Sign in

Vijay Ramani

@vram142.bsky.social
1.8K followers 644 following 125 posts

PI @ Gladstone Institutes & UCSF. Molecular technologies & the genomics / molecular biology / biochemistry of gene regulation. Views here mine & do not represent those of my affiliated institutions.

PostsRepliesMedia
Reposted by Vijay Ramani
Tineke Lenstra @tinekelenstra.bsky.social · 17/08/2026
Sign up now for the EMBO meeting 'quantitative biology to molecular mechanisms'. Fantastic speaker lineup and plenty of speakers slots selected from abstracts. Submit your abstract before Sept 11!
01611
Reposted by Vijay Ramani
Jessica Mella @jmella.bsky.social · 21/09/2026
First Bluesky post for my new preprint! Super fun project with guidance from @abbybuch.bsky.social and @willowcoyote.bsky.social. We applied saturation mutagenesis to the Lamin A protein in #hiPSC derived cardiac cells to uncover cell type-specific mutation effects 1/ www.biorxiv.org/content/10.6...
biorxiv.org
Cardiomyocyte vulnerability to lamin polymer disruption revealed by saturation mutagenesis
Hundreds of mutations to the broadly expressed LMNA gene cause disease primarily within cardiac, muscular, and adipose tissues (1). Tissue-specific pathogenesis arises when mutant protein dysfunction ...
1225
Reposted by Vijay Ramani
Angelika Feldmann @angelikafeldmann.bsky.social · 18/09/2026
1\ We know a bit about how 3D chromatin interactions are formed, but what do we know about how they are disrupted? We asked this question in our latest preprint: doi.org/10.64898/202..., focusing on the massive loss of promoter interactions during neuronal differentiation.
doi.org
Developmentally programmed loss of long-range Polycomb interactions is regulated by cohesin
Distal regulatory elements (DREs), such as enhancers, can regulate genes across megabase-long distances, presumably via coming into close spatial proximity. The establishment of new transcriptional programmes during cell type transitions is associated with widespread rewiring of the spatial organisation of the genome, including gain and loss of chromatin interactions. Extensive effort has been invested into understanding how chromatin interactions are formed during development, yet the mechanisms underlying their developmental loss remain largely unclear. By leveraging chromatin accessibility-assisted footprinting, acute protein degradation and chromatin conformation capture, we show that loss of promoter interactions cannot be explained by reduced binding of sequence-specific transcription factors (TFs). Instead, we identify a subset of interactions that depend on cohesin for programmed developmental disruption. These sites are characterized by high Polycomb enrichment and TF occupancy and engage in strong long-range interactions that undergo extensive differentiation-dependent rewiring. Preventing interaction loss by acute cohesin degradation results in the preferential downregulation of associated genes. Together, these results suggest that cohesin indirectly regulates developmental loss of Polycomb interactions by enabling the acquisition of other potentially regulatory contacts in a process that may shape transcriptional programs during cell type transitions. ### Competing Interest Statement The authors have declared no competing interest. European Research Council Helmholtz Society, VH-NG-1604
24924
Reposted by Vijay Ramani
Andre Rendeiro @andre-rendeiro.com · 15/09/2026
🚨 New preprint from the Rendeiro lab! We mapped human tissue aging at single-cell resolution: 3.5 billion cells, 16 organs, 980 donors, spanning the adult lifespan. Led by @e-abila.bsky.social 📄 www.biorxiv.org/content/10.6...
183
Reposted by Vijay Ramani
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
11730
Reposted by Vijay Ramani
Arnaud Krebs @arnaudkr.bsky.social · 14/09/2026
your starter pack for Single Molecule Genomics! Why you should do it (or not) - How you should do it. Collective effort with @vram142.bsky.social @stirlingchurchman.bsky.social @naltemose.bsky.social A Stergachis M Stadler W Greenleaf @embl.org rdcu.be/PmzSEV529GRa
26928
Vijay Ramani @vram142.bsky.social · 14/09/2026
Everything you wanted to know about single-molecule epigenomics but were too afraid to ask! Wonderful to co-write (h/t ENORMOUS lift by @arnaudkr.bsky.social) this primer on our nascent field. Also, a 💯 example of wonderful colleagues building something *together*, not in competition =)
nature.com
A practical guide to studying genome function using single-molecule genomics
Nature Reviews Molecular Cell Biology - Single-molecule genomics methods are used to study the activity of regulatory factors on individual DNA molecules genome-wide, thereby enabling...
