Iain Cheeseman
@iaincheeseman.bsky.social
Whitehead Institute and Department of Biology, MIT. Lover of cell biology and cell division. Aspiring to do good science and do good.
Excited to be back at @mblscience.bsky.social today and looking forward to sharing our work on large-scale mechanistic cell biology. Go big or go home!
I am looking to recruit 2 postdoctoral fellows to the lab to work on a recently funded project focused on class switch recombination in B cells. If you are interested in immunology, gene expression, and RNA and protein single molecule imaging, please reach out (schmi706@msu.edu). Please share!
We are thrilled to announce the 2026 Zara Weinberg Leading Edge Fellows! 40 remarkable postdocs pursuing transformative research in biological/biomedical sciences. This is the 7th Leading Edge cohort and we are so excited to welcome them! www.leadingedgesymposium.org/fellows/
For 40 years the 8-nt ‘Kozak Sequence’ was thought to mark sites of translation initiation. In a new study, we revise this model by identifying an ~80-nt sequence—the extended Translation Initiation Sequence (eTIS)— that guides ribosomes to correct start sites. 🧵 www.biorxiv.org/content/10.6...
biorxiv.org
Also check out this more detailed description of the work by lead author Bram Verhagen!
Happy to share our preprint! Using massively parallel reporter assays, single-molecule imaging, deep learning and cryo-EM, we decode the sequence requirements for translation initiation and describe the “extended translation initiation sequence” (eTIS) that modulates start codon recognition. 🧵👇
On July 1st, I'll be joining the faculty at UC Berkeley, with a joint appointment in the Division of Molecular Therapeutics within MCB and the Helen Wills Neuroscience Institute.
In @jcb.org, Océane Marescal, @iaincheeseman.bsky.social et al. show that quiescent cells disassemble their #centromeres through the transcriptional downregulation of most #centromere proteins while preserving those required to maintain centromere identity. rupress.org/jcb/article/...
Océane Marescal, @iaincheeseman.bsky.social et al. show that quiescent cells disassemble their #centromeres through the transcriptional downregulation of most #centromere proteins while preserving those required to maintain centromere identity. rupress.org/jcb/article/...
How can cells maintain gene expression despite minimal transcription during prolonged mitotic arrest? @iaincheeseman.bsky.social @jimmy-ly.bsky.social et al reveal global transcriptome stabilization in mitotic cells, partly because of reduced mRNA deadenylation link.springer.com/article/10.1...
Global stabilization of the transcriptome in mitotic cells - The EMBO Journal
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 aspects of mitosis require substantial adaptations to gene expression. During interphase, homeostatic control of mRNA levels involves a constant balance of transcription and degradation, with a median mRNA half-life of ~2–4 h. If such short half-lives persisted in mitosis, cells would be expected to rapidly deplete their transcriptome without new transcription. Here, we report that the transcriptome is globally stabilized during prolonged mitotic delays. Median mRNA half-lives are increased >4-fold during mitotic arrest compared to interphase, buffering mRNA levels in the absence of new synthesis. Moreover, poly(A) tail-length profiles change during mitotic arrest, strongly suggesting a partial mitotic repression of deadenylation. In contrast, siRNA-directed mRNA degradation machinery remains active. We further show that mitotic mRNA stabilization depends on PABPC1&4. Depletion of PABPC1&4 during mitotic arrest reduces mRNA stability and disrupts the cells’ ability to maintain arrest, highlighting the critical physiological role of mitotic transcriptome buffering.
link.springer.com
We are #hiring! #GroupLeader positions open at #IRBBarcelona in #ChemicalBiology and #StructuralBiology. Application deadline: May 22, 2026 𝗚𝗿𝗼𝘂𝗽 𝗟𝗲𝗮𝗱𝗲𝗿 𝗶𝗻 𝗖𝗵𝗲𝗺𝗶𝗰𝗮𝗹 𝗕𝗶𝗼𝗹𝗼𝗴𝘆 ➡️ https://shorturl.at/1tE3n 𝗚𝗿𝗼𝘂𝗽 𝗟𝗲𝗮𝗱𝗲𝗿 𝗶𝗻 𝗦𝘁𝗿𝘂𝗰𝘁𝘂𝗿𝗮𝗹 𝗕𝗶𝗼𝗹𝗼𝗴𝘆 ➡️ https://shorturl.at/eKiJn #IRBJobs #Jobs #AcademicSky
If you're a senior PhD student or recent graduate interested in doing work at the intersection of AI and microbial genomics and/or microbiomes, please feel free to reach out to discuss the possibility of applying together for an MIT Novo Nordisk Fellowship engineering.mit.edu/novo-nordisk
Novo Nordisk Fellowship
Potential areas of focus for postdoctoral fellows participating in the MIT-Novo Nordisk Postdoc Program include, but are not limited to, the following: Your complete application should include: In the...
engineering.mit.edu
In Memoriam: R. Bruce Nicklas (1932-2025). Leocadia Paliulis commemorates the life of Dr. Nicklas who was a mentor, a polymath with a great sense of humor, and a link to the beginnings of chromosome research. rupress.org/jcb/article/... #CellDivision #Chromosomes
I am excited to share our review on the mechanistic basis and functional consequences of cell cycle-specific mRNA decay and translational control. Fun work with Cheese lab's (@iaincheeseman.bsky.social) grad students Katya Khalizeva and Yi Fei Tao! rnajournal.cshlp.org/content/earl...
