Sign in

Walter W. Chen, MD, PhD

@walterwchen.bsky.social
822 followers 311 following 73 posts

Neonatologist + incoming Asst Prof in Mol Bio at UTSW via Harvard/MIT MD-PhD, Harvard Pediatric Residency, UTSW Neonatology Fellowship, Postdoc in RJD Lab | STAT Wunderkind, ASCI E-Gen Award, BWF CAMS Studying #metabolism, #mitochondria, #peroxisomes

PostsRepliesMedia
Walter W. Chen, MD, PhD @walterwchen.bsky.social · 21/07/2026
The NeoChen Lab is recruiting and will start Oct 1, 2026 in Mol Bio Dept @UTSW! Looking for creative+passionate techs, grad students, postdocs. We apply the lens of neonatal medicine to study #peroxisomes #mitochondria to advance the care of neonates and beyond. @bwfund.bsky.social
1155
Reposted by Walter W. Chen, MD, PhD
Henry De Belly @henrydebelly.bsky.social · 10/06/2026
Very excited to be sharing our new paper, just out in Nature Cell Biology! The big question we investigate: How do migrating cells put their front 🔴 and back 🔵 in the right place?
920170
Reposted by Walter W. Chen, MD, PhD
Milan Savani @milansavani.com · 29/04/2026
1/12 🛣️ Mapping nitrogen metabolism has lagged carbon due to substrate diversity. In @natmetabolism.nature.com, we introduce a platform to do this mapping at scale and identify mechanisms by which differentiation state dictates pyrimidine synthesis. 🧵👇 🔗 www.nature.com/articles/s42...
This celestial scene represents tracking the constellation of metabolites that contribute to cellular nitrogen metabolism. Artwork by Melissa Logies.
3135
Walter W. Chen, MD, PhD @walterwchen.bsky.social · 29/04/2026
Big congrats to my postdoc mentor @rjdlab.bsky.social on his election to NAS!! 🎉🎉🎉 An inspiring physician-scientist and wonderful person and mentor.
061
Walter W. Chen, MD, PhD @walterwchen.bsky.social · 22/04/2026
Thrilled to share that I’ll be starting my lab as an Assistant Professor and Endowed Scholar in the UT Southwestern Molecular Biology Dept this Fall! 🥳 We’ll study #peroxisomes #mitochondria #metabolism via the lens of neonatology 👶🏻, a very exciting frontier in medicine! #neotwitter
3444
Reposted by Walter W. Chen, MD, PhD
DeBerardinis Lab at UT Southwestern Medical Center @rjdlab.bsky.social · 19/03/2026
New paper from Dr. Wen Gu on the impact of L-2-hydroxyglutarate deficiency on neural stem cell function and neuronal differentiation. Interesting connection between an IEM and chronic oncogene activation. Thanks to Dr. Bushra Afroze and her patients for participating. www.jci.org/articles/vie...
jci.org
JCI - L-2-hydroxyglutarate impairs neuronal differentiation through epigenetic activation of MYC expression
0136
Reposted by Walter W. Chen, MD, PhD
Henry De Belly @henrydebelly.bsky.social · 13/02/2026
My lab @cri-utsw.bsky.social is looking for a highly motivated postdoct interested in mechanobiology! We are building a highly collaborative and interdisciplinary team working on how mechanical forces shape immune and cancer cell behavior. Come do cool science with me! lnkd.in/gKEXWUGy
lnkd.in
LinkedIn
This link will take you to a page that’s not on LinkedIn
01410
Reposted by Walter W. Chen, MD, PhD
Natalie Niemi @nieminm.bsky.social · 08/01/2026
Really thrilled to have our work on mitochondrial presequence strength out today @jcb.org. We establish quantitative parameters to better define "strong" and "weak" presequences both in vitro and in vivo. This work was spearheaded by the ever talented Youmian Yan, a BBSB graduate student in my lab.
