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Peter Ly

@peterlylab.bsky.social
1.2K followers 420 following 46 posts

Genome Integrity Lab | Children's Research Institute at UT Southwestern Medical Center. We study how mitotic errors and genomic instability drive cancer evolution. www.thelylab.org

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Reposted by Peter Ly
Lopes_Lab @lopeslab.bsky.social · 25/09/2026
Working with a great team to organize @keystoneSymposia.bsky.social DNA Replication: Pathway Crosstalk Shaping Physiology and Disease, this April! Join us to explore emerging research in London! keysym.us/KSDNA27 #KSDNA27
keysym.us
DNA Replication: Pathway Crosstalk Shaping Physiology and Disease | Keystone Symposia
Join us at the Keystone Symposia on DNA Replication: Pathway Crosstalk Shaping Physiology and Disease, April 2027, in London, with field leaders!
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Reposted by Peter Ly
Peter Ly @peterlylab.bsky.social · 19/08/2026
We are recruiting new faculty at all levels who seek to solve fundamental problems in biology and disease. @cri-utsw.bsky.social is an exceptional and highly collaborative environment to build a research program and pursue ambitious science. Join us!
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Korak Ray @korakray.bsky.social · 23/09/2026
🚨Preprint news!!🚨 Using specifically purified mitotic chromosomes, we show that chromosome mechanics vary based on identity and cell type. Chromosomes from differentiated cells are more compact and stiffer, likely due to increased non-covalent crosslinks within them www.biorxiv.org/content/10.6...
biorxiv.org
Individual mouse mitotic chromosomes exhibit cell type-specific differences in biomechanical properties
Cyclic episodes of chromosome compaction and de-condensation are features of eukaryotic cell division that aid mitotic segregation and help prevent aneuploidy. While biophysical data on mitotic chromo...
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Reposted by Peter Ly
Maya Voichek @mayavoichek.bsky.social · 24/09/2026
Super excited to share my postdoctoral work at @imbavienna.bsky.social @viennabiocenter.bsky.social - We discovered that some retrotransposons, or "jumping genes" 🧬, are able to spread from cell to cell via a new viral infectivity route. A short thread: 🧵👇 (1/7)
AI-generated illustration of the soma-to-germline transmission of retrotransposons described in our work
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Yuan He @yuanhejhu.bsky.social · 22/09/2026
A big week for the lab! Two new papers on how cells repair DNA double-strand breaks: one on getting NHEJ started in chromatin, one on processing the ends before ligation. Years of work by a fantastic team.
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Mekhail Lab at U. Toronto 🍁🇨🇦 @karimmekhail.bsky.social · 21/09/2026
😊 New preprint! In budding yeast, Dna2-intrinsic condensation regulates long-range DNA-end resection. Analyses suggest redistribution of condensate grammar in humans. Congrats to Chris Jordan and the Mekhail, Wyatt, Cowen & Hakem labs! More to come soon. www.biorxiv.org/content/10.6...
biorxiv.org
Dna2-intrinsic condensation regulates DNA end resection and reveals evolutionary redistribution of condensate grammar
Eukaryotic cells commonly use biomolecular condensation of DNA double-strand break (DSB) repair scaffolds and signaling assemblies to organize repair reactions in space and time. Yet whether DSB end-p...
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Reposted by Peter Ly
Lopes_Lab @lopeslab.bsky.social · 16/09/2026
Thrilled to share a new important study from the lab, published today in @nature.com, showing how cohesin mediates efficient replication fork plasticity and stress response, using its loop extrusion activity to promote 3D contacts on replicating DNA: www.nature.com/articles/s41...
nature.com
Cohesin reshapes replication fork contacts to aid fork slowing and reversal - Nature
Cohesin-mediated loop extrusion limits sister-fork coupling and tethers nearby replication forks under replication stress, promoting fork reversal and slowing fork progression to safeguard genome...
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Jens Schmidt @jenscs83.bsky.social · 15/09/2026
We are recruiting a postdoctoral fellow to study DNA damage repair via the homologous recombination pathway using quantitative cell biology approaches. The position will be initially supported for two years by the MSU Research Foundation Postdoctoral Scholars program. Please share! 1/5
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Kazuhiro Maeshima @kazu-maeshima.bsky.social · 15/09/2026
How are mitotic chromosomes built? Our Review @cp-trendsgenetics.bsky.social revisits the classical chromosome scaffold model and connects it to condensins, topoIIα, and physical forces. We propose interphase chromatin domains as “building blocks”🧩of chromosomes: authors.elsevier.com/a/1nmwrcQbJI...
