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Gordon Simpson

@ggsimpsonrna.bsky.social
211 followers 302 following 26 posts

Professor of Molecular Genetics, School of Life Sciences, University of Dundee, Scotland. RNA. www.dundee.ac.uk/people/gordon-simp…

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Reposted by Gordon Simpson
Alper Akay @alperakay.bsky.social · 15/10/2025
Congratulations to Aykut Shen, one of my first PhD students, who has successfully passed his viva yesterday. Many thanks to examiners @conradn.bsky.social and @adamcribbs.bsky.social and co-supervisor/collaborator. @whaerty.bsky.social. @nrpdtp.bsky.social @biouea.bsky.social
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Alper Akay @alperakay.bsky.social · 12/10/2025
New BBSRC funded PhD opportunity in my group with Inspiralis Ltd and @conradn.bsky.social. If you are interested in RNA - protein interactions and RNA modifications check the details below for how to apply. @nrpdtp.bsky.social @biouea.bsky.social @earlhaminst.bsky.social tinyurl.com/bdzvn4dr
biodtp.norwichresearchpark.ac.uk
How do RNA molecules shape genome regulation in the nervous system? (AKAY_U26CASE) | Doctoral Training Partnership
This PhD project will investigate how RNA modifications influence the activity of topoisomerase I (TOP1), a crucial enzyme that regulates DNA supercoiling during replication and transcription. Using C...
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Aaron and the Hoskins Lab at UW Madison @uwmadisonrna.bsky.social · 14/10/2025
This is a cool observation from @bartellab.bsky.social about what happens when polyA binding protein is limiting during viral infection
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Alessandra Magistrato @magistratolab.bsky.social · 14/10/2025
Our new review entitled 'Decoding Spliceosome Dynamics through Computation and Experiment' has been published on Chemical Reviews @pubs.acs.org Congrats to @pokorna.bsky.social, Sebastian Fica and Jana Aupic! pubs.acs.org/doi/10.1021/...
pubs.acs.org
Decoding Spliceosome Dynamics through Computation and Experiment
RNA splicing is orchestrated by a complex and exceptionally dynamic RNA–protein machine, called the spliceosome. Stepwise, large-scale structural and compositional remodeling of the spliceosome enable...
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Ule Lab @ulelab.bsky.social · 24/09/2025
Collective challenges need collective solutions. Happy to share the insights we've gained from the way our cells handle this: www.nature.com/articles/s41... and its summary www.crick.ac.uk/news/2025-09....
lnkd.in
LinkedIn
This link will take you to a page that’s not on LinkedIn
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Reposted by Gordon Simpson
Charles Piller @charlespiller.bsky.social · 24/09/2025
Whose papers have an edge at Science? In unusual study, journal looks in the mirror | Science | AAAS via @jeffreybrainard.bsky.social www.science.org/content/arti...
science.org
Whose papers have an edge at Science? In unusual study, journal looks in the mirror
Confidential data show being in the U.S., at a prestigious institution, and in a large team all may help
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North American Arabidopsis Steering Committee @naascarabidopsis.bsky.social · 22/09/2025
Please share & RSVP to join the November 25th webinar! Hear from the 2025 Philip N. Benfey Arabidopsis Community Lifetime Achievement Awardees! bit.ly/naascawards @plantevolution.bsky.social
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William Garland @willgarland.bsky.social · 17/09/2025
How do cells sort which RNAs to keep or destroy? New preprint from THJ, Brenneke and Plaschka labs shows that export and decay machineries (TREX2/PAXT) both recognise UAP56-bound RNAs. Whether they’re exported or degraded depends on where in the nucleus this happens. www.biorxiv.org/content/10.1...
biorxiv.org
Molecular basis of polyadenylated RNA fate determination in the nucleus
Eukaryotic genomes generate a plethora of polyadenylated (pA+) RNAs, that are packaged into ribonucleoprotein particles (RNPs). To ensure faithful gene expression, functional pA+ RNPs, including prote...