07526
Reposted by Vijay Ramani
Mike Dorrity @mwdorr.bsky.social · 13/09/2026
🧫 We’re hiring a staff/research scientist to develop new experimental approaches that capture cell state dynamics. Join us in Heidelberg, details + application here: embl.wd103.myworkdayjobs.com/EMBL/job/Hei... Closes September 30th
embl.wd103.myworkdayjobs.com
Laboratory Officer
The Dorrity group at EMBL Heidelberg is seeking a motivated and skilled molecular biologist to join as a Laboratory Officer. Our group uses cutting-edge single-cell genomic techniques to study how cel...
11318
Reposted by Vijay Ramani
janeskok.bsky.social @janeskok.bsky.social · 07/09/2026
Excited to share our new paper
2257
Reposted by Vijay Ramani
Mark Pownall @mpownall.bsky.social · 17/08/2026
First preprint from the lab 🚨 We asked when and how global chromatin organization emerges during early development 🐟
29532
Reposted by Vijay Ramani
Crow @abbyjane.cloverdalelane.com · 14/08/2026
I think about this a lot.
Tim Henke
@TimHenke9
eat shit, René Magritte
Translate Tweet
Mauv @ThatsMauvelous • 1d the machine refused to recognize my humanity until i professed to believe that a sign painted to look like a traffic light is indeed a traffic light.
Show this thread
Select all squares with traffic lights
7895082494
Reposted by Vijay Ramani
Arnaud Krebs @arnaudkr.bsky.social · 12/08/2026
How many TFs to you need to open chromatin at enhancers? Very excited to see this one out! Check out the augmented version with combinatorial motif mutant libraries in Figure 5! Very proud of @guidobarzaghi.bsky.social @valentinabaderna.bsky.social @embl.org
17626
Reposted by Vijay Ramani
Anders Sejr Hansen @andersshansen.bsky.social · 06/08/2026
(1/n) Excited to share close collab w @bloodgenes.bsky.social led by Varshini & Chun-jie et al How to induce expression of key genes while silencing much of the genome during Erythropoiesis? A: Matchmaker CREs load cohesin near key genes to promote looping & exp: www.biorxiv.org/content/10.6...
14714
Reposted by Vijay Ramani
Kaushik Ragunathan @kaushikr.bsky.social · 03/08/2026
Our new study shows a CHD-family remodeler can nucleate and spread H3K9 methylation de novo, inverting the canonical hierarchy between writers and remodelers. www.biorxiv.org/content/10.6...
biorxiv.org
Nucleosome remodeling by a CHD enzyme promotes H3K9 methylation establishment and spreading via remodeler-writer feedback
In Schizosaccharomyces pombe , the conserved CHD remodeler Mit1 function within the SHREC remodeler-deacetylase complex (a homolog of the metazoan Mi-2/NuRD complex), which is essential for H3K9 methy...
14719
Reposted by Vijay Ramani
Jay Shendure @jshendure.bsky.social · 31/07/2026
Thrilled to post thread re: new single-cell lineage of mouse embryo reconstructed w/ DNA Typewriter. One animal, zygote to late organogenesis (E13.5). Tree has 1,340,794 transcriptionally profiled, annotated tips (cells), 1,142,588 dated internal nodes, rooted at zygote 1/n
313458
Reposted by Vijay Ramani
Jay Shendure @jshendure.bsky.social · 30/07/2026
New preprint from Shendure Lab on Locus-Scale aka Long-@$$ MPRAs led by the amazing Abby McGee & @carinabiar.bsky.social Most MPRAs test ~300 bp fragments next to a promoter. But real enhancers are bigger, act combinatorially and from a distance. 1/n www.biorxiv.org/content/10.6...