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Fena Ochs @fenaochs.bsky.social · 10/09/2026
My lab at the Center for Gene Expression (CGEN), University of Copenhagen is looking for a motivated Postdoc interested in cohesin biology, 3D chromatin, and super-resolution microscopy. 📩 Please email your CV and letter of intent to fena.ochs(at)sund.ku.dk.
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Kazuhiro Maeshima @kazu-maeshima.bsky.social · 08/09/2026
Is euchromatin really “open”? 🧬 Using super-resolution imaging🔬 our new study @natgenet.nature.com reveals: Euchromatin forms condensed domains in live cells. Cohesin constrains them and prevents domain mixing for proper transcriptional insulation🚧 🔗 www.nature.com/articles/s41... (1/2)
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Maiato Lab @mitosisrocks.bsky.social · 09/09/2026
A long time in the making, now finally out.💥 Our new study shows that division stays on time when kinetochore–microtubule attachments form efficiently. When the process drags, that delay is remembered, limiting future cell proliferation. www.nature.com/articles/s41... #mitosis #biology #microscopy
nature.com
Low kinetochore-microtubule occupancy leaves a mitotic memory by delaying checkpoint silencing - Nature Communications
How do cells faithfully segregate chromosomes within an optimal time? Using naturally “super-resolved” kinetochores, the authors show that maximal microtubule occupancy prevents bad mitotic memories t...
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Pim Huis in 't Veld @huis.bsky.social · 09/09/2026
Fresh preprint from the lab: CIP2A tetramerization is required for mitotic DNA repair. A fantastic collaboration with @marcelvanvugt.bsky.social. By @laurendehaan.bsky.social, @rebeccaschneeweiss.bsky.social, and colleagues from Groningen, Vienna, Leiden, and Amsterdam 🙌 doi.org/10.64898/202...
Electron micrograph of full-length human CIP2A and a corresponding Alphafold model
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Harmit Singh Malik @harmitmalik.bsky.social · 04/09/2026
Structure and sequence fill evolutionary gaps for essential centromeric proteins. Work by @jeremyahollis.bsky.social, @irinakitop.bsky.social, & Jason Stonick. Article by Kelsey Woodruff. www.fredhutch.org/content/www/... Paper: www.science.org/doi/10.1126/...
fredhutch.org
Structure and sequence fill evolutionary gaps for essential centromeric proteins
Researchers in the Basic Sciences Division track evolutionary origins for an essential protein
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Anton Goloborodko @golobor.bsky.social · 03/09/2026
1/ out in @science.org! We found a new asymmetry in large-scale chromosome structure: sister chromatids are shifted by hundreds of kb in the 5′→3′ direction of their inherited strands! A close collaboration w/ @gerlichlab.bsky.social , led by @flaviacorsi.bsky.social www.science.org/doi/10.1126/...
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Tom Sasani @tomsasani.bsky.social · 02/09/2026
How long does DNA damage last? @aaronquinlan.bsky.social and I found evidence that lesions are transmitted from parent (P0) to offspring (F1) in C. elegans. If they segregate unrepaired for multiple cell divisions, lesions generate multi-allelism in the F1 germline. www.biorxiv.org/content/10.6...