Recruitment for the EMBL International PhD Programme is officially open! 🔊 At EMBL, we train young scientists to become skilled and creative future leaders in academia, industry and other sectors. Start your career in the life sciences with us! 🔎 Read more here: tinyurl.com/4jdt2ra5
First preprint of the year! New work from @jimmy-ly.bsky.social revealing unexpected roles for 5' UTR length in controlling alternate translational isoforms - important implications for both physiological cell function and rare disease. Small changes -> big impacts. www.biorxiv.org/content/10.6...
biorxiv.org
Thrilled to start my lab at the @whiteheadinstitute.bsky.social @mit.edu and to join such a special community of creative and inspiring colleagues. The Sullivan Lab asks (1) how and (2) why infections make us sick, bridging immunology and neuroscience to understand host defense at the organism scale
“I want everyone in my lab to be exposed to many ways of thinking about biology,” says Whitehead Institute’s newest Member, immunologist Zuri Sullivan. “Creative science often comes from making connections across systems, and Whitehead is uniquely well-suited for that.” shorturl.at/EFsmh
I'm sorry that last sentence is nonsense. There are PIs who are only PIs because they couldn't get jobs as Nature editors, and there are some very editors there with less bias than academics. I won't defend the profits or many aspects of their process but it's just not true they're all failed PDs.
The Vienna BioCenter Summer School 2026 call is open for talented undergrads, it's a great opportunity for students who are interested in graduate study in the life sciences. Hannes Zuber from the IMP is recruiting! https://training.vbc.ac.at/summer-school/
For me, the holidays are about food, family, and random traditions. This is our family's Sour Cream Coffee cake. The recipe comes from a "cookbook" typed (on a typewriter!) by my mother in 1976 as a Christmas present for relatives. I still have an original copy.
The Reck-Peterson lab at Weill Cornell Medicine is seeking a technician or staff scientist to work on Aspergillus projects. Broad background in fungal biology and techniques required. Bioinformatics skills preferred. Find out more at: reckpetersonlab.org.
First science session of #CellBio2025! 🧫🧪 Co-organized by @iaincheeseman.bsky.social and @abbybuch.bsky.social on the importance of the physiological context on studying cell biology. As a big fan of the ECM, I couldn’t agree more!
It's an amazing time to be a cell biologist, as new tech makes probing cellular processes in physiological contexts more tractable. This is the theme of a Special Interest Subgroup that @iaincheeseman.bsky.social and I are hosting at #cellbio2025. Join us on Saturday 12/5! @ascbiology.bsky.social
The #cellbio2025 is starting this week! I’ll be giving a talk on the first 1st day, in the session organized by @iaincheeseman.bsky.social and @abbybuch.bsky.social (Thx for the invitation!). If you’re interested in #oocytes, #proteostasis, and #aging come by to attend! @ascbiology.bsky.social
🌍Open call: Junior Group Leader positions! Join a world-class biomedical research institute at the heart of the Vienna BioCenter, where curiosity drives discovery. Lead your own lab, pursue bold ideas, and shape the future of science at the IMP: www.imp.ac.at/career/open-...
Bluetorial-Jim Watson I met Jim Watson a few times but did not know him well. However, I was greatly influenced by his book “The Double Helix”. He was a complicated human being with some very, very bad features, but some good contributions. What follows is my personal perspective. 1/41
a cartoon says hey everybody an old man 's talking while bart simpson looks on
ALT: a cartoon says hey everybody an old man 's talking while bart simpson looks on
media.tenor.com
4. A new publication in @natsmb.nature.com from ACS postdoctoral fellow Dr. Eric M. Smith and past ACS grantee Dr. @iaincheeseman.bsky.social at the #WhiteheadInstitute revealing two newly identified, unique subunits of the RNase MRP complex. Read the paper here: lnkd.in/eTNkJhBW
I'm honoured to be working with some very smart people at #WhiteheadInstitute! Research from @iaincheeseman.bsky.social, @jimmy-ly.bsky.social and co. shows proteins from the same gene can act very differently - shaping health and rare disease in unexpected ways. #Genetics #CellBiology #ResearchSky
From an accidental discovery of hidden biology to a new framework to understanding and diagnosing rare disease. Thrilled to share the most recent work from our lab and the amazing Jimmy Ly. wi.mit.edu/news/alterna...
From an accidental discovery of hidden biology to a new framework to understanding and diagnosing rare disease. Thrilled to share the most recent work from our lab and the amazing Jimmy Ly. wi.mit.edu/news/alterna...
Alternate proteins from the same gene contribute differently to health and rare disease | Whitehead Institute
Iain Cheeseman and colleagues reveal the underappreciated role of single genes producing multiple proteins in atypical presentations of rare disease, and present case studies of affected patients thro...
wi.mit.edu