13515
Reposted by Walter W. Chen, MD, PhD
Josh Mendell @mendell-lab.bsky.social · 10/11/2025
Regulated decay of microRNAs plays a critical role in controlling body size in mammals! Check out our new paper in @genesdev.bsky.social and see thread previously posted with our pre-print 👇 for more info. Congrats to Collette LaVigne, Jaeil Han, and all authors! genesdev.cshlp.org/cgi/content/...
genesdev.cshlp.org
Plagl1 and Lrrc58 control mammalian body size by triggering target-directed microRNA degradation of miR-322 and miR-503
A biweekly scientific journal publishing high-quality research in molecular biology and genetics, cancer biology, biochemistry, and related fields
1218
Reposted by Walter W. Chen, MD, PhD
DeBerardinis Lab at UT Southwestern Medical Center @rjdlab.bsky.social · 06/11/2025
1/New paper from Zheng Wu, Phong Nguyen et al. @cri-utsw.bsky.social shows how cells balance the two pathways that produce purine nucleotides: de novo purine biosynthesis (DNPB) and purine salvage. The surprising mechanism involves NUDT5, a Nudix hydrolase www.science.org/doi/10.1126/...
science.org
NUDT5 regulates purine metabolism and thiopurine sensitivity by interacting with PPAT
Cells generate purine nucleotides through de novo purine biosynthesis (DNPB) and purine salvage. Purine salvage represses DNPB to prevent excessive purine nucleotide synthesis through mechanisms that ...
77423
Walter W. Chen, MD, PhD @walterwchen.bsky.social · 23/10/2025
Interested in organellar metabolomics? Check out my talk tomorrow on how the Rapid Organellar IP technology has enabled discoveries in organellar biology over the past 10 years! Ty Tech Networks for the invite! @cri-utsw.bsky.social @rjdlab.bsky.social www.technologynetworks.com/proteomics/o...
technologynetworks.com
Advances in Proteomics & Metabolomics 2025
Proteomics and metabolomics are unlocking new dimensions in our understanding of biology and disease. This event will highlight the latest developments in mass spectrometry, single-cell proteomics and...
071
Reposted by Walter W. Chen, MD, PhD
Henry De Belly @henrydebelly.bsky.social · 16/10/2025
Thrilled to announce the launch of my lab @cri-utsw.bsky.social at UTSW this January! We will explore how cells sense and respond to mechanical forces, focusing on membrane mechanics to reveal how tension and signaling work together to shape cell behavior.
86115
Reposted by Walter W. Chen, MD, PhD
Heidi M McBride @mitodynamics.bsky.social · 14/10/2025
New paper - MAPL strikes again! Interested in mitochondrial signalling, inflammation, lysosome biology, pyroptosis, and Parkinson's disease? Have a look, there's something for everyone! Feeling grateful! @mitocollier.bsky.social Funded by #CIHR, @asapresearch.parkinsonsroadmap.org. rdcu.be/eKKz1 🇨🇦
46722
Reposted by Walter W. Chen, MD, PhD
Kara McKinley @karalmckinley.bsky.social · 10/10/2025
Lab’s 1st preprint! Menstruation is understudied due to societal taboos + a biological challenge: mice (a key system for research + drug discovery) don’t menstruate. @cagricevrim.bsky.social made menstruating mice + used them to discover early events in menstruation. He is on the job market!
1830490
Reposted by Walter W. Chen, MD, PhD
RyanLab_TCD @ryanlab.bsky.social · 09/10/2025
Exciting study from @frisophagy.bsky.social in @chinnery in the Chinnery lab @mrc-mbu.bsky.social. Congratulations to all authors involved in the study! #mitochondria Ubiquitin-mediated mitophagy regulates the inheritance of mitochondrial DNA mutations | Science www.science.org/doi/10.1126/...
science.org
Ubiquitin-mediated mitophagy regulates the inheritance of mitochondrial DNA mutations
Mitochondrial synthesis of adenosine triphosphate is essential for eukaryotic life but is dependent on the cooperation of two genomes: nuclear and mitochondrial DNA (mtDNA). mtDNA mutates ~15 times as...
2169
Reposted by Walter W. Chen, MD, PhD
Gladstone Institutes @gladstoneinst.bsky.social · 08/10/2025
Leveraging modern scientific tools and techniques, @ishahjain.bsky.social intends to transform our understanding of the critical roles that vitamins play in health and disease.
gladstone.org
Bringing Modern Science to Vitamin Biology: Isha Jain Wins NIH Transformative Research Award
Leveraging modern scientific tools and techniques, Jain intends to transform our understanding of the critical roles that vitamins play in health and disease.
4155
Walter W. Chen, MD, PhD @walterwchen.bsky.social · 03/10/2025
Excited to present my research at the upcoming University of Utah Rising Stars Symposium and meet fellow scientists who love metabolism! @cri-utsw.bsky.social @rjdlab.bsky.social
061
Reposted by Walter W. Chen, MD, PhD
Nils Burger @nilsburger.bsky.social · 01/10/2025
Excited to share that I’ve started my lab as an assistant professor at the University of Texas Southwestern Medical Center in Dallas.