biorxiv.org
Inherited DNA damage generates multi-allelic mutations in C. elegans
Exogenous and endogenous mutagens generate a wide variety of DNA lesions, including bulky adducts, chemical modifications, and single- or double-stranded breaks. A phenomenon called “lesion segregation,” in which lesions evade repair and persist for multiple cell divisions, has recently been documented in tumors and healthy somatic tissues from mice and humans, respectively. Persistent lesions can generate multi-allelic variants (MAVs) by serving as templates for multiple rounds of error-prone replication. By reanalyzing data from a large C. elegans mutagenesis experiment, we observed robust evidence for MAVs at a small fraction (∼0.2%) of mutated sites in the offspring of strains treated with alkylating agents. Because these sequencing data were derived from the progeny of a single F1 animal — itself the offspring of a mutagenized P0 — all mutations should be biallelic. The presence of multi-allelic variation implies that some DNA lesions are transmitted to the F1 zygote, evade repair, and are repeatedly bypassed by error-prone polymerases during embryogenesis. We suspect that many more lesions are inherited than is suggested by MAV prevalence, and that a large fraction of biallelic mutations are also caused by inherited lesions. Our results demonstrate that DNA lesions serve as durable, transgenerational templates for mutagenesis in C. elegans . We speculate that lesion segregation in the early embryo may be a source of mosaicism and genetic diversity in humans, as well. ### Competing Interest Statement The authors have declared no competing interest. National Institutes of Health, https://ror.org/01cwqze88, R01HG012252
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Inigo Martincorena @imartincorena.bsky.social · 03/09/2026
Big paper alert! This project has been years in the making. A comprehensive description of somatic mutation rates and signatures across 53 tissues or cell types using NanoSeq. A large collective effort led by Mimy Pham, Mike Stratton and @r-rahbari.bsky.social. www.biorxiv.org/content/10.6...
biorxiv.org
A comprehensive atlas of somatic mutation rates and mutational signatures in normal human cells
Over the course of a lifetime, somatic mutations accrue in normal human cells, causing variation in cell phenotype and engendering somatic evolution with outcomes ranging from the adaptive immune syst...
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Reposted by Peter Ly
Maiato Lab @mitosisrocks.bsky.social · 03/09/2026
What is the sequence of events at the kinetochore? Our Spotlight article highlighting a beautiful study by Conway et al. is out now in Trends in Cell Biology! Click here for download: sl1nk.com/euzlpiq A temporal framework for error-free mitosis: Trends in Cell Biology www.cell.com/trends/cell-...
cell.com
A temporal framework for error-free mitosis
The spindle assembly checkpoint (SAC) promotes mitotic fidelity by delaying anaphase until all kinetochores are stably attached to spindle microtubules. SAC silencing is increasingly recognised as a d...
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Reposted by Peter Ly
Paul & Virginie - Centriole Lab @centriolelab.bsky.social · 27/08/2026
Very happy to see our Nature Reviews Molecular Cell Biology Roadmap out! A fantastic collective effort, led by Carsten Janke and Zdenek Lansky, together with an amazing group of colleagues, and sparked by inspiring discussions at the Fondation des Treilles. www.nature.com/articles/s41...
nature.com
Towards a systems-level view of the microtubule cytoskeleton and its functions in physiology and disease - Nature Reviews Molecular Cell Biology
Microtubules are essential components of the cytoskeleton, yet important links between their molecular properties and organismal functions remain unresolved. In this Roadmap, Janke et al. discuss key ...
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Maitreya Dunham @maitreya.bsky.social · 27/08/2026
Latest w/ Bonny Brewer and Raghu. We evolved different DNA repair mutants to investigate the mechanism of a gene amplification we've been working on for many years. We got all sorts of interesting alternate outcomes, including these cool subtelomeric repeats in Ku mutants dx.plos.org/10.1371/jour...
dx.plos.org
Telomeric amplicons of SUL1 and Y’ in yeast are generated by microhomology-mediated break induced replication occurring in cis
Author summary The human genome is peppered with repeated segments that are located at sites both nearby and distant from the original, ancestral segments. These Copy Number Variants, or CNVs, appear ...
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Nature Reviews Molecular Cell Biology @natrevmcb.nature.com · 27/08/2026
New Online! Towards a systems-level view of the microtubule cytoskeleton and its functions in physiology and disease
dlvr.it
Towards a systems-level view of the microtubule cytoskeleton and its functions in physiology and disease
Nature Reviews Molecular Cell Biology, Published online: 27 August 2026; doi:10.1038/s41580-026-01011-wMicrotubules are essential components of the cytoskeleton, yet important links between their molecular properties and organismal functions remain unresolved. In this Roadmap, Janke et al. discuss key challenges, emerging opportunities and integrative approaches to connect microtubule regulation with physiology, ageing and disease.
