Sign in

Ayshwarya Subramanian

@ayshwaryas.bsky.social
218 followers 253 following 9 posts

Assistant Professor at the Department of Molecular Biology and Genetics at Cornell University www.cellhomology.space

PostsRepliesMedia
Reposted by Ayshwarya Subramanian
HHMI @hhmi-science.bsky.social · 15/05/2025
A baby named KJ, born with a rare genetic disorder called CPS1 deficiency, is thriving thanks to the world’s first personalized gene-editing treatment. 🧬✨ Doctors at @childrensphila.bsky.social used base editing—a tool invented by HHMI Investigator David Liu and his lab at Harvard.
1268
Reposted by Ayshwarya Subramanian
Harvard Brain Science Initiative @harvardbrainsci.bsky.social · 08/05/2025
A new study raises the odds that a strategy already successful against some cancers may be deployed against Alzheimer’s. From @kuchroolab.bsky.social and colleagues, co-first authors Kimitoshi Kimura and @ayshwaryas.bsky.social news.harvard.edu/gazette/stor...
news.harvard.edu
Immune-system strategy used to treat cancer may help with Alzheimer’s — Harvard Gazette
Turning off checkpoint molecules freed microglia to attack plaques in brain, improved memory in mice.
063
Ayshwarya Subramanian @ayshwaryas.bsky.social · 08/05/2025
Outstanding Barbara McClintock Life Sciences Lecture by @michellemonje.bsky.social @cornell. And honored to have her as the first official visitor to our newly renovated space, and adding her favorite OPCs to our cell type leaderboard 🧫 🧠
030
Reposted by Ayshwarya Subramanian
Cedric Feschotte @cedricfeschotte.bsky.social · 30/04/2025
💥🥳 At long last, our latest paper is out! Gag proteins of endogenous retroviruses are required for zebrafish development www.pnas.org/doi/10.1073/... Led heroically by Sylvia Chang & @jonowells.bsky.social A study which has changed the way I think of #transposons! No less! 🧵 1/n
pnas.org
Gag proteins encoded by endogenous retroviruses are required for zebrafish development | PNAS
Transposable elements (TEs) make up the bulk of eukaryotic genomes and examples abound of TE-derived sequences repurposed for organismal function. ...
14259108
Reposted by Ayshwarya Subramanian
Carl T. Bergstrom @carlbergstrom.com · 20/04/2025
I've never had any luck trying to explain what it's like to be from Michigan—but here on forward I think I'll send this article and call it good. www.nytimes.com/2025/04/18/u...
Man Sinks in Quicksand and Emerges With a Girlfriend

A Michigan man who ended up waist-deep on an unstable beach was rescued, and found himself in a relationship.
Listen to this article · 3:29 min Learn more

