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Gregory Booth
@booth_gt
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Principal Scientist with @kanvasbio
Joined February 2018
RT @kanvasbio: We're excited to announce the funding of our Pre-Series A round, led by @DCVC ! With the additional funding, we will expand…
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RT @GenomeTDCC: 📢PRE-PRINT NOTICE📢 Extending the sciPlex platform first described by @SRsrivatsan to combinatorial indexing-based chromatin…
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RT @kanvasbio: Kanvas is excited to announce a series of new job postings! We’re looking to bring in people who are passionate about biotec…
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RT @coletrapnell: Our latest paper, led by Hyeon-Jin Kim, on using hashing oligos to more accurately quantify transcript levels in single-c…
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RT @LSaund11: What a fun collab with @Andrewjohnaman! We used the power of sci-RNA-seq to profile nuclei across 4 genotypes during scale de…
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RT @joselmcfaline: We are looking for a research assistant to join our lab @ColumbiaBME. Our lab develops and applies single-cell genomic t…
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RT @diegoisworking: Thrilled to share what I’ve been working on during the first year of my postdoc — a powerful experimental design to fig…
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RT @AMathelier: "active enhancer units are precisely delineated by active transcription start sites, validate that these boundaries are suf…
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Congrats Ben Fair et. al. on the fine work!
Interesting study from @Y_Gilad and colleagues Gene expression variability in human and chimpanzee populations share common determinants
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Single cell RNA-seq from >1000 different conditions simultaneously!
Extremely excited to announce sci-Plex, described in a new paper out today Joint work with @JShendure lab, led by a crack team: @SRsrivatsan, @joselmcfaline, and @vram142. With sci-Plex, we can profile expression in single cells from thousands of samples.
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A stunningly clear view of chromatin folding in a mammalian genome! This is beautiful work.
The highest resolution of 3D genome in mammalian cells! We uncovered the fine-scale of chromatin folding of gene and Enhancer/promoter interactions. This study provides a direct link between transcription regulation and the 3D genome. Read full article:
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@fabianamduarte So many cells! This is awesome!
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Congrats @mwdorr! Already looking forward to the follow up work using this tech
A high throughput screen of a yeast gene-fragments based on growth selection yields dominant negative polypeptides for many genes.
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