Sign in

John Prensner

@johnprensner.bsky.social
3.5K followers 963 following 552 posts

Pediatric neuro-oncologist, Asst Prof U-Michigan | Cancer researcher | RNA & ribosome enthusiast | Broad Institute, DFCI alum | book & music & tea lover | Dad | Views are mine (he/him). prensnerlab.org

PostsRepliesMedia
Reposted by John Prensner
Barbara Marte @barbmarte.bsky.social · 7h
new out in @nature www.nature.com/articles/s41...
nature.com
tRNA dosage regulates lineage dependency and resistance in prostate cancer - Nature
A tRNA-specific regulatory pathway is associated with codon biology, lineage transitions and therapy resistance in prostate cancer.
022
John Prensner @johnprensner.bsky.social · 06/10/2026
Thanks to @umich.edu for supporting our work and enabling my lab to launch over the past 3 years! Many thanks to our numerous collaborators on the cancer dark proteome, including our wonderful colleagues at @cancergrand.bsky.social See the full post here: commonfund.nih.gov/highrisk/new...
commonfund.nih.gov
NIH awards more than $237 million to advance bold biomedical and behavioral research | NIH Common Fund
The 2026 NIH Director’s Awards support exceptionally creative scientists pursuing transformative research.
010
John Prensner @johnprensner.bsky.social · 06/10/2026
For any PhD students that are highly motivated in this area, please reach out to discuss #Postdoc opportunities!
100
John Prensner @johnprensner.bsky.social · 06/10/2026
This award will enable our team to drive forward the pursuit of #microproteins as a cornerstone of the cancer #DarkProteome. We'll be seeking to expand the genomic toolbox to understand the circuitry and networks that interconnect with #microproteins in cancer.
100
John Prensner @johnprensner.bsky.social · 06/10/2026
It's a dream!! I am delighted to announce that I have been selected for the #NIH Director's New Innovator Award (DP2), with funding through the #NCI!
NIH Director's New Innovator Award graphic
2121
Reposted by John Prensner
Drummond Lab @drummondlab.bsky.social · 08/09/2026
We are hiring! 🌟 Dept of Biochemistry and Molecular Biology at the University of Chicago is searching for a tenure-track assistant professor. It's a broad search: we want great colleagues doing serious biological work at the molecular scale. Join us! apply.interfolio.com/191981 bcmb.uchicago.edu
A picture of the University of Chicago campus, with downtown Chicago in the distance and Lake Michigan on the horizon. The campus's central quad is pictured, a classical collegiate quad with paths and old trees and stone architecture. It's really pretty and I love it.
190108
John Prensner @johnprensner.bsky.social · 04/09/2026
Ok so this was super fun to do. Highly recommended. mydialect.us/quiz-standar... It nailed me: Boston MA is the top hit, and nothing else remotely close except for eastern New England. I guess it is that obvious when I speak.
020
Reposted by John Prensner
vincentholst.bsky.social @vincentholst.bsky.social · 13/08/2026
In 2023, @nature.com published 'Papers and patents are becoming less disruptive over time', receiving world-wide media attention. Our Matters Arising, published after a 32 month delay (more on that soon), shows that the reported decline can largely be attributed to dataset artefacts. 🧵
The average CD_5 index per year for Web of Science. The original Park et al. decline (top curve) becomes essentially flat (bottom curve) when removing papers with CD_5=1. Those papers largely correspond to dataset artefacts.
9352173
Reposted by John Prensner
Cell - a Cell Press journal @cp-cell.bsky.social · 03/07/2026
Now online! A viral ORFeome library for systems-level genetic dissection of host-pathogen interactions
dlvr.it
A viral ORFeome library for systems-level genetic dissection of host-pathogen interactions
A scalable library of ∼13,000 barcoded viral open reading frames from >500 viral species enables functional genomic screens across the virome. Applying this platform identified viral regulators of cellular proliferation, antigen presentation, and interferon signaling. This platform enables systematic exploration of viral protein function.