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Reposted by Gordon Simpson
PLOS Biology @plosbiology.org · 16/09/2025
Post-transcriptional #GeneRegulation through #m6A deposition is dysregulated in many diseases. Samie Jaffrey &co investigate why the m6A writer complex requires multiple subunits and what roles its individual proteins might have in m6A regulation. 🧪 plos.io/3VjfjWI
plos.io
Why does the m6A writer complex require so many proteins?
Post-transcriptional gene regulation through m6A deposition is dysregulated in many diseases and is catalyzed by a multi-protein writer complex. This Unsolved Mystery investigates why the writer compl...
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Reposted by Gordon Simpson
Alper Akay @alperakay.bsky.social · 10/09/2025
It’s great to see this story out. Congratulations!
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Eric Van Nostrand Lab @ BCM @evannostrandlab.bsky.social · 08/09/2025
Excited to share some new work from our group - www.biorxiv.org/content/10.1... A great collaboration with @kurianlab.bsky.social that began with how an RBP (QKI) controls cardiomyocyte function, and led to uncovering a unique mechanism of direct interaction with U6 & the tri-snRNP at weak 5'SS
biorxiv.org
QKI ensures splicing fidelity during cardiogenesis by engaging the U6 tri-snRNP to activate splicing at weak 5ʹ splice sites
During organogenesis, precise pre-mRNA splicing is essential to assemble tissue architecture. Many developmentally essential exons bear weak 5'splice sites (5'SS) yet are spliced with high precision, ...
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Kurianlab @kurianlab.bsky.social · 08/09/2025
Many conserved exons in the heart and brain utilize weak 5 ′ splice sites, yet they are accurately spliced. But how? We show that splicing fidelity is actively enforced through a QKI-U6 checkpoint at the U1→U6 handover in essential cardiac genes during organogenesis. www.biorxiv.org/content/10.1...
biorxiv.org
QKI ensures splicing fidelity during cardiogenesis by engaging the U6 tri-snRNP to activate splicing at weak 5ʹ splice sites
During organogenesis, precise pre-mRNA splicing is essential to assemble tissue architecture. Many developmentally essential exons bear weak 5'splice sites (5'SS) yet are spliced with high precision, ...
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Alper Akay @alperakay.bsky.social · 27/08/2025
Very interesting paper from @kaiserlab.bsky.social!
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Rebecca Mosher @rm0sher.bsky.social · 25/08/2025
This is an amazing opportunity to join the plant sciences faculty in the Oxford Department of Biology! I am so impressed with the quality and collegiality of these colleagues. I’m not on the committee, but I’m happy to answer questions as I can.
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Mike Clark @michaelbclark.bsky.social · 12/08/2025
Our paper using Oxford #Nanopore direct RNA sequencing to identify m6A modifications on RNA isoforms in human brain is now out in Science Advances. 🧪 www.science.org/doi/10.1126/...
science.org
Isoform-level profiling of m6A epitranscriptomic signatures in human brain
Direct RNA-seq in brain reveals RNA isoform and region-specific m6A modifications, highlighting their role in gene regulation.
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Rodrigo Reis @rodrigoreislab.com · 25/08/2025
My lab's very first manuscripts are out!!!! - We identified nearly 60 conserved RNA structures in plastids #chloroplast #RNA - We found that transcriptional response to warm temperatures in whole seedling is confounded by response at organ level #thermomorphogenesis Link to both preprints below
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PastelBio @pastelbio.bsky.social · 01/08/2025
🤔... The ten dollar proteome: low-cost, deep and quantitative proteome profiling of limited sample amounts using the Orbitrap Astral and timsTOF Ultra 2 mass spectrometers www.biorxiv.org/cont... --- #proteomics #prot-preprint
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Aaron and the Hoskins Lab at UW Madison @uwmadisonrna.bsky.social · 01/08/2025
This is definitely worth reading
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Jalview @jalview.bsky.social · 01/08/2025
🚀 Our latest AlphaFold video is out! Find out how you can discover hidden domains in your AlphaFold models using Jalview's PAE-focused cluster analysis. ▶️ Watch the full video here: www.youtube.com/watch?v=pQC8...