26436
Reposted by Vijay Ramani
Hiten Madhani @hitenmadhani.bsky.social · 30/07/2026
Next summer's Epigenetics GRC (I'm co-chairing with Deborah Bouch'is) is shaping up nicely with an all-star lineup of speakers working on a broad range of organisms and systems and everything from molecular mechanisms to new phenomena. Apply and put it on your calendar! www.grc.org/epigenetics-...
grc.org
2027 Epigenetics Conference GRC
The 2027 Gordon Research Conference on Epigenetics will be held in Holderness, New Hampshire. Apply today to reserve your spot.
14723
Reposted by Vijay Ramani
Elena Torlai Triglia @elett.bsky.social · 29/07/2026
1/ New paper alert! 🎉🧬 Our study on #9p21 gene regulation is out in #CellGenomics: "Chromatin topology and distal elements underlie divergent cell-type-specific regulation of 9p21 locus cell cycle genes" (Torlai Triglia, Miller, et al. www.cell.com/cell-genomic... 🧵
1159
Reposted by Vijay Ramani
Stirling Churchman @stirlingchurchman.bsky.social · 28/07/2026
RNA-seq tells us how much RNA is present in the cell. But to understand gene regulation, we need to easily measure the synthesis and decay rates driving this abundance. We introduce AIR-seq: analog intrinsic recoding sequencing. (1/6) www.biorxiv.org/content/10.6...
biorxiv.org
Analog intrinsic recoding measures RNA dynamics without chemical conversion
Steady-state RNA abundance measurements mask the synthesis and decay rates that shape gene expression. Analog intrinsic recoding sequencing (AIR-seq) repurposes the base-pairing properties of N4-hydro...
215361
Reposted by Vijay Ramani
Julio Abril Garrido @jabrilgarrido.bsky.social · 21/07/2026
Now online ahead of print in Molecular Cell @cp-molcell.bsky.social, congrats once again to all authors! For more info, see the paper online www.sciencedirect.com/science/arti... or the reposted thread below ⬇️
sciencedirect.com
0112
Reposted by Vijay Ramani
Jason Buenrostro @jbuenrostro.bsky.social · 18/07/2026
Thank you Broad Institute of MIT and Harvard for this profile. The last 2 years have been an extraordinary moment of creativity and inspiration. If you’re interested in joining us, PM me! We’re building new methods, models and ML tools - we’re recruiting at all levels!
0239
Reposted by Vijay Ramani
Ritu Raman @rituraman.bsky.social · 07/07/2026
Out today in PNAS: We show that dynamic "4D" forces can spatially pattern angiogenesis in a PIEZO1-dependent manner. Excitingly, changing force patterns over time enables redirecting sprouting trajectories, forming complex branched geometries: www.pnas.org/doi/10.1073/... #TissueEngineering
1207
Reposted by Vijay Ramani
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.
56225
Reposted by Vijay Ramani
MwahahahahahadScientist @mads100tist.bsky.social · 26/06/2026
Don't use slop. Someone's trying to make money out of you and your colleagues and your friends. Do yourself a favor and read 100% human-crated content in @prelights.bsky.social Upload preprints. Read preprints. Cite preprints. Fuck AI 🧪
prelights.biologists.com
Homepage - preLights
Welcome to preLights, the preprint highlights service run by the biological community and supported by The Company of Biologists. Here, a team of scientists regularly review, highlight and comment on ...
415554
Reposted by Vijay Ramani
Anders Sejr Hansen @andersshansen.bsky.social · 22/06/2026
(1/n) Very excited to share tri-lab collab (Mirny & Zechner) led by Harvey, Henrik & Jack: Q: How do enhancers & promoters interact in space (contact vs. action-at-a-distance) and time (stable vs. transient)? A: Transient E-P contact (~25-42 nm lasting ~10-20 sec): www.biorxiv.org/content/10.6...