12314
Reposted by John Prensner
Oxford Nanopore @nanoporetech.com · 29/06/2026
Many RNAs originally annotated as non-coding may encode proteins, with signals found across UTRs and overlapping known ORFs. Mike Clark shares how Oxford Nanopore enables this kind of transcript-level insight. Learn more: bit.ly/3SgUa19
073
Reposted by John Prensner
Cedric Boeckx @cedricboeckx.bsky.social · 28/06/2026
Terrific resource, now on @biorxivpreprint.bsky.social: The Vertebrate Genomes Project Phase I: A global reference genome resource 🧪🧬 www.biorxiv.org/content/10.6...
biorxiv.org
The Vertebrate Genomes Project Phase I: A global reference genome resource
The Vertebrate Genomes Project (VGP) aims to produce complete and near-error-free reference genomes for all ∼70,000 extant vertebrate species. Organized in four phases, it progressively targets all ve...
13022
Reposted by John Prensner
maxseidel.bsky.social @maxseidel.bsky.social · 19/06/2026
📢 (1/2) Excited to share the first preprint from my PostDoc! We developed UbSeRP to map co-translational ubiquitination in a translatome-wide, revealing thousands of quality control sites, and how they reshape with aging. www.biorxiv.org/content/10.6... #proteostasis #ribosomes #preprint
biorxiv.org
Ubiquitin selective ribosome profiling reveals systematic principles of co-translational quality control
Protein biogenesis is a stress- and error-sensitive process that can lead to nascent protein misfolding and aggregation, challenging cellular proteostasis. Co-translational ubiquitination (CTU) is a c...
14818
John Prensner @johnprensner.bsky.social · 08/06/2026
For all #DarkProteome #Microprotein #RiboSeq enthusiasts- come join me at #EACR if you are here! I will be talking in the Dark Proteome session today at 2pm!
041
Reposted by John Prensner
Jonathan Pritchard @jkpritch.bsky.social · 01/06/2026
Combined Optical Pooled Screens and Perturb-seq! Great new work by Romain Lopez & Taka Kudo. This is one of a series of papers from our lab (here, with Aviv Regev) using perturbations to interpret human genetics; a key revelation for me is how transferable the mouse perturbs are to human genetics.
0266
Reposted by John Prensner
Katherine Aird @airdlab.bsky.social · 27/05/2026
It's time to rewrite reviews-aKG doesn't just regulate demethylation. Work from my lab and @mzspectrum.bsky.social demonstrates a new role for aKG in promoting histone acetylation and DNA repair through regulating carnitine synthesis. Congrats Apoorva Uboveja! www.nature.com/articles/s41...
nature.com
αKG-mediated carnitine synthesis drives DNA repair via histone acetylation - Nature
The metabolite αKG promotes carnitine synthesis and increases site-specific histone acetylation, thereby promoting homologous recombination-mediated DNA repair, which has potential implications f...
34717
John Prensner @johnprensner.bsky.social · 23/05/2026
Wow what a blockbuster PhD paper by @claradure.bsky.social with @sendoellab.bsky.social . It is a must read! 👇
041
Reposted by John Prensner
Matthieu Chavent @matthchavent.bsky.social · 20/05/2026
Very happy to share our @cbitoulouse.bsky.social perspective article with @jzanet.bsky.social team in @proteinsociety.bsky.social Protein Science: “Sketching microprotein portraits”. onlinelibrary.wiley.com/doi/10.1002/... poke @johnprensner.bsky.social @thomasmartinez.bsky.social #microprotein
1104
Reposted by John Prensner
Charlotte Fare @charlottefare.bsky.social · 12/05/2026
RNA imbalance as a hallmark of cellular ageing rdcu.be/fikJl
rdcu.be
RNA imbalance as a hallmark of cellular ageing
Nature Cell Biology - This Perspective highlights the failures of an ageing cell in properly maintaining mRNA health at the various steps of the mRNA life cycle that result in vulnerability to...