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Sorek Lab @soreklab.bsky.social · 30/07/2025
We wrote a review on the free nucleotide pool as a central playground in human, bacterial, and plant immunity – now out in Nature Reviews in Immunology www.nature.com/articles/s41... Was fun to write this piece with Dina Hochhauser! Here is a thread to explain the premises 1/
nature.com
Manipulation of the nucleotide pool in human, bacterial and plant immunity - Nature Reviews Immunology
Modification of the nucleotide pool is emerging as key to innate immunity in animals, plants and bacteria. This Review explains how immune pathways conserved from bacteria to humans manipulate the nuc...
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Alejandro Brenes @ajbrenes.com · 27/07/2025
Happy to share our latest preprint doing low cell number (mini-bulk) and single cell #proteomics on tumour associated neutrophils from human glioblastoma where we find multiple functional states that would be invisible to scRNAseq, some showing pro-tumoural states with potential therapeutic value
biorxiv.org
Single cell proteomic analysis defines discrete neutrophil functional states in human glioblastoma
Neutrophils are vital innate immune cells shown to infiltrate glioblastomas, however we currently lack the molecular understanding of their functional states within the tumour niche. Neutrophils are k...
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DjuranovicLab at Brown University RNA Center @djuranoviclab.bsky.social · 25/07/2025
Our collaboration with Tony Mustoe's lab us out today. MPRA libraries and possible cryptic splicing in MPRA reporters, or reporters in general. The additional novelty here is that such events are controlled or influenced by AU-rich sequences. www.nature.com/articles/s41...
nature.com
U-rich elements drive pervasive cryptic splicing in 3’ UTR massively parallel reporter assays - Nature Communications
Massively parallel reporter assays (MPRAs) are powerful technologies for measuring the impact of non-coding sequences on gene expression. Here, the authors demonstrate that MPRA reporters often underg...
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Samarendra Pani @samarendra-pani.bsky.social · 24/07/2025
[1/8] *New Open-Access Long Read Resource*. We sequenced 1,019 genomes from the 1000 Genomes Project sample cohort using @nanoporetech.com long-read sequencing (LRS) to median 17x coverage. Publication at go.nature.com/4ffPb8f. @hhu.de @crg.eu @embl.org @impvienna.bsky.social
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Jay Brito Querido @jbquerido.bsky.social · 22/07/2025
Finally out! I’m thrilled to share our new paper (Wolin et al., Cell 2025). This paper describes SPIDR, a high-throughput method for mapping RBP binding sites. By combining #SPIDR with #cryoEM, we identified the exact binding site of LARP1 within the #mRNA channel of the 40S ribosomal subunit.
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Iain Cheeseman @iaincheeseman.bsky.social · 23/07/2025
New preprint! We solve a mystery you didn't know existed. Mitotic cells lack new transcription but require ongoing translation. Interphase mRNA half life is only 2-4 hrs. So how do cells arrest in mitosis for hours without depleting their transcriptomes? www.biorxiv.org/content/10.1...
biorxiv.org
Global inhibition of deadenylation stabilizes the transcriptome in mitotic cells
In the presence of cell division errors, mammalian cells can pause in mitosis for tens of hours with little to no transcription, while still requiring continued translation for viability. These unique...
