Jessica Matthias

26 posts

Jessica Matthias

Jessica Matthias

@_jessematthias

CCO & MINFLUX Scientist @abberior | PhD @StefanHellLabs

Bethesda, MD, USA Katılım Mart 2023
112 Takip Edilen67 Takipçiler
Jessica Matthias retweetledi
Anders Sejr Hansen
Anders Sejr Hansen@Anders_S_Hansen·
(1/n) Super excited to share that our preprint is out today in @NatureSMB with a new name "Integrated MINFLUX tracking reveals two distinct chromatin dynamics classes across cell types" and more than 2x more data: nature.com/articles/s4159… MIT NEWS: news.mit.edu/2026/how-chrom…
Anders Sejr Hansen tweet mediaAnders Sejr Hansen tweet media
Anders Sejr Hansen@Anders_S_Hansen

(1/13) Thread on @mazzocca_matteo @DomenicNarducci @SGrosseHolz @_jessematthias new preprint Q: how does chromatin move? Using MINFLUX, SPT & SRLCI, we track chromatin dynamics across 7 orders of magnitude in time to provide some answers biorxiv.org/content/10.110…

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Jessica Matthias retweetledi
Matteo Mazzocca
Matteo Mazzocca@mazzocca_matteo·
Our chromatin dynamics paper is now in @NatureSMB with important updates. We tracked chromatin in additional cell lines (5 overall), from the shortest timescales accessible today, over 6-7 orders of magnitude in time (MINFLUX + camera-based tracking) nature.com/articles/s4159…
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Jessica Matthias retweetledi
Anders Sejr Hansen
Anders Sejr Hansen@Anders_S_Hansen·
Check out our new preprint from @mazzocca_matteo @DomenicNarducci @SGrosseHolz @_jessematthias profiling chromatin dynamics across 7 orders of magnitude in time using MINFLUX providing insights into first passage times for distal genomic interactions: biorxiv.org/content/10.110…
Matteo Mazzocca@mazzocca_matteo

1/ Super excited to share my first preprint from @hansen_lab! We used MINFLUX to track chromatin (H2B-Halo and Fbn2 locus) at an unprecedented 200 μs, then combined it with SPT to span μs-minutes (H2B) or SPT & Super-Res Live-Cell Imaging (SRLCI) to span μs-hours (Fbn2)

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Jessica Matthias retweetledi
Arne
Arne@arnegennerich·
Yes, as expected, Kinesin-3 KIF1A predominantly adopts a two-heads-bound state, both at saturating and limiting ATP concentrations. This contrasts with Kinesin-1 KIF5B and provides a mechanistic explanation for KIF1A's superprocessivity. Check out the details in our latest bioRxiv paper: doi.org/10.1101/2025.0…
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