0135
Reposted by John Prensner
Doudna Lab @doudna-lab.bsky.social · 12/05/2026
New pre-print 📣 “Undruggable” cancer mutations remain very hard to target with current modalities. What if we could instead sense mutant transcripts and convert that recognition into selective cell killing? Check out this work led by postdoc Jingkun Zeng: www.biorxiv.org/content/10.6...
biorxiv.org
14117
Reposted by John Prensner
Institut Pasteur | 130 years of biomedical research @pasteur.fr · 12/05/2026
🦠💡 Bacteria have millions of secret weapons against viruses! Researchers used AI to uncover millions of new bacterial proteins likely involved in antiviral defense — suggesting immunity genes make up ~1.5% of the genome, 3× more than thought. 🔗 www.pasteur.fr/en/research-... @audeber.bsky.social
pasteur.fr
Bacteria Have Millions of Secret Weapons Against Viruses
Millions of new proteins with predicted roles in defence against viruses have been identified in bacteria. It was thought that around 0.5% of the average bacterial genome had some involvement in immun...
0215
Reposted by John Prensner
Alexis Verger 🧬🧫🧪 @alexis-verger.cpesr.fr · 12/05/2026
😀 see also www.nature.com/articles/s41...
nature.com
RNA-triggered cell killing with CRISPR–Cas12a2 - Nature
Cas12a2 enables RNA-triggered, sequence-specific killing of eukaryotic cells via widespread DNA shredding, allowing selective elimination of cells on the basis of gene expression, including virus-infe...
2134
Reposted by John Prensner
Mark Madonna @awesomark.bsky.social · 09/05/2026
#a2council 🧵 A brief history of Ann Arbor isn't a small town anymore
76316
John Prensner @johnprensner.bsky.social · 06/05/2026
Overall, we think that #peptideins and #microproteins can substantially advance our understanding of human biology, disease processes, and hopefully therapeutics that help patients. 5/end
050
John Prensner @johnprensner.bsky.social · 06/05/2026
Could these #peptideins also be important? We think Yes. And some might be on the path to our understanding them as full proteins. We used extensive CRISPR-based analyses to show how these can display important cellular phenotypes in a number of contexts. 4/
Functional genomics for peptides
140
John Prensner @johnprensner.bsky.social · 06/05/2026
Big picture: we find that lots of protein entities can be robustly confirmed in the human proteome. Some look like "real" proteins and we now annotate them as such. Most look like a mixed picture, with experimental evidence but not fully meeting "protein" criteria. We call these, #peptideins. 3/
An overview of peptidein annotation
130
John Prensner @johnprensner.bsky.social · 06/05/2026
Major congrats to all involved, including @sebastiaanvheesch.bsky.social, Rob Moritz, Leron Kok, Eric Deutsch, Jon Mudge, Cristian Valls, Irwin Jungreis! It is great to see how research can span 3 continents!! And thanks to @fullrich.bsky.social for leading the job as Editor! 2/
The TransCODE efforts to find microproteins in the human proteome
141
John Prensner @johnprensner.bsky.social · 06/05/2026
Major new work by the #TransCODE Consortium out today in @nature.com. Read all about our efforts to shed light onto the forgotten areas of the human proteome. #Microproteins #Peptideins #DarkProteome This was a huge global collaboration, in part funded via #NIH www.nature.com/articles/s41... 1/
nature.com
Expanding the human proteome with microproteins and peptideins - Nature
A large-scale proteomics analysis of the dark proteome by the TransCODE Consortium reveals many translated non-canonical open reading frames to encode microproteins and peptideins.
23314
Reposted by John Prensner
Cancer Grand Challenges @cancergrand.bsky.social · 06/05/2026
Introducing peptidiens! Congratulations to the TransCODE consortium on this exciting tour-de-force in @nature.com: nature.com/articles/s41... We look forward to seeing what’s next as lead authors Sebastiaan van Heesch and John Prensner take on our dark proteome challenge as part of team ILLUMINE!
nature.com
Expanding the human proteome with microproteins and peptideins - Nature
A large-scale proteomics analysis of the dark proteome by the TransCODE Consortium reveals many translated non-canonical open reading frames to encode microproteins and peptideins.
095
Reposted by John Prensner
Sasha Gusev @sashagusevposts.bsky.social · 01/04/2026
Here's a little widget to play with the data across journals (as well as download the raw CSVs). sashagusev.github.io/Genetics_Pub...