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Oxford RNA Club @oxfordrnaclub.bsky.social · 18/07/2025
Hi #RNAsky, #ChromatinSky! It is a pleasure to announce that the @ox.ac.uk RNA & transcription club is now on Bluesky. Follow us to stay in touch with everything RNA and transcription from gene regulation to disease. Join us here: rna.web.ox.ac.uk/home
rna.web.ox.ac.uk
Home
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Claudia Martinho @cssmartinho.bsky.social · 22/07/2025
We’re excited to share a new CRISPR-Cas12 genome editing system, highly efficient across multiple brown algae species! Brown algae transformation has been challenging despite many thoughtful approaches over the years. We hope this one is kelpful 🌿😅 🔗 doi.org/10.1101/2025... #CRISPR #Algae
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Mark A. Hanson @hansonmark.bsky.social · 10/07/2025
The "reproducibility crisis" in science constantly makes headlines. Repro efforts are often limited. What if you could assess reproducibility of an entire field? That's what @brunolemaitre.bsky.social et al. have done. Fly immunity is highly replicable & offers lessons for #metascience A 🧵 1/n
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König Lab @koenig-lab.bsky.social · 10/07/2025
🚨Check out our brand new review on m6a in the CDS!🚨 m6A in the coding sequence: linking deposition, translation, and decay: Trends in Genetics www.cell.com/trends/genet...
cell.com
m6A in the coding sequence: linking deposition, translation, and decay
N6-methyladenosine (m6A) is the most abundant internal modification in mRNA and plays a crucial role in regulating mRNA turnover. This review explores the characteristics of m6A sites in the coding se...
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Suyang Zhang @suyangzhang.bsky.social · 10/07/2025
Excited to share our latest work! We found transcription factor SPT6 and phosphorylated Pol II CTD help recruit U1 snRNP to elongating Pol II, allowing efficient co-transcriptional splicing. Glad to be featured in the Editors’ Highlights! www.nature.com/articles/s41... #splicing #cryoEM
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The Arabidopsis Information Resource (TAIR) @tairnews.bsky.social · 07/07/2025
Based on #community feedback, we've updated locus & gene summaries and annotations to remove “the mRNA is cell to cell mobile” labeling based on www.nature.com/articles/npl.... h/t @pdchristine.bsky.social @plantophagy.bsky.social & others who alerted us by Bluesky, email, & in person at ICAR2025.
nature.com
Endogenous Arabidopsis messenger RNAs transported to distant tissues - Nature Plants
There's a lack of knowledge on the extent to which mRNAs are transported across tissues in plants. Now a study combining RNA-seq with grafting experiments identifies 2,006 genes in Arabidopsis thalian...
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Christine Mayr @christinemayr.bsky.social · 07/07/2025
New paper: More than 2700 human 3′UTRs are highly conserved. These 3′UTRs are essential components in mRNA templates, as their deletion decreases protein activity without changing protein abundance. Highly conserved 3′UTRs help the folding of proteins with long IDRs. www.biorxiv.org/content/10.1...
biorxiv.org
mRNA 3′UTRs chaperone intrinsically disordered regions to control protein activity
More than 2,700 human mRNA 3′UTRs have hundreds of highly conserved (HC) nucleotides, but their biological roles are unclear. Here, we show that mRNAs with HC 3′UTRs mostly encode proteins with long intrinsically disordered regions (IDRs), including MYC, UTX, and JMJD3. These proteins are only fully active when translated from mRNA templates that include their 3′UTRs, raising the possibility of functional interactions between 3′UTRs and IDRs. Rather than affecting protein abundance or localization, we find that HC 3′UTRs control transcriptional or histone demethylase activity through co-translationally determined protein oligomerization states that are kinetically stable. 3′UTR-dependent changes in protein folding require mRNA-IDR interactions, suggesting that mRNAs act as IDR chaperones. These mRNAs are multivalent, a biophysical RNA feature that enables their translation in network-like condensates, which provide favorable folding environments for proteins with long IDRs. These data indicate that the coding sequence is insufficient for the biogenesis of biologically active conformations of IDR-containing proteins and that RNA can catalyze protein folding. ### Competing Interest Statement The authors have declared no competing interest. Pershing Square Foundation, https://ror.org/04tce9s05 G. Harold & Leila Y. Mathers Foundation National Institutes of Health, DP1GM123454, R35GM144046 Memorial Sloan Kettering Cancer Center, https://ror.org/02yrq0923, P30 CA008748
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König Lab @koenig-lab.bsky.social · 07/07/2025
Please check out Sarah's "insight" comment on the work from Dierks & Schwartz lab: "Methylation: Modifying gene expression through passive forces"! #RNA #m6A #modification #modelling doi.org/10.7554/eLif...
