane Huhn @christianehuhn.bsky.social · 21/03/2025
Super happy to see our work on eSylites finally out in #JACS introducing small peptidic probes for simplified excitatory #Synapse visualization with unprecedented resolution! Huge thanks to all authors making this possible!
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Maric Lab @hmariclab.bsky.social · 20/03/2025
🚀 Excited to share our latest work in #JACS on eSylites! —Synthetic, high-affinity #ChemicalBiology probes for #SuperResolution #Synapse visualization & precise mapping in neurons and brain slices—without the need for antibodies, tags, or transfection! 📢 Read more: pubs.acs.org/doi/10.1021/...
pubs.acs.org
eSylites: Synthetic Probes for Visualization and Topographic Mapping of Single Excitatory Synapses
The spatiotemporal organization of the postsynaptic density (PSD) is a fundamental determinant of synaptic transmission, information processing, and storage in the brain. The major bottleneck that prevents the direct and precise representation of the nanometer-scaled organization of excitatory glutamatergic synapses is the size of antibodies, nanobodies, and the genetically encoded fluorescent tags. Here, we introduce small, high affinity synthetic probes for simplified, high contrast visualization of excitatory synapses without the limitations of larger biomolecules. In vitro binding quantification together with microscopy-based evaluation identified eSylites, a series of fluorescent bivalent peptides comprising a dye, linker, and sequence composition that show remarkable cellular target selectivity. Applied on primary neurons or brain slices at nanomolar concentrations, eSylites specifically report PSD-95, the key orchestrator of glutamate receptor nanodomains juxtaposed to the presynaptic glutamate release sites that mediate fast synaptic transmission. The eSylite design minimizes a spatial dye offset and thereby enables visualization of PSD-95 with improved localization precision and further time-resolved discrimination. In particular, we find that individual dendritic spines can contain separate nanodomains enriched for either PSD-95 or its closest homologues, PSD-93 or SAP102. Collectively, these data establish eSylites as a broadly applicable tool for simplified excitatory synapse visualization, as well as a high-end microscopy compatible probe for resolving the PSD organization with unprecedented resolution.
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Alexander L. Nielsen @alexanderln.bsky.social · 16/02/2025
Our work on macrocyclic HDAC11 inhibitors is now out in JACS Au! pubs.acs.org/doi/10.1021/... #openaccess #chemsky
pubs.acs.org
Discovery of De Novo Macrocycle Inhibitors of Histone Deacetylase 11
Histone deacetylase (HDAC) enzymes are epigenetic regulators that affect diverse protein function by removing acyl groups from lysine side chains throughout the proteome. The most recently discovered ...
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Carlos Moreno-Yruela @carlosmyruela.bsky.social · 19/02/2025
Very happy to see this story out in #JACS_Au! Discovery of De Novo Macrocycle Inhibitors of Histone Deacetylase 11 pubs.acs.org/doi/10.1021/... #ChemBio #chemsky #HDAC
pubs.acs.org
Discovery of De Novo Macrocycle Inhibitors of Histone Deacetylase 11
Histone deacetylase (HDAC) enzymes are epigenetic regulators that affect diverse protein function by removing acyl groups from lysine side chains throughout the proteome. The most recently discovered ...
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Ivan Talucci @ivantalucci.bsky.social · 04/03/2025
We mapped the epitope and PTMs preferences of anti-Aβ, such as Aducanumab, Lecanemab & Donanemab biosimilars. Big thanks to all authors who made this possible, especially our colleagues at @maxplanck.de and @unimedizin-goe.bsky.social And of course the @hmariclab.bsky.social @uni-wuerzburg.de
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DChoquet @danielchoquet.bsky.social · 28/01/2025
Great panel organized by Angela Getz @WCBR with Matt Kennedy, Johannes Hell and ourselves on new tools to understand synapse organization and function 🧪
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Maric Lab @hmariclab.bsky.social · 28/01/2025
🚨 Excited to share our work @elife.bsky.social doi.org/10.7554/eLife.98827.2 on targeting Hepatitis B virus #HBV 🦠 capsid aggregation by designed molecules! #DrugDiscovery #ChemBio Thanks V Khayenko C Makbul @clemensschulte.bsky.social & @boettchercryoem.bsky.social for stunning #CryoEM visuals!
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Bettina Böttcher @boettchercryoem.bsky.social · 24/01/2025
Our joined effort with the the Maric Lab @hmariclab.bsky.social @uniwuerzburg.bsky.social on how to aggregate capsids of Hepatitis B virus inside cells is now out in Elife doi.org/10.7554/eLif... . #cryoEM 🧪❄️🔬
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Arindam Ghosh, PhD @arindam92.bsky.social · 10/01/2025
I am super happy to share our latest article entitled "Decoding the molecular interplay of CD20 and therapeutic antibodies with fast volumetric nanoscopy", now published in Science www.science.org/doi/10.1126/... It was my postdoctoral work mit @sauer-lab.bsky.social Congrats to all the co-authors!
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Sauer Lab @sauer-lab.bsky.social · 10/01/2025
🔬 Ever wondered how therapeutic antibodies work? 3D LLS-TDI-DNA-PAINT and live-cell LLS microscopy allow decoding of the molecular interplay of endogenous CD20 on B cells with therapeutic antibodies. 📄 Read more: www.science.org/doi/10.1126/...
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Julius-Maximilians-Universität Würzburg @uni-wuerzburg.de · 10/01/2025
Delighted to launch our activities on Bluesky with this great news: Our researchers @sauer-lab.bsky.social show in @science.org, how therapeutic #antibodies interact with B cells – thanks to an innovative method of super-resolution microscopy. Congratulations! ➡️ www.uni-wuerzburg.de/en/news-and-...
Mode of action of the new microscopy method LLS-TDI-DNA-PAINT. On the top right, the RTX antibody was visualised on a Raij-B cell: it is easy to see how it links the CD20 molecules in the membrane. Bottom right: the hedgehog-shaped appearance of a living Raji B cell after the antibody has bound. The surface protein CD45, which is homogeneously distributed on the cell surface, is also labelled in green. (Image: Arindam Ghosh / University of Würzburg)
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