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Nike Walther

@nikewalther.bsky.social
239 followers 573 following 8 posts

Research Scientist at Institut Curie. Postdoc at Tjian/Darzacq Lab, UC Berkeley. PhD at Ellenberg Lab, EMBL Heidelberg. Previously at Boutros Lab, Pines Lab, Stemmann Lab. LinkedIn: nike-walther-836252b5

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Reposted by Nike Walther
Franzi Lorbeer @florbeer.bsky.social · 21/08/2026
0/ New preprint from the Stark and Grün labs! @reyna-rosales.bsky.social @dominicgrun.bsky.social @alex-stark.bsky.social We developed BARe-seq to ask what in the DNA controls transcriptional bursting - key findings for anyone working on transcription, gene regulation, or cis-regulatory elements 🧵
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Reposted by Nike Walther
Stem Cell Reports @stemcellreports.bsky.social · 23/01/2026
New #organoid research: Distinct SOX9 single-molecule dynamics characterize adult differentiation and fetal-like reprogrammed states in intestinal organoids ow.ly/b0H650Y1lRz Cell Press | The Gairdner Foundation | SickKids Foundation | Universität Bayreuth
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Nike Walther @nikewalther.bsky.social · 12/02/2026
Thrilled to see our latest work featured on the cover of Stem Cell Reports: www.cell.com/stem-cell-re... !
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Reposted by Nike Walther
Ellenberg Lab @ellenberglab.bsky.social · 21/07/2025
Our new non-denaturing nanoscale 3D DNA tracing technology provides single-cell (and sister-chromatid specific!) readout of chromatin structure with 10kb genomic resolution - Check it out! www.nature.com/articles/s41... Congratulations to Kai and Oyvind!!
nature.com
Nanoscale 3D DNA tracing in non-denatured cells resolves the Cohesin-dependent loop architecture of the genome in situ - Nature Communications
A nanoscale 3D DNA tracing workflow visualizes Cohesin-dependent loops in single, structurally well-preserved cells. Computer simulations based on the tracing data give further insight into how Cohesi...
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Reposted by Nike Walther
Ellenberg Lab @ellenberglab.bsky.social · 24/03/2025
Our new findings on how chromosomes get ready for cell division are now published in @cellpress.bsky.social! Congratulations, Kai, @andibrunner.bsky.social and everyone else involved! 🤩 www.sciencedirect.com/science/arti...
sciencedirect.com
Nanoscale DNA tracing reveals the self-organization mechanism of mitotic chromosomes
How genomic DNA is folded during cell division to form the characteristic rod-shaped mitotic chromosomes essential for faithful genome inheritance is …
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