215277
Reposted by Vijay Ramani
Mike Dorrity @mwdorr.bsky.social · 19/06/2026
First pre-print from the lab, a collaborative effort led by Jess Bourn @bournsupremacy.bsky.social, a fantastic PhD in my group. We resolve a key problem in development + evolution: how do we quantify heterochrony and link temporal variation to phenotype? www.biorxiv.org/content/10.6...
biorxiv.org
Quantitative mapping of heterochrony to species-specific phenotypes
The genetic program of animal development is conserved, but its rate of execution varies across species. Heterochrony, shifts in the relative timing of developmental events, generates phenotypic varia...
511946
Vijay Ramani @vram142.bsky.social · 18/06/2026
JIT 4 summer, the latest preprint from our lab, brilliantly led by @kaitezhang.bsky.social w/ support from Collepardo lab (@juliamaristany.bsky.social / @janhuemar.bsky.social). www.biorxiv.org/content/10.6... describes a new single-molecule epigenomic method, & discoveries it enables ... (1/n)
biorxiv.org
Single-molecule nucleosome spacing coordinates chromatin fiber interactions
Nucleosome spacing influences higher-order chromatin fiber organization in vitro but how this relates to cellular chromosome structure remains contentious. To address this, we developed Ligation Analy...
14424
Reposted by Vijay Ramani
Heng Li @lh3lh3.bsky.social · 16/06/2026
Minibwa is a hybrid of bwa-mem and minimap2 and the successor of bwa-mem for short-read mapping. ~4X/2.5X as fast as bwa-mem/bwa-mem2 for WGS reads at comparable accuracy. Native support of directional bisulfite-seq. Applicable to long reads. Preprint at arxiv.org/abs/2606.15357
1193109
Reposted by Vijay Ramani
Jon Henninger @jhenninger.bsky.social · 08/06/2026
Excited to share the first pre-print from our lab!! Check it out here! www.biorxiv.org/content/10.6... We found that many RNA-binding proteins canonically understood to regulate RNA processing can also function like transcription factors and cofactors to directly regulate transcription.
37827
Reposted by Vijay Ramani
Dan Landau @landau.bsky.social · 04/06/2026
Exciting breakthrough technology from the lab, now live in @cellcellpress.bsky.social ! Instead of cutting the genome where proteins bind (e.g., Cut&Tag), D&D-seq scars the DNA with a deaminase, allowing single cell genome mapping of TFs and chromatin remodellers!
212851
Reposted by Vijay Ramani
Karolin Luger @nucleosomepolice.bsky.social · 18/05/2026
Out today - structure of the human HIRA histone chaperone complex bound to nucleosomes. Ever wondered how nucleosomes are assembled in the wake of transcription? It takes a 'hulk of a protein complex'. Work by the amazing Wei Tian weetian558.bsky.social. www.biorxiv.org/content/10.6... 🧵
616755
Reposted by Vijay Ramani
Alex Ip 葉清霖 @alexip718.com · 18/05/2026
If you're reading this, my cat and I have boarded a one-way flight out of the United States. The Trump administration wrongfully denied my work permit renewal; after months of demanding that they follow the law, we have run out of legal recourse, and I have no choice but to leave the country. (🧵)
giveinmay.org
Support Alex's Emergency Relocation + Next Steps on Give In May
Alex is leaving the US after his work permit renewal was wrongfully denied by Trump's USCIS.