 Thank you to all the mentors, friends, and colleagues who have supported me throughout the years!
5162
Reposted by Walter W. Chen, MD, PhD
echouchani.bsky.social @echouchani.bsky.social · 17/09/2025
First post here! Excited to share a new paper and online resource from our lab published today. We developed a mass spectrometry approach that leverages genetic diversity to systematically nominate functional relationships between metabolites and proteins. www.nature.com/articles/s41...
nature.com
Covariation MS uncovers a protein that controls cysteine catabolism - Nature
A mass spectrometry-based approach globally identifies protein regulators of metabolism and reveals the role of LRRC58 in controlling cysteine catabolism.
5419
Reposted by Walter W. Chen, MD, PhD
Irfan Lodhi @lodhilab.bsky.social · 17/09/2025
Happy to share our new paper in @nature.com led by staff scientist Xuejing Liu. We report identification of a UCP1-independent pathway of brown fat thermogenesis involving ATP-consuming metabolism of BCFA in peroxisomes. #Obesity #T2D www.nature.com/articles/s41...
4205
Reposted by Walter W. Chen, MD, PhD
Peter Ly @peterlylab.bsky.social · 10/09/2025
Excited to join the @cri-utsw.bsky.social community to advance discoveries in genome instability. We are grateful to UTSW Pathology for 6 wonderful years. 🚨 We are also recruiting motivated postdocs to study how mitotic errors and aberrant nuclear structures drive cancer genome evolution—join us!
1205
Reposted by Walter W. Chen, MD, PhD
Jordan Ray @jordanray.bsky.social · 09/09/2025
I am excited to share my graduate work in the Sabatini and @bartellab.bsky.social labs. Since their discovery, we have known lysosomes possess RNase activity; however, their substrates were not known. Surprisingly we find specific RNAs are targeted for degradation! www.biorxiv.org/content/10.1...
biorxiv.org
Lysosomal RNA profiling reveals targeting of specific types of RNAs for degradation
Autophagy targets a wide variety of substrates for degradation within lysosomes. While lysosomes are known to possess RNase activity, the role of lysosomal RNA degradation in post-transcriptional gene...
03417
Reposted by Walter W. Chen, MD, PhD
Nature Cell Biology @natcellbio.nature.com · 14/08/2025
🍹 @walterwchen.bsky.social et al show that PEX39 cooperates with PEX7 in the peroxisomal import of proteins containing a PTS2 site and uncover an (R/K)PWE motif in PEX39 and PEX13 that binds to PEX7 and facilitates the import of PTS2-containing proteins. bit.ly/4lmjv2l
bit.ly
PEX39 facilitates the peroxisomal import of PTS2-containing proteins - Nature Cell Biology
Chen et al. show that PEX39 cooperates with PEX7 in the peroxisomal import of proteins containing a PTS2 site and uncover an (R/K)PWE motif in PEX39 and PEX13 that binds to PEX7 and facilitates the im...
1114
Reposted by Walter W. Chen, MD, PhD
Nick Burton @nickburton.bsky.social · 12/08/2025
I’m really beyond thrilled to be included in this years Pew Biomedical Scholars cohort and to be able to meet all the incredible scientists in this program. I was in Scott Kennedy’s lab when he was a Pew Scholar and never thought I’d be lucky enough to also be one! www.pew.org/en/about/new...
pew.org
Pew Awards 22 Researchers Biomedical Science Grants
8273
Reposted by Walter W. Chen, MD, PhD
Tony (Yichi) Zhang @tonyzhangphd.bsky.social · 07/08/2025
Happy to announce that I was awarded a pathway to independence award (K99) from the NCI/NIH today to work on studying whole-body metabolism driving cancer cachexia. None of this would be possible without support from @damonrunyon.org, @transactivator.bsky.social and @mvhlab.bsky.social.
091
Reposted by Walter W. Chen, MD, PhD
Ryan Flynn @raflynn5.bsky.social · 06/08/2025
RNA N-glycosylation enables immune evasion and homeostatic efferocytosis by chemically caging acp3U. Excited to report this work lead by Vinnie @vinnieviruses.bsky.social and in collaboration with @vijayrathinam.bsky.social in @nature.com www.nature.com/articles/s41...
710946
Reposted by Walter W. Chen, MD, PhD
Sarah Cohen @cohenlaboratory.bsky.social · 04/08/2025
I’m extremely honored to be recognized with the WICB Junior Research Award. ASCB and WICB have been key to my career development since I attended my first annual meeting in 2005. Congrats to the other awardees!