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Jan Lammerding - Lab @lammerdinglab.bsky.social · 26/08/2026
Interested in nuclear mechanobiology and want to know what some of the big open questions are in the field? Read our recent editorial with input from >15 leading experts in the field, along with a list of review articles on nuclear mechanobiology: www.tandfonline.com/doi/full/10....
tandfonline.com
Nuclear mechanobiology: a brief history and five unresolved questions
Published in Nucleus (Vol. 17, No. 1, 2026)
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Daniel Durocher @durocher1.bsky.social · 25/08/2026
New work from the lab! We report that DDIAS is a downstream effector of CIP2A-TOPBP1 in mitosis that suppresses ssDNA to preserve genome integrity. From the great @yiboxue.bsky.social and many collaborators! Free link: authors.elsevier.com/a/1nfiF3vVUP... Pay link: www.cell.com/molecular-ce...
Model of DDIAS acting in mitosis to suppress ssDNA
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Andrew Blackford @andrewblackford.bsky.social · 24/08/2026
Our latest work describing DDIAS as a new component of the TOPBP1-CIP2A pathway in mitosis and its requirement for brain development is now published. Fantastic collaboration with @fenaochs.bsky.social, @profstewartlab.bsky.social, Lars Allan Larsen, @tcr-miller.bsky.social, Zafar Iqbal & others
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Fena Ochs @fenaochs.bsky.social · 24/08/2026
Happy to share our new paper out today @cp-cell.bsky.social. Great collaboration between @andrewblackford.bsky.social and my lab. Congratulations all!
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marcelvanvugt.bsky.social @marcelvanvugt.bsky.social · 24/08/2026
Very pleased to share this new study: In a truly collaborative effort with the lab of Pim Huis in 't Veld @huis.bsky.social, we combined biochemistry with cell biological and genomic approaches to uncover how CIP2A works in mitotic DNA repair. www.biorxiv.org/content/10.6...
biorxiv.org
CIP2A tetramerization is required for mitotic DNA repair
DNA lesions that persist in mitosis threaten genome stability. These lesions recruit TOPBP1-CIP2A, a complex crucial to tether and process damaged DNA on mitotic chromosomes. Importantly, CIP2A is syn...
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Soni Lacefield @lacefieldlab.bsky.social · 21/08/2026
Excited to share this review that @needhibhalla.bsky.social and I wrote on meiotic checkpoints! www.annualreviews.org/content/jour...
annualreviews.org
Tuning Meiotic Checkpoints: Evolutionary Costs and Mechanistic Trade-Offs
In this review, we discuss three meiotic checkpoints—the DNA damage response, the pachytene checkpoint, and the spindle checkpoint—and highlight their similarities and differences across diverse syste...
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Christian Zierhut @zierlab.bsky.social · 21/08/2026
Supremely excited to share our new paper in @natcellbio.nature.com With an updated genetic cGAMP reporter, we reveal that cGAS activation by DNA damage is a rare event, and that cGAS enrichment on intracellular structures cannot be taken as evidence of activation. www.nature.com/articles/s41...
nature.com
A versatile cGAMP reporter reveals principles of cGAS activation by DNA damage and chromosome instability - Nature Cell Biology
Lebrec et al. present a FRET-based cGAS reporter and show that cGAS activation by genotoxic stress is rare and uncoupled from micronuclei. The study implicates R-loop structures and subtypes of chroma...
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Gerlich Lab @gerlichlab.bsky.social · 21/08/2026
Our paper is out in The EMBO Journal @embojournal.org! 🎉 We show how replicated chromosomes can maintain sister chromatid cohesion while still allowing dynamic loop folding within nested hierarchy of TADs. Check it out below 👇 1/2
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Hasan Yardimci @hyardimci.bsky.social · 20/08/2026
Delighted to share our latest publication, a collaborative work with @hanasedlackova.bsky.social and @puckknipscheer.bsky.social. Grateful to everyone who contributed to this project. www.cell.com/cell-reports...
cell.com
FANCJ and RTEL1 facilitate pre-replication complex disassembly following replisome collision
Cameron et al. show that dormant pre-replication complexes are removed upon collision with replication forks in Xenopus egg extracts. They identify FANCJ and RTEL1 as key factors in this process and s...
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Peter Ly @peterlylab.bsky.social · 19/08/2026
We are recruiting new faculty at all levels who seek to solve fundamental problems in biology and disease. @cri-utsw.bsky.social is an exceptional and highly collaborative environment to build a research program and pursue ambitious science. Join us!