32913
John Prensner @johnprensner.bsky.social · 24/03/2026
We think this reference data set can be used to drive discovery across biomedical science. The sky is the limit for future #DarkProteome science. Thanks to Sonia Chothani, @jackatierney.bsky.social, Jon Mudge, Owen Rackham, @sebastiaanvheesch.bsky.social and TransCODE! This is #NIH funded science!
Flow chart of the GENCODE Phase II ORF catalog
031
John Prensner @johnprensner.bsky.social · 24/03/2026
We then synthesize this information for a key innovation for the research community: a "gold-standard" set of ~10,000 noncanonical ORFs that we call the Primary set. These have data of equivalent quality to known protein-coding genes. 5/
Distribution of quality scores between the Comprehensive set and Primary set of ORFs
120
John Prensner @johnprensner.bsky.social · 24/03/2026
With this approach, we confidently assess even the smallest of ORFs, adding a huge abundance of ORFs less than 100 nucleotides to this public catalog. 4/
Size distribution of noncanonical ORFs in the catalog
110
John Prensner @johnprensner.bsky.social · 24/03/2026
Our approach integrates state-of-the-art quality control metrics to evaluate over 28,000 non-canonical open reading frames found by RiboSeq data. 3/
Metrics for riboseq data analysis
110
John Prensner @johnprensner.bsky.social · 24/03/2026
Here, we leverage a global collaboration of institutions to consolidate evidence for the most well supported non-canonical ORFs for public dissemination. Our goal? Simply to help all of your research efforts to make the next breakthrough for patients! 2/
Global collaboration for the TransCODE Consortium for noncanonical ORFs
110
John Prensner @johnprensner.bsky.social · 24/03/2026
*MANUSCRIPT ALERT* Today the TransCODE / GENCODE Phase II catalog of #RiboSeq ORFs came out in @narjournal.bsky.social Check out the most authoritative resource for #DarkProteome discovery. 1/ academic.oup.com/nar/article/...
academic.oup.com
An expanded reference catalog of translated open reading frames for biomedical research
Abstract. Non-canonical (i.e. unannotated) open reading frames (ncORFs) have until recently been omitted from reference genome annotations, despite evidenc
1145
Reposted by John Prensner
Martin A. Nuñez @martin-nunez.bsky.social · 14/03/2026
🌐🧪
from random data to a story, using legos
919147
Reposted by John Prensner
Maria Alcolea @mariapalcolea.bsky.social · 04/03/2026
🚨 New paper from our lab just published in Nature🚨 www.nature.com/articles/s41... Discover how 🌱 tumour formation is shaped by tissue context from the very beginning. Cancer is not driven by genetics alone ✨Fantastic team led by Greta Skrupskelyte, Eduardo Rojo, @hariajith.bsky.social
911440
John Prensner @johnprensner.bsky.social · 04/03/2026
So honored to be a part of team ILLUMINE for the new #CancerGrandChallenges for the #DarkProteome. Excited to crack open this new field in cancer biology! Full announcement: www.cancergrandchallenges.org/new-teams-an...
Team ILLUMINE of the Cancer Grand Challenges in New York City in December 2025
0121
John Prensner @johnprensner.bsky.social · 12/02/2026
All- don't miss the chance to register for the European Association for Cancer Research meeting in Budapest in June. I'll be there if you want to chat about all things microproteins! #EACR #CancerResearch
052
Reposted by John Prensner
Alex Holehouse @alexholehouse.bsky.social · 12/02/2026
Pleased to share the final version of this behemoth of a paper, now finally published. I guess I can retire now? www.nature.com/articles/s41... More functional data, many thousands of words removed, and a few other updates from last year's preprint.
nature.com
Sequence and chemical specificity define the functional landscape of intrinsically disordered regions - Nature Cell Biology
Langstein-Skora, Schmid, Huth et al. propose that intrinsically disordered region functionality can be driven by the interplay between linear binding motifs and contextual chemical characteristics suc...
713958
Reposted by John Prensner
Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 11/02/2026
“Success in US science has come from sustained funding and welcoming the best talent from around the world, yet both of these advantages are in decline” www.science.org/doi/10.1126/...
science.org
China turns the tables in biotech
For at least a century, major scientific research initiatives have reliably occurred in the United States, usually in response to geopolitical competition. This helped establish the country’s status a...