9876
Reposted by Walter W. Chen, MD, PhD
Daniel Drucker @danieljdrucker.bsky.social · 04/08/2025
A new tragedy for the Endocrine community An outstanding scientist leaves us too soon
02612
Reposted by Walter W. Chen, MD, PhD
Uri Manor @manorlaboratory.bsky.social · 04/08/2025
I am unspeakably humbled and grateful for this honor - to "wear" Goeddel's name is simply insane. I can only promise to do my best to do it justice. ONWARDS!!!
12663
Reposted by Walter W. Chen, MD, PhD
ASolmonson @asolmonson.bsky.social · 04/08/2025
Our lab has derived over 50 trophoblast organoid lines to better understand how chronic conditions like hypertension and obesity influence placental development and metabolism. (Check out this figure made with @biorender.bsky.social)
111
Reposted by Walter W. Chen, MD, PhD
Ondine Cleaver @ondinecleaver.bsky.social · 01/08/2025
Happy to share our work on the role of biomechanical PULSATILITY on lung vessels. Following surgery to alleviate overload in kids with single ventricle hearts, lung arteries form AVMs. #DevBio #EndothelialCell #CHD Beautiful work from Steve Spurgin. #DevBio 🫁 🫀 ❤️‍🩹 www.biorxiv.org/content/10.1...
biorxiv.org
Pulsatile flow dynamics determine pulmonary arterial architecture
BACKGROUND Single ventricle congenital heart disease (SV-CHD) is a uniformly lethal condition. Survival depends upon the Glenn surgery, which shunts venous blood directly to the pulmonary arteries wit...
22611
Reposted by Walter W. Chen, MD, PhD
Daniel Wendscheck @dwendscheck.bsky.social · 30/07/2025
Major part of my PhD thesis is finally online! Thanks to everyone involved 🙏 @walterwchen.bsky.social @rjdlab.bsky.social @tmoeckli.bsky.social @hirakdas.bsky.social and the entire @warscheidlab.bsky.social #peroxisomes #Massspec #proteomics
3133
Reposted by Walter W. Chen, MD, PhD
Children's Research Institute at UT Southwestern @cri-utsw.bsky.social · 30/07/2025
ONLINE NOW in @natcellbio.nature.com: CRI's @rjdlab.bsky.social Lab postdoc @walterwchen.bsky.social & international colleagues have discovered the first new human peroxin in 20 years. Read more ⬇️ cri.utsw.edu/deberardinis... #relentlessdiscovery 🧪
cri.utsw.edu
DeBerardinis Lab discovers first human peroxin in 20 years - Children's Medical Center Research Institute (CRI) | Dallas Texas
CRI researchers, international colleagues identify PEX39, which facilitates peroxisomal protein import PEX39 is the first new human peroxisomal biogenesis protein, a peroxin or PEX, to be identified i...
062
Walter W. Chen, MD, PhD @walterwchen.bsky.social · 30/07/2025
Our work on new paradigm in peroxisome biogenesis and PEX39 (1st human peroxisomal biogenesis protein (peroxin/PEX) found in > 20 yr) is out in @natcellbio.nature.com! Equal collab w/Tony Rodrigues (Jorge Azevedo lab), @dwendscheck.bsky.social (Bettina Warscheid lab) www.nature.com/articles/s41...
nature.com
PEX39 facilitates the peroxisomal import of PTS2-containing proteins - Nature Cell Biology
Chen et al. show that PEX39 cooperates with PEX7 in the peroxisomal import of proteins containing a PTS2 site and uncover an (R/K)PWE motif in PEX39 and PEX13 that binds to PEX7 and facilitates the im...
53715
Reposted by Walter W. Chen, MD, PhD
Jennifer Gill, MD, PhD @jennifer-gill.bsky.social · 29/07/2025
Excited to share our work just published in @natmetabolism.nature.com examining melanoma tumor metabolism in patients and how well this is (and isn’t) conserved in patient-derived xenograft models.