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Graham Erwin @grahamerwin.bsky.social · 18/08/2026
The Baylor College of Medicine Conference on Structural Variants and DNA Repeats is back, and this year it has a new home! Join us in person in Houston November 19th–20th. Or join online. Virtual registration is FREE! ErwinLab.org/svar-conference
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Matthew Taliaferro @jmtali.bsky.social · 12/08/2026
Excited to share our newest work! We asked whether RNA molecules need to be in a specific place in the cell to do their job. We found that a single RNA must reach the midbody, the structure that pinches two dividing cells apart, for cell division to finish efficiently. 🧵⬇️
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Matt Jones @mattjones.bsky.social · 10/08/2026
New paper from my group at @mitkochinstitute.bsky.social, MIT IMES, and MIT Biology! I am thrilled to share that our paper describing scAmp, a new method for analyzing extrachromosomal DNA amplifications at single-cell resolution, has been published in @natcomms.nature.com. Thread below 👇
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Molecular Cell @cp-molcell.bsky.social · 07/08/2026
Broken chromosomes don’t stay home: Tunneling nanotubes carry damaged DNA between human cells
dlvr.it
Broken chromosomes don’t stay home: Tunneling nanotubes carry damaged DNA between human cells
In a recent Cell paper, Maurais et al. show that genomic instability drives human cells to transfer fragmented chromosomes to neighbors via tunneling nanotubes (TNTs), with heritable functional consequences, raising fundamental questions about intercellular communication, genome surveillance, and cancer evolution.
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Mariko Sasaki @marikosasakiatnig.bsky.social · 06/08/2026
The Sasaki lab at the National Institute of Genetics in Japan are seeking for highly motivated PhD students to work on extrachromosomal circular DNA, gene amplification, genome stability, and cancer genome dynamics, starting in October 2027. Please see below and apply by August 31.
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Aaron Straight @astraight.bsky.social · 03/08/2026
These two reviews on centromeres and kinetochores in @natrevmcb.nature.com cap off @andrea-musacchio.bsky.social sabbatical at @stanfordbiochem.bsky.social from @valleefoundation.bsky.social. Long time in the making! Non-paywall versions rdcu.be/fxD9V, rdcu.be/fxEar
rdcu.be
Structure and function of the centromere and inner kinetochore
Nature Reviews Molecular Cell Biology - The kinetochore is a macromolecular complex that assembles on centromeric chromatin and connects spindle microtubules to the chromosome. This Review...
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Peter Ly @peterlylab.bsky.social · 31/07/2026
Reminder: Abstract deadline for the 2026 FASEB Aneuploidy meeting is coming up on Monday, August 3!
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Sarah Aitken @s-j-aitken.bsky.social · 27/07/2026
🧬NEW PAPER🧬 To what extent is cancer development deterministic? Does the germline genome affect that predictability? Find out in our #StrainDifferences paper @nature.com "Genetic background sets the trajectory of experimental cancer evolution" www.nature.com/articles/s41... 🧵[1/14]
nature.com
Genetic background sets the trajectory of experimental cancer evolution - Nature
Experimentally replaying tumour evolution in divergent mouse strains reveals the importance of interactions between genetic ancestry and acquired cancer-driving mutations in shaping the earliest stage...
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Peter Ly @peterlylab.bsky.social · 01/06/2026
The Ly Lab is recruiting two #postdocs to study intercellular DNA transfer. Join us to tackle fundamental questions at the intersection of genome instability, cell-cell communication, and cancer evolution. Please share! 🙏 Full posting: cri.utsw.edu/careers/
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Cell - a Cell Press journal @cp-cell.bsky.social · 23/07/2026
and mammalian cells that transfer damaged DNA fragments between them! www.cell.com/cell/fulltex...
cell.com
Genome instability triggers intercellular DNA transfer between human cells
Mammalian cells can pass damaged pieces of their genome directly to neighboring cells via contact-dependent, nanotube-like connections. These transferred DNA fragments persist and function, revealing ...
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allen institute @alleninstitute.org · 23/07/2026
Scientists at @cri-utsw.bsky.social and @omrf.bsky.social have discovered that DNA can travel from one human cell to another through bridge-like nanotubes. Once in its new home, it can integrate into the new cell's genome and change how it functions. Dive deeper: bit.ly/4wUwlep
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Peter Ly @peterlylab.bsky.social · 12/07/2026
Chromosome loss is detrimental to cellular fitness, yet can be one of the earliest events in cancer. How can a deleterious genomic alteration initiate tumorigenesis? 🤔 Our latest preprint tackles this paradox using clear cell renal cell carcinoma (ccRCC) as a model. www.biorxiv.org/content/10.6...
biorxiv.org
A single chromosome 3p break initiates clear cell renal cell carcinoma evolution
Clear cell renal cell carcinoma (ccRCC) is initiated by chromosome 3p loss, yet chromosome losses impose a profound fitness burden on normal cells. How renal epithelial cells tolerate this deleterious...
