Evdokiia Potolitsyna
@evdokiiap.bsky.social
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Postdoctoral researcher at Baylor College of Medicine
reposted by
Evdokiia Potolitsyna
Sinem Saka
19 days ago
Spectral multiplexing is typically limited to 4-5 channels. Our new preprint introduces a framework that utilizes DNA barcoding and signal tuning to enable robust spectral unmixing and ground-truth benchmarking to achieve 15-plex subcellular profiling without cycling
www.biorxiv.org/content/10.6...
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reposted by
Evdokiia Potolitsyna
Tugce Aktas
about 1 month ago
Our most recent work on the “function and evolution” of
#nuclear-speckles
is now online at Cell
@cp-cell.bsky.social
doi.org/10.1016/j.ce...
Read the thread👇 for the highlights of our findings.
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https://doi.org/10.1016/j.cell.2026.01.011
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Evdokiia Potolitsyna
Stella Hurtley
about 2 months ago
Out now in
@science.org
Ribosomal RNA expansion segments mediate the oligomerization of inactive animal ribosomes | Science
www.science.org/doi/10.1126/...
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Ribosomal RNA expansion segments mediate the oligomerization of inactive animal ribosomes
Cells down-regulate protein synthesis when stressed to conserve energy and shift resources toward repair. We found that in some mammalian cells, including neurons, stress also resulted in the formatio...
https://www.science.org/doi/10.1126/science.adr4287
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Last week marked the end of my postdoc at
#RibackLab
. I spent three exciting and productive years at BCM, but it’s now time for the next chapter. Thank you to
@superscijew.bsky.social
for being a great mentor and to my colleagues for all the fun and science we shared together!
4 months ago
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Evdokiia Potolitsyna
Polina Tikanova
5 months ago
Happy to share that my PhD project is finally published!🪱✨ Selfish genes are found across the tree of life. They can disrupt inheritance patterns and at the same time act as units for molecular innovation. Here we tried to answer one big question: how do selfish genes emerge in the first place?
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reposted by
Evdokiia Potolitsyna
Josh Riback
5 months ago
(1/10) How do diverse leukemia mutations converge on the same molecular program? In
#RibackLab
first manuscript
@cp-cell.bsky.social
, collaboration with
@goodell-lab.bsky.social
shows that disparate mutations rewire shared protein networks to form nuclear condensates called C-bodies.
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Our lab's first preprint is out! I'm glad to be part of this project - take a look!
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about 1 year ago
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