1177
Reposted by Walter W. Chen, MD, PhD
Katherine Aird @airdlab.bsky.social · 22/07/2025
I could not be more excited to finally announce that my lab will be moving to The Wistar Institute in Philadelphia in early September! While this is somewhat of a homecoming for me, it is a new adventure for the 6 lab members moving with me! More details to come about new roles and opportunities!
jobs.dayforcehcm.com
Job Details | Dayforce Jobs
Find your next adventure
3194
Reposted by Walter W. Chen, MD, PhD
Kate O'Donnell @kateodonnell-lab.bsky.social · 17/07/2025
This is my first post here. The past few months have been challenging for science, but I enjoy learning about others' work here and wanted to share our latest study. Congrats to postdoc Shayna Thomas-Jardin on her outstanding work published in Cancer Research @theaacr.bsky.social
1223
Reposted by Walter W. Chen, MD, PhD
Judi Simcox @judisimcox.bsky.social · 10/07/2025
Officially tenured. Thank you to all the mentors who guided me, and to the trainees who made this possible with your ideas, hard work, and scientific joy.
2112413
Walter W. Chen, MD, PhD @walterwchen.bsky.social · 09/07/2025
Excited to receive an NIH K08 Clinical Investigator Award to support my research on #mitochondria #peroxisomes 😀 The $775K will be critical in helping me transition to independence as I begin looking for a place to start my lab 🙏🏻 @the-asci.bsky.social
5523
Reposted by Walter W. Chen, MD, PhD
Burroughs Wellcome Fund @bwfund.bsky.social · 09/07/2025
BWF is proud to announce the 2025 recipients of its Postdoctoral Diversity Enrichment Program (PDEP), which provides critical support to postdoctoral researchers pursuing careers in biomedical and medical research. www.bwfund.org/news/bwf-ann... #bwfpdep
bwfund.org
BWF Announces 2025 Postdoctoral Diversity Enrichment Program Recipients - Burroughs Wellcome Fund
Research Triangle Park, N.C. — The Burroughs Wellcome Fund (BWF) is proud to announce the 2025 recipients of its Postdoctoral Diversity Enrichment Program (PDEP), which provides critical support to…
14413
Reposted by Walter W. Chen, MD, PhD
Burroughs Wellcome Fund @bwfund.bsky.social · 08/07/2025
BWF is pleased to announce the 2025 recipients of its Career Awards at the Scientific Interface (CASI). buff.ly/WDswUnt #bwfcasi
buff.ly
174
Reposted by Walter W. Chen, MD, PhD
DeBerardinis Lab at UT Southwestern Medical Center @rjdlab.bsky.social · 08/07/2025
Thanks Nature Cancer for the chance to reflect on some factors that led me to study cancer metabolism. For the trainees and other young scientists: the critical events that shape your career might not be obvious while they are happening. Keep an open mind and trust your instincts. rdcu.be/evi4I
rdcu.be
An unexpected career in cancer metabolism
Nature Cancer - Ralph DeBerardinis obtained an MD and PhD from the University of Pennsylvania, then trained in Pediatrics and Medical Genetics at Children’s Hospital of Philadelphia. He moved...
26615
Reposted by Walter W. Chen, MD, PhD
Caroline Bartman @cbartman.bsky.social · 07/07/2025
Super excited to share my final postdoc paper from Rabinowitz lab- on how whole-body and tissue metabolism changes in viral infection! pubmed.ncbi.nlm.nih.gov/40581045/
pubmed.ncbi.nlm.nih.gov
610924
Reposted by Walter W. Chen, MD, PhD
John Prensner @johnprensner.bsky.social · 07/07/2025
Are you looking to study the #darkproteome but don't know where to start? Never fear, we've got your back. Here, we share the latest catalog for #RiboSeq #ORFs. Thanks to Sonia Chothani and @jruizorera.bsky.social for leading! 🧪 💻 + 🧬 #GENESky #bioinformatics www.biorxiv.org/content/10.1...