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Lopes_Lab @lopeslab.bsky.social · 10/07/2026
Thrilled to share a new preprint from the lab, showing that active fork slowing and reversal is not confined to the damaged subnuclear compartment but rapidly extends throughout the nucleus, via non-canonical ATR signaling and modulation of MRN exonuclease activity. www.biorxiv.org/cgi/content/...
biorxiv.org
Non-canonical ATR signalling via NBS1 phosphorylation propagates fork slowing from stressed to unperturbed nuclear regions
DNA replication forks frequently encounter obstacles and remodel into four-way junctions to actively slow DNA fork progression. Fork slowing can also spread to undamaged forks via an ATR-dependent mec...
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Peter Ly @peterlylab.bsky.social · 02/07/2026
Join us this fall for the 2026 FASEB Aneuploidy Conference! Learn about exciting science in chromosome biology, genome stability, development, and cancer + plenty of trainee talks and career development sessions. @faseborg.bsky.social #ANESRC Abstracts due August 3! events.faseb.org/event/Aneupl...
events.faseb.org
Home - Consequences of Aneuploidy
Explore the causes and impact of aneuploidy in cancer, aging, and development at this global research conference.
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Nitika Taneja @TanejaLab @nitikataneja.bsky.social · 01/07/2026
Very excited to share our new Nature study! We discovered that replication stress stabilizes CTCF-dependent chromatin loops enclosing stressed nascent DNA, where G9a-mediated heterochromatin protects it from nucleolytic degradation. rdcu.be/frzLg Huge thanks to all our collaborators and co-authors!
nature.com
Replication-stress-induced chromatin loops protect fork stability - Nature
Replication stress induces the formation of transient chromatin loops that enclose de novo heterochromatin-enriched stalled replication forks.
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Sandra Segura-Bayona @ssegurabayona.bsky.social · 01/07/2026
🧬 Our new paper is out in @natsmb.nature.com! ATRX is one of the most mutated genes in cancer, and linked to the rare ATR-X syndrome. We ran genome-scale CRISPR screens to map how it protects the genome, and found it is doing two separate jobs... 🧵 (1/4) nature.com/articles/s41594-026-01827-2
nature.com
Distinct ATRX functions cooperate with 9-1-1 and CST complexes to safeguard replication and telomere integrity - Nature Structural & Molecular Biology
Segura-Bayona et al. uncover genetically separable ATRX functions that independently safeguard telomeres and genome replication, revealing how CST and 9-1-1 pathways suppress accumulation of toxic sin...
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Abby Buchwalter @abbybuch.bsky.social · 21/06/2026
After some good funding news, we are hiring! Looking for a postdoc to join our team and lead our explorations into transposon repression by the nuclear lamina. Check out the full ad on our lab website at buchwalter-lab.github.io/postdoc-ad.pdf + contact me to learn more!
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Nature Reviews Molecular Cell Biology @natrevmcb.nature.com · 22/06/2026
ICYMI: New Online! Regulation and function of specialized membrane protrusions in intercellular communication
dlvr.it
Regulation and function of specialized membrane protrusions in intercellular communication
Nature Reviews Molecular Cell Biology, Published online: 19 June 2026; doi:10.1038/s41580-026-00982-0Tunnelling nanotubes, cytonemes and migrasomes are specialized membrane protrusions that mediate intercellular transfer of signalling molecules, organelles and other cargo. This Review discusses recent advances in their formation, architecture and transport functions, and examines their roles in development and disease.
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Nature Structural & Molecular Biology @natsmb.nature.com · 18/06/2026
ICYMI: New online: A horizontal gene-transfer-like mechanism in mammalian cells
dlvr.it
A horizontal gene-transfer-like mechanism in mammalian cells
Nature Structural & Molecular Biology, Published online: 17 June 2026; doi:10.1038/s41594-026-01826-3A horizontal gene-transfer-like mechanism in mammalian cells
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