13935181500
Reposted by Vijay Ramani
Elphege Nora Lab at UCSF @elphegenoralab.bsky.social · 13/05/2026
Why can't we explain enhancer action despite 2 decades of chromosome conformation technologies? 😬 Our new study spearheaded by Leonid Mirny's group points to a flaw in our assumptions, and to a solution from physical principles By @timothyfoldes.bsky.social 💻& @karissalhansen.bsky.social 🧪 🧵👇
2197112
Reposted by Vijay Ramani
bioRxiv Molecular Biology @biorxiv-molbio.bsky.social · 09/05/2026
Cohesin bridging as a physical principle of enhancer-promoter communication www.biorxiv.org/content/10.64898/20…
075
Reposted by Vijay Ramani
Grand Lab @grandlab.bsky.social · 07/05/2026
Excited to share our first story led by @martinacapriati.bsky.social! How do cells control the expression of viability genes? We find that single transcription factors can drive both chromatin opening and gene activation from densely co-bound CpG island promoters, including at essential genes
25127
Reposted by Vijay Ramani
Gerlich Lab @gerlichlab.bsky.social · 06/05/2026
New preprint out!🧬 How do cells keep replicated sister chromatids linked for DNA repair while folding 3D loops for gene expression? Extrusion folds DNA but separates sisters, while cohesion connects them, risking mutual interference. How do they coexist?🧵👇 🔗 doi.org/10.64898/2026.05.02.722390 1/6
doi.org
25422
Reposted by Vijay Ramani
Schubeler Lab @schubelerlab.bsky.social · 07/05/2026
Excited to share our new study on CpG islands (CGIs) regulation by transcription factors (TFs)! CGIs drive most transcription initiation with unclear regulation. We find that chromatin-opening TFs are key players—following a surprisingly simple rule. 🧵 www.biorxiv.org/content/10.6... 1/9
biorxiv.org
18641
Reposted by Vijay Ramani
bioRxiv Genetics @biorxiv-genetic.bsky.social · 06/05/2026
Nucleosome remodeling by a CHD enzyme promotes H3K9 methylation establishment and spreading via remodeler-writer feedback www.biorxiv.org/content/10.64898/20…
073
Vijay Ramani @vram142.bsky.social · 06/05/2026
Delighted to share our lab's latest (w/ inimitable @genophoria.bsky.social) in final form at @nature.com. Enormous lift by Sean Wang, @palindromephd.bsky.social & @martyyang.bsky.social to address extensive & constructive reviewer comments & see this through. (1/n) www.nature.com/articles/s41...
nature.com
Pervasive and programmed nucleosome distortion on single chromatin fibres - Nature
An analytical pipeline called Iteratively Defined Lengths of Inaccessibility (IDLI) maps the genome-wide occupancy of a range of nucleosome types and shows that most nucleosomes exhibit programmed ‘di...
58031
Reposted by Vijay Ramani
Ariel Kaplan @arielkaplan.bsky.social · 06/05/2026
Happy to share our new review! Chromatin mechanics and regulatory protein function: insights from single-molecule force spectroscopy www.sciencedirect.com/science/arti...
sciencedirect.com
Chromatin mechanics and regulatory protein function: insights from single-molecule force spectroscopy
Single-molecule force spectroscopy probes chromatin mechanics by resolving force-induced conformational transitions across multiple length scales. Rec…
187
Reposted by Vijay Ramani
Anders Sejr Hansen @andersshansen.bsky.social · 05/05/2026
(1/n) Super excited to share that our preprint is out today in @natsmb.nature.com with a new name "Integrated MINFLUX tracking reveals two distinct chromatin dynamics classes across cell types" and more than 2x more data: www.nature.com/articles/s41... See also MIT News news.mit.edu/2026/how-chr...
410534
Reposted by Vijay Ramani
Kazuhiro Maeshima @kazu-maeshima.bsky.social · 01/05/2026
Our new preprint! 🧬✨ www.biorxiv.org/cgi/content/... @ynagata.bsky.social et al. combined single-nucleosome imaging with Fucci probes to follow local chromatin behavior during interphase. Local nucleosome motion stays nearly constant from G1 to G2, except in early G1. Thanks to all coauthors!