29143
John Prensner @johnprensner.bsky.social · 02/02/2026
Check out the very important topic: how does poverty influence childhood cancer biology and treatment response? wonderful work from Birgit Knoechel and Kira Bona! @huntsmancancer.bsky.social @danafarber.bsky.social www.biorxiv.org/content/10.6...
biorxiv.org
044
Reposted by John Prensner
Xuebing Wu @xuebingwu.bsky.social · 31/01/2026
Does the noncoding genome actually carry more genetic information than coding seqs? Motivated by this question we mutated every bp in the 10kb MYC locus. Results are even more exciting: Decoding the MYC locus reveals a druggable ultraconserved RNA element www.biorxiv.org/content/10.6...
biorxiv.org
412846
Reposted by John Prensner
Sri Narasimhan @snarasimhan.bsky.social · 29/01/2026
Today at Cell: A new #HallmarksofCancer review by Doug Hanahan: www.cell.com/cell/fulltex... This review marks 25 years since the original seminal Cell review by Hanahan & Robert Weinberg and its impactful follow up in 2011. @cp-cell.bsky.social @cellpress.bsky.social
cell.com
Hallmarks of cancer—Then and now, and beyond
Hanahan revisits the evolving framework of cancer hallmarks, synthesizing 25 years of conceptual refinement into a multidimensional view of tumor biology. This review highlights how aberrant capabilit...
01710
John Prensner @johnprensner.bsky.social · 30/01/2026
From the great @xuebingwu.bsky.social and team! Highly recommend 👀
130
John Prensner @johnprensner.bsky.social · 27/01/2026
“The power of the people is greater than the people in power” Even at 10F. Ann Arbor this evening.
A protest about ICE in Ann ArborA protest against ICE in Ann Arbor
0385
John Prensner @johnprensner.bsky.social · 26/01/2026
Systematic analysis of C-termini of small open reading frame-encoded peptides. #Riboseq #proteomics #darkproteome pubs.acs.org/doi/10.1021/...
pubs.acs.org
Systematic Analysis of C-Termini of Small Open Reading Frame-Encoded Peptides in Human Cancer Cell Lines
The C-termini often regulate protein biological functions through specific structures or modifications. Small open reading frame-encoded peptides (SEPs) make up a novel class of gene expression products that participate in various biological activities. Their C-termini have also been found to affect their function, but the polymorphism of SEPs’ C-termini has not yet been systematically elucidated. Using C-terminal proteomics, we identified 3636 C-terminal peptides from 2168 proteins in three human cancer cell lines, including 3364 peptides from 1901 classical proteins and 272 peptides from 267 SEPs. Approximately 20% of all of the identified C-terminal peptides had been reported in previous studies, originating from mRNA alternative splicing or protease cleavage, while more than 85% of the C-terminal peptides from SEPs were novel. Bioinformatics analysis revealed that most new SEP C-termini are likely produced by protease cleavage by the KLK, MMP, and CAT protease families. Others without accurately predicted hydrolysis sites may originate from alternative splicing or protein trimming. The intact and hydrolysis products of some SEPs were verified by immunoblotting. Some cleavage occurs in the predicted domain, which might affect SEPs’ function. This study enriches the SEP sequence information, provides experimental evidence for SEP in vivo processing, and supports the subsequent functional analysis of SEP.
031
John Prensner @johnprensner.bsky.social · 24/01/2026
The inside/ outside temperature differential exceeds 75 degrees this morning in Ann Arbor!
130
John Prensner @johnprensner.bsky.social · 21/01/2026
Lunch at Cafe du Lys in Geneva today. Magnificent!
Sausage with eggplant with tomato sauce.
230
Reposted by John Prensner
Thomas Norman @normanlab.bsky.social · 20/01/2026
New preprint on technologies to scale up CRISPR screens. We use them to map 665,856 pairwise genetic perturbations and outline a path to comprehensive interaction mapping in human cells. We also introduce an approach for cloning lentiviral libraries with billions of elements.
29242