doi.org
Methylation: Modifying gene expression through passive forces
The mRNA metabolism passively shapes the levels of an mRNA modification called m6A within a steady-state cell and upon stress.
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Nicky Whiffin @nickywhiffin.bsky.social · 04/07/2025
Ever craved a review that details the diverse mechanisms through which UTR variants have been show to cause rare disease??? Or maybe just curious? Well this review, written by the amazing Dr @nechamawieder.bsky.social , is for you 🤓🧬🩺
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Ewan Birney @ewanbirney.bsky.social · 27/06/2025
New preprint Klaxon: Nanopore duplex sequencing reveals patterns of asymmetric states of 5hmC and 5mC in the medaka brain genome - a preprint lead by Walter Santana, a PhD student in my research group with data from @wittbrodtlab.bsky.social and Felix Loosli's lab www.biorxiv.org/content/10.1...
biorxiv.org
Nanopore duplex sequencing reveals patterns of asymmetric states of 5hmC and 5mC in the medaka brain genome
The nucleotide modification 5-methylcytosine (5mC), has been extensively described in terms of its genomic distribution and function. However, the distribution and functional contributions of its oxid...
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Max Planck Institute for Plant Breeding Research @mpipz.bsky.social · 27/06/2025
📣📣We are #hiring! 📣Please RT! @mpipz.bsky.social has a group leader position available in the broad area of Plant Development and Diversity 🌿. Apply now!🌿 👉http://bit.ly/4nkUvLa #plantsci
job description
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Nonia Pariente @npariente.bsky.social · 27/06/2025
Too poor to science: how wealth determines who succeeds in STEM Thought-provoking read, especially in these times of questioning diversity, equity and inclusion initiatives 🧪
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PLOS Biology @plosbiology.org · 26/06/2025
We are looking for our next colleague! Take a look ⬇️⬇️ Applications considered upon receipt Please repost 🙏🏻
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Igor Ulitsky @igorulitsky.bsky.social · 29/05/2025
Stop the doom scrolling! A new 🗞️ from my lab, describing one of our flagship projects of many years we are super excited to share: "Inducible formation of fusion transcripts upregulates haploinsufficient CHD2 gene expression". A 🧵 biorxiv.org/content/earl...
biorxiv.org
Inducible formation of fusion transcripts upregulates haploinsufficient CHD2 gene expression
Modes of action of long noncoding RNAs (lncRNAs) are poorly understood. CHASERR is a broadly expressed lncRNA located immediately upstream of the promoter of the CHD2 gene. We show that antisense olig...
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Matthew Cobb @matthewcobb.bsky.social · 26/06/2025
Just learned that Frank Stahl (of the Meselson and Stahl DNA replication experiment ("the most beautiful experiment in biology") died at the beginning of April, to no fanfare. Here's a lovely video of them reminiscing: www.youtube.com/watch?v=7-tn...
youtube.com
The Most Beautiful Experiment: Meselson and Stahl
YouTube video by Science Communication Lab
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Gordon Simpson @ggsimpsonrna.bsky.social · 26/06/2025
Carey is a post-doc in my lab working on RNA methylation - but we spend a lot of time talking about ash trees! Today, her PhD work on the population genomics of ash die-back is published in Science www.science.org/doi/10.1126/...
science.org
Rapid polygenic adaptation in a wild population of ash trees under a novel fungal epidemic
Rapid evolution through small shifts in allele frequencies at thousands of loci is a long-standing neo-Darwinian prediction but is hard to characterize in the wild. European ash tree (Fraxinus excelsi...
