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Junyue Cao

@junyuecao.bsky.social
433 followers 102 following 16 posts

Associated Professor, Rockefeller University

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Junyue Cao @junyuecao.bsky.social · 16/04/2026
Excited to share our new paper @nature.com! We developed PerturbFate, a scalable single-cell platform to discover how diverse genetic perturbations converge on a shared drug-resistant cell state, and key programs driving it, led by our incredible Zihan Xu from @rockefeller.edu rdcu.be/fdC14
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The Rockefeller University @rockefeller.edu · 15/04/2026
A @nature.com study from Rockefeller's @junyuecao.bsky.social describes a new platform called PerturbFate that reveals how diverse genetic perturbations funnel into shared disease states, a method that could unlock therapeutic targets for complex diseases. 🔗: bit.ly/4thIsRw
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Zehao-Tommy Zhang @tommyz626.bsky.social · 25/03/2026
Honored to be part of the Schmidt Science Fellows family! Excited for this pivot to bring discoveries to real-world impact, and deeply grateful to my mentor @junyuecao.bsky.social, labmates, collaborators for their unwavering support, and @rockefeller.edu for an exceptional training environment!
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Junyue Cao @junyuecao.bsky.social · 26/02/2026
New paper alert 🚀 Our organism-wide single-cell ATAC-seq atlas of mammalian aging is now out in @science.org, led by our fantastic graduate student Ziyu Lu from @rockefeller.edu! www.science.org/doi/10.1126/...
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The Rockefeller University @rockefeller.edu · 26/02/2026
Rockefeller's @junyuecao.bsky.social has created the most comprehensive atlas yet of how #aging affects thousands of cell subtypes. By profiling ~7 million individual cells, his lab has found which cells are most vulnerable to aging and what drives their decline: bit.ly/4bh9cdd
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Junhong Choi @choijunhong.bsky.social · 27/05/2025
New preprint with the Shendure lab @jshendure.bsky.social ! We apply the DNA Typewriter lineage recorder to mouse 3D gastruloids, a powerful model of early mammalian development. Led by Sam Regalado and CX Qiu @cxqiu.bsky.social : www.biorxiv.org/content/10.1... (1/13)
biorxiv.org
Lineage recording in monoclonal gastruloids reveals heritable modes of early development
Mammalian stem cells possess a remarkable capacity for self-organization, a property that underlies increasingly sophisticated in vitro models of early development. However, even under carefully contr...
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Junyue Cao @junyuecao.bsky.social · 12/05/2025
Excited to share our first anti-aging intervention analysis, led by brilliant Zehao @tommyz626.bsky.social, Alex, and Chloe from our lab at @rockefelleruniv.bsky.social! We identified the aging-associated cell populations that can be rescued by caloric restriction in the mammalian brain!
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Alex Merz 🇺🇸🇨🇦🇺🇦 @merz.bsky.social · 10/02/2025
Hero lawyers in state AG offices busted their asses over the weekend to get this done. Now do your part: call your Representative and Senators TODAY. Call your AG AND governor and voice your support for these lawsuits.
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Sudarshan Pinglay @sudpinglay.bsky.social · 31/01/2025
Now out in @science.org w/ @jshendure.bsky.social we present 'Genome-shuffle-seq': a method to shuffle mammalian genomes and characterize the impact of structural variants (SVs) with single-cell resolution in one experiment. www.science.org/doi/10.1126/...
science.org
Multiplex generation and single-cell analysis of structural variants in mammalian genomes
Studying the functional consequences of structural variants (SVs) in mammalian genomes is challenging because (i) SVs arise much less commonly than single-nucleotide variants or small indels and (ii) ...
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Zehao-Tommy Zhang @tommyz626.bsky.social · 11/12/2024
Joined @junyuecao.bsky.social's lab without knowing single-cell genomics - after 3 years of failing, crying, learning, and growing, I’m proud to share the PanSci! Huge thanks to amazing mentors Jun & Wei and support from @rockefelleruniv.bsky.social. The secrets of aging are starting to unfold!
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The Rockefeller University @rockefeller.edu · 11/12/2024
A newly created atlas of 21 million cells from @junyuecao.bsky.social's lab led by @tommyz626.bsky.social could upend long-held assumptions about how we age and provide fresh directions for anti-aging therapies. #RockefellerScience
rockefeller.edu
Study reveals how unexpected shifts in cell populations are revising our understanding of the aging process - News
A newly created atlas of 21 million cells could provide fresh directions for anti-aging therapies.
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Junyue Cao @junyuecao.bsky.social · 29/11/2024
Excited to share our work @science.org. led by our incredible @tommyz626.bsky.social at @rockefelleruniv.bsky.social! By profiling 21 million single cells across life stages, we reveal aging as distinct, development-like transitions, with dramatic cell population changes in specific time windows!
tinyurl.com
A panoramic view of cell population dynamics in mammalian aging
To elucidate aging-associated cellular population dynamics, we present PanSci, a single-cell transcriptome atlas profiling over 20 million cells from 623 mouse tissues across different life stages, se...
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