biorxiv.org
An expanded reference catalog of translated open reading frames for biomedical research
Non-canonical (i.e., unannotated) open reading frames (ncORFs) have until recently been omitted from reference genome annotations, despite evidence of their translation, limiting their incorporation into biomedical research. To address this, in 2022, we initiated the TransCODE consortium and built the first community-driven consensus catalog of human ncORFs, which was openly distributed to the research community via Ensembl-GENCODE. While this catalog represented a starting point for reference ncORF annotation, major technical and scientific issues remained. In particular, this initial catalogue had no standardized framework to judge the evidence of translation for individual ncORFs. Here, we present an expanded and refined catalog of the human reference annotation of ncORFs. By incorporating more datasets and by lifting constraints on ORF length and start-codon, we define a comprehensive set of 28,359 ncORFs that is nearly four times the size of the previous catalog. Furthermore, to aid users who wish to work with ncORFs with the strongest and most reproducible signals of translation, we utilized a data-driven framework (i.e. translation signature scores) to assess the accumulated evidence for any individual ncORF. Using this approach, we derive a subset of 7,888 ncORFs with translation evidence on par with canonical protein-coding genes, which we refer to as the Primary set. This set can serve as a reliable reference for downstream analyses and validation, with a particular emphasis on high quality. Overall, this update reflects continual community-driven efforts to make ncORFs accessible and actionable to the broader research public and further iterations of the catalog will continue to expand and refine this resource. ### Competing Interest Statement J.R.P. has received research honoraria from Novartis Biosciences and Quantum-Si, and is a paid consultant for ProFound Therapeutics. J.L.A. is an advisor to Microneedle Solutions. G.M. is co-founder and CSO of OHMX.bio. P.F. is a member of the scientific advisory board of Infinitopes. A.-R. C. is a member of the advisory board of ProFound Therapeutics. P.V.B. is a cofounder and shareholder of Eirnabio Ltd.
1228
Reposted by Walter W. Chen, MD, PhD
Josh Mendell @mendell-lab.bsky.social · 02/07/2025
I am pleased to present our latest pre-print describing our identification of the long-sought triggers for target-directed microRNA degradation (TDMD) of miR-322 and miR-503, work led by Collette LaVigne and Jaeil Han. For more info, read on! 👇 www.biorxiv.org/content/10.1...
biorxiv.org
Plagl1 and Lrrc58 control mammalian body size by triggering target-directed microRNA degradation of miR-322 and miR-503
Precise control of microRNA (miRNA) expression is critical during development. An important mechanism of miRNA regulation is target-directed microRNA degradation (TDMD), a pathway in which the binding...
1144
Reposted by Walter W. Chen, MD, PhD
Children's Research Institute at UT Southwestern @cri-utsw.bsky.social · 18/06/2025
Momentous day for CRI @rjdlab.bsky.social postdoc & UTSW Neonatologist @walterwchen.bsky.social 🎉 recipient of a 2025 @bwfund.bsky.social Career Award for Medical Scientists! 👏👏 He will continue his #relentlessdiscovery studying uncharacterized organellar proteins 🧪 ⬇️ cri.utsw.edu/deberardinis...
cri.utsw.edu
DeBerardinis Lab postdoc awarded prestigious Burroughs Wellcome Fund Career Award for Medical Scientists - Children's Medical Center Research Institute (CRI) | Dallas Texas
UTSW Neonatologist Walter W. Chen to receive $700,000 in funding to continue studying uncharacterized organellar proteins, their connections to disease When his twin daughters were born prematurely, W...
0114
Walter W. Chen, MD, PhD @walterwchen.bsky.social · 18/06/2025
Honored to receive @bwfund.bsky.social Career Award for my research on #mitochondria #peroxisomes and be 1st neonatologist awardee! The $700K for starting my lab will enable exciting research on #organelles #metabolism to help medicine’s smallest patients. #neonatal www.bwfund.org/news/bwf-ann...
bwfund.org
BWF Announces 2025 Career Awards for Medical Scientists - Burroughs Wellcome Fund
The Burroughs Wellcome Fund is pleased to announce the recipients of the 2025 Career Awards for Medical Scientists (CAMS). This award supports early-career physician-scientists as they transition from...
8336
Reposted by Walter W. Chen, MD, PhD
Xin Gu Lab at DFCI/HMS @xingulab.bsky.social · 17/06/2025
So happy and proud to see our story online!! Thank you, the midnolin team!
295
Reposted by Walter W. Chen, MD, PhD
Brendan Manning @bdmanning.bsky.social · 05/06/2025
Congrats to Yann Cormerais and the entire lab for this publication on a new mouse model that disconnects the primary signal from PI3K to mTORC1, involving Akt-mediated phosphorylation of TSC2, which I discovered as a postdoc in Lew Cantley's lab 23 years ago. authors.elsevier.com/a/1lDFh5Sx5g...
authors.elsevier.com
4186
Reposted by Walter W. Chen, MD, PhD
Sara Nowinski @saranowinski.bsky.social · 04/06/2025
Sign up for midwest metabolism & Trimad joint meeting! Abstracts are due 9/2/25. The vast majority of talks will come from the abstracts - great opportunity for trainees! www.vai.org/event/2025-m...
vai.org
2025 Midwest Metabolism Meeting
Join us for 2025 Midwest Metabolism Meeting at Van Andel Institute Stay informed about exciting upcoming events and activities.
01815