A man is submerged in sand at a beach. Another person has a coil of wire.
“I knew not to panic. I have to be a macho man,” Mitchell O’Brien said of his mind-set while trapped in the sand.Credit...Breanne Sika
2552160
Reposted by Ayshwarya Subramanian
Shicheng Guo @shihcheng.bsky.social · 20/04/2025
TIM-3's role in microglia and Alzheimer's is unveiled! Found to influence neurodevelopment and neuroinflammation, affecting late-onset Alzheimer's risk. PMID:40205047, Nature 2025, @Nature doi.org/10.1038/s41586-025-08852-z #Medsky #Pharmsky #RNA #ASHG #ESHG 🧪
doi.org
Immune checkpoint TIM-3 regulates microglia and Alzheimer’s disease | Nature
Microglia are the resident immune cells in the brain and have pivotal roles in neurodevelopment and neuroinflammation1,2. This study investigates the function of the immune-checkpoint molecule TIM-3 (encoded by HAVCR2) in microglia. TIM-3 was recently identified as a genetic risk factor for late-onset Alzheimer’s disease3, and it can induce T cell exhaustion4. However, its specific function in brain microglia remains unclear. We demonstrate in mouse models that TGFβ signalling induces TIM-3 expression in microglia. In turn, TIM-3 interacts with SMAD2 and TGFBR2 through its carboxy-terminal tail, which enhances TGFβ signalling by promoting TGFBR-mediated SMAD2 phosphorylation, and this process maintains microglial homeostasis. Genetic deletion of Havcr2 in microglia leads to increased phagocytic activity and a gene-expression profile consistent with the neurodegenerative microglial phenotype (MGnD), also referred to as disease-associated microglia (DAM). Furthermore, microglia-targ
0184
Reposted by Ayshwarya Subramanian
Tom Cox @dj-acid-reflux.bsky.social · 19/04/2025
The green-lane-as-tunnel type of interdimensional portal is one of my favourites.
A green lane in mid-Cornwall.
520023
Ayshwarya Subramanian @ayshwaryas.bsky.social · 10/04/2025
Grateful to share our study on the potential for immune checkpoint blockade in late-onset #AlzheimersDisease out @nature.com today. Co-led with Kimi, Zhuoran, Ahad @kuchroolab.bsky.social in a big team effort @genelayinstitute.bsky.social @broadinstitute.org @harvardmed.bsky.social  /1
nature.com
Immune checkpoint TIM-3 regulates microglia and Alzheimer’s disease - Nature
The immune-checkpoint molecule TIM-3 regulates microglial homeostasis, and its microglial-specific deletion reduced cognitive impairment in a mouse model of Alzheimer’s disease.
1196
Reposted by Ayshwarya Subramanian
Kuchroo Lab @kuchroolab.bsky.social · 09/04/2025
With Butovsky Lab, we show that silencing TIM-3 in brain-resident immune cells prevents neurodegeneration in a mouse model of #Alzheimer’s disease. Deletion of TIM-3 in microglia enhance phagocytic clearance of toxic amyloid beta. #Immunosky🧪 www.nature.com/articles/s41...
nature.com
Immune checkpoint TIM-3 regulates microglia and Alzheimer’s disease - Nature
The immune-checkpoint molecule TIM-3 regulates microglial homeostasis, and its microglial-specific deletion reduced cognitive impairment in a mouse model of Alzheimer’s disease.
13814
Reposted by Ayshwarya Subramanian
Waggoner Lab @labwaggoner.bsky.social · 09/04/2025
TIM-3 mediates microglia homeostasis through TGFβ signaling & subverts phagocytic activity to curtail disease-associated microglia and Alzheimer’s disease www.nature.com/articles/s41... @nature.com @kuchroolab.bsky.social @ayshwaryas.bsky.social
071
Reposted by Ayshwarya Subramanian
Rohit Singh @rohitsingh8080.bsky.social · 05/04/2025
Bio foundation models are great design and engg tools. But can they help decode the fundamental principles of life? We harnessed a single-cell FM for decoding the long-debated relationship between genome arch. and gene coregulation. 1/ Preprint here: www.biorxiv.org/content/10.1...
biorxiv.org
Tracing the Shared Foundations of Gene Expression and Chromatin Structure
The three-dimensional organization of chromatin into topologically associating domains (TADs) may impact gene regulation by bringing distant genes into contact. However, many questions about TADs' fun...
23111
Reposted by Ayshwarya Subramanian
Vijay G. Sankaran @bloodgenes.bsky.social · 04/04/2025
Delighted to have our Perturb-multiome paper, led by #JorgeMartinRufino and @hemagene.bsky.social from our lab, published today in @science.org. Please check out this powerful approach to decipher gene regulatory networks enriched for genetic variation: www.science.org/doi/10.1126/...
science.org
Transcription factor networks disproportionately enrich for heritability of blood cell phenotypes
Most phenotype-associated genetic variants map to noncoding regulatory regions of the human genome, but their mechanisms remain elusive in most cases. We developed a highly efficient strategy, Perturb...
211929
Reposted by Ayshwarya Subramanian
Kaia Mattioli @kaiamattioli.bsky.social · 26/03/2025
our work on the molecular differences between transcription factor isoforms is out now in Molecular Cell! key point: 2/3rds of TF isos differ in properties like DNA binding & transcriptional activity many are "negative regulators" & misexpressed in cancer www.sciencedirect.com/science/arti...
716070
Reposted by Ayshwarya Subramanian
Eric Topol @erictopol.bsky.social · 29/01/2025
Immune cell sequencing from birth to old age "Using our lifecycle-wide single-cell dataset covering 13 age groups over the extent of the human lifespan...." www.nature.com/articles/s41...
114333
Reposted by Ayshwarya Subramanian
Jacob Schreiber @jmschreiber91.bsky.social · 22/01/2025
Multiscale footprints reveal the organization of cis-regulatory elements www.nature.com/articles/s41...
nature.com
Multiscale footprints reveal the organization of cis-regulatory elements - Nature
We developed PRINT, a computational method that identifies footprints of DNA–protein interactions from bulk and single-cell chromatin accessibility data across multiple scales of protein size.
04014
Ayshwarya Subramanian @ayshwaryas.bsky.social · 22/01/2025
Academic/biotech 🦋 what is your system for organizing datasets (usecase is ‘omics)? How do you track and update; and metadata? We use cloud + on-prem, tracking and updating is more old school. All/any suggestions welcome!
000
Reposted by Ayshwarya Subramanian
Possu Huang Lab @possuhuanglab.bsky.social · 15/01/2025
New preprint from our group! We propose SHAPES, a set of metrics to quantify the distributional coverage of generative models of protein structures with embeddings at different structural hierarchies and quantify undersampling / extrapolation behaviors.
1277
Reposted by Ayshwarya Subramanian
Vikram Agarwal @vagar.bsky.social · 09/01/2025
Super excited to announce our latest flagship model Borzoi: major props to Johannes & David Kelley et al for advancing it. It's been a long journey from our prior Enformer model into this one. A few innovations: i) longer DNA context, ii) adaptation to predict RNA-seq abundance and splice isoforms,
nature.com
Predicting RNA-seq coverage from DNA sequence as a unifying model of gene regulation - Nature Genetics
Borzoi adapts the Enformer sequence-to-expression model to directly predict RNA-seq coverage, enabling the in-silico analysis of variant effects across multiple layers of gene regulation.
27127
Reposted by Ayshwarya Subramanian
Ed Yong is offline @edyong209.bsky.social · 12/10/2023
A rainbow lorikeet about to stick its head in a tree. 🪶 Absolutely stunning bird; lovely call. It always astounds me how something like this can so completely disappear after landing in a tree. Canon R6mkii + RF100-400mm
Rainbow lorikeet about to stick its head in a tree.
1542945