1246
Reposted by Vijay Ramani
Benoit Bruneau @benoitbruneau.bsky.social · 30/04/2026
But wait! There’s more! So you thought you knew nucleosome structure? Think again! @vram142.bsky.social @gladstoneinst.bsky.social and @genophoria.bsky.social @arcinstitute.org show that there is plenty of distortion largely due to TFs butting in www.nature.com/articles/s41...
nature.com
Pervasive and programmed nucleosome distortion on single chromatin fibres - Nature
An analytical pipeline called Iteratively Defined Lengths of Inaccessibility (IDLI) maps the genome-wide occupancy of a range of nucleosome types and shows that most nucleosomes exhibit programmed ‘di...
06426
Reposted by Vijay Ramani
Stefan Niekamp @niekamp.bsky.social · 25/04/2026
Excited to share our latest work in Molecular Cell: www.cell.com/molecular-ce... We show that PRC1 condensates exclude SWI/SNF from chromatin, revealing a physical mechanism for how opposing regulators compete to control gene expression. Huge thanks to all collaborators and mentors!
cell.com
Mutual antagonism between PRC1 condensates and SWI/SNF in chromatin regulation
Niekamp et al. show that biomolecular condensates formed by Polycomb repressive complexes can physically restrict access of the activating remodeler SWI/SNF to chromatin. Establishing this barrier dep...
1337
Vijay Ramani @vram142.bsky.social · 23/04/2026
Delaying? Destroying. Let’s call a spade a spade ffs.
030
Reposted by Vijay Ramani
Elphege Nora Lab at UCSF @elphegenoralab.bsky.social · 23/04/2026
📖 The final version of our paper is out in press Cohesin cofactor dosage sets the rate of loop extrusion, rendering genome folding tunable yet vulnerable to genetic disruption authors.elsevier.com/a/1m%7EU03vV... or www.cell.com/molecular-ce...
cell.com
Cohesin cofactor dosage sets the rate of loop extrusion, rendering genome folding tunable yet vulnerable to genetic disruption
Shah, Tortora, et al. show that cells can dial the rate of cohesin loop extrusion by balancing the relative dosage of NIPBL and PDS5. Their models provide a quantitative mechanistic basis for the gene...
37531
Reposted by Vijay Ramani
Anja Groth @groth-anja.bsky.social · 23/04/2026
Join us for the 3rd EMBO:EMBL Symposium on 'DNA replication and Genome Maintenance - from basic biology to human health' @embl.org Heidelberg, Oct 20-23 2026. Fantastic speaker lineup 🤩 on chromosome replication, stability and organization 👉 abstract by July 28: s.embl.org/ees26-13-li
s.embl.org
DNA replication and genome maintenance: from basic biology to human health
01510
Reposted by Vijay Ramani
Alushin Lab @alushinlab.bsky.social · 22/04/2026
Very pleased that after a rigorous (and lengthy) review process, our paper visualizing how myosin generated forces modulate actin filament structure for mechanosensitive recogntion by α-catenin has appeared in @nature.com : www.nature.com/articles/s41...
nature.com
Myosin forces remodel F-actin for mechanosensitive protein recognition - Nature
Structural studies demonstrate that myosin generates forces that cause structural changes in actin, modulating cooperative binding by α-catenin and thus signal transduction and intercellular communica...
37124
Vijay Ramani @vram142.bsky.social · 22/04/2026
ngl, did not have table tennis robots on my bingo card for 2026: www.nature.com/articles/s41...
nature.com
Outplaying elite table tennis players with an autonomous robot - Nature
An autonomous robot system, Ace, combines event-based vision and reinforcement learning to compete with elite human table tennis players, highlighting the potential of physical AI agents to perform co...
010
Reposted by Vijay Ramani
Masa A. Shimazoe @masaashimazoe.bsky.social · 09/04/2026
My first, first author paper is now on #ScienceAdvances ! Linker histone H1 is a liquid-like "glue" condensing chromatin, which revises textbooks! 📖✨ science.org/doi/10.1126/sc… Huge thanks to @kazu-maeshima.bsky.social , for supervision. Amazing collab with @rcollepardo.bsky.social ’s group! 1/
science.org
53612