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Ewan Birney @ewanbirney.bsky.social · 25/06/2025
Nice work by @avsecz.bsky.social and team - three things to highlight here for me :
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Black In Plant Science- UK @blackinplantsci.bsky.social · 18/06/2025
🎉We're pleased to announce that our very own Jade Bleau has been awarded the NAASC Earlier Career Community Impact Award. We would also like to extend our congratulations to the other winners: 💐Joanna Friesner, Jose Dinneny, Dawn Nagel, Natanella Elouz-Elias, Nick Provart and Anna Stepanova.
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Helena Klara Jambor @helenajambor.bsky.social · 18/06/2025
I gave in! After students asking for it, I now made a simple figure design checklist. To help all scientists w/o graphic skills create clear, accessible, and truthful charts! -> Out in @nature Cell Biology: rdcu.be/erwl4 #DataVisualization #PhD #SciComm Thx for review @bethcimini.bsky.social + 2
rdcu.be
A checklist for designing and improving the visualization of scientific data
Nature Cell Biology - Creating clear and engaging scientific figures is crucial to communicate complex data. In this Comment, I condense principles from design, visual perception and data...
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William Garland @willgarland.bsky.social · 17/06/2025
mbg.au.dk/en/news-and-...
mbg.au.dk
International recognition for Aarhus researchers: RNA science takes off
RNA research in Aarhus is taking a significant leap forward. Two researchers from the same department and research environment have both just been awarded one of Europe’s most prestigious research gra...
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Carmen Escudero Martinez @carmen-escudero.bsky.social · 05/05/2025
I am excited to announce I will be starting my lab at IRNASA-CSIC in Spain. Investigating the rhizosphere microbiota and its role in crop nutrition. There are two positions openings: a technician and a postdoc deadline 30th June! www.irnasa.csic.es/postdoctoral... www.irnasa.csic.es/en/technicia...
irnasa.csic.es
Postdoctoral Research Assistant position: Enhancing plant nutrition via host genetic modulation of the rhizosphere microbiota – IRNASA CSIC
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Christian Fankhauser @chfankhauser.bsky.social · 16/06/2025
Great job opportunity at The Center for Integrative Genomics, Lausanne University, Switzerland unil.ch/cig/en/home.... For a tenure-track Assistant Professor position. More details for how to apply are here nature.com/naturecareer...
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James Lloyd 🧬 @jamespblloyd.bsky.social · 11/06/2025
I am super excited to announce the first (brief) pre-print purely from my group: Start right to end right: authentic open reading frame selection matters www.biorxiv.org/content/10.1... This marks a return to NMD research for me. NMD detects early stop codons but we need to find the true stop!
Boromir Meme: One does not simply select the longest ORF
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PlantEvolution 🌱🌾 @plantevolution.bsky.social · 13/06/2025
Temperature is so important for plants that they have come up with many independent temperature sensors. Curious? Read more in this review by former WeigelWorld members Sridevi Sureshkumar & Suresh Balasubramanian. #plantscience www.science.org/doi/10.1126/...
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Aaron and the Hoskins Lab at UW Madison @uwmadisonrna.bsky.social · 11/06/2025
Very interesting paper from the Tollervey lab. Note that the ATP concentration falls below a threshold (~0.5 mM) we previously speculated would cause "spliceosome shutdown" via BCP proteins associating with the tri-snRNP and rendering it splicing incompetent. www.biorxiv.org/content/10.1...
biorxiv.org
Metabolic tuning enables immediate adaptation to energy stress in yeast
In Saccharomyces cerevisiae , glucose depletion induces metabolic reprogramming through widespread transcriptional and translational reorganization. We report that initial, very rapid translational si...
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