Huaiying Zhang
@lab_zhang
Assistant professor at Carnegie Mellon University, studies how phase transition organizes biochemistry in normal and cancer cells
Potrebbero piacerti
Happy to see this coming out at JCB!
Rongwei Zhao et al. @lab_zhang @CarnegieMellon show that, in #cancer cells using the alternative lengthening of telomeres (ALT) pathway, #SUMO levels at #telomeres influence the formation of ALT-associated PML bodies. hubs.la/Q03GK3qh0
📢The third interview in @SDutta_2904’s ‘Asian Microscopists and Cell Biologists’ interview series is with Huaiying Zhang @lab_zhang. We hear about Huaiying’s career path, her research on condensates and her advice for young scientists. focalplane.biologists.com/2024/12/06/an-…
📽️ G&D Tapes 📽️ @rongweiz tells us about their study, recently published in #GenesDev, showing that SUMOylation, DNA repair factors and BLM helicase promote telomeric DNA synthesis and alternative lengthening of telomeres. @lab_zhang Learn more here: ➡️ tinyurl.com/gd351667
Carnegie Mellon biologists have discovered the mechanism behind telomere elongation, which has implications for treating cancer. cmu.edu/mcs/news-event… Want to learn more? Register for an upcoming talk by lead researcher Professor Huaying Zhang. cmu.zoom.us/webinar/regist…
Thanks for highlighting our work ☺️
In this study, @rongweiz et al. report that SUMOylation, along with DNA repair factors and BLM helicase, promotes telomeric DNA synthesis and alternative lengthening of telomeres. @lab_zhang Learn more here: ➡️ tinyurl.com/gd351667
Check out our new paper. Very proud of you @rongweiz !
I am excited to share my work published on Genes & Development! Our study reveals a novel role of SUMOylation in ALT (Alternative Lengthening of Telomeres) pathway. genesdev.cshlp.org/content/38/13-…
Happy to share this preprint, in collaboration with @ShilaBanerji and @DMChenowethLab, driven by @DebSBanerjee1 and Tafazwa, where we find high surface tension droplets 💧 can undergo Ostwald ripening in the chromatin while low surface tension droplets cannot.
Interplay of condensate material properties and chromatin heterogeneity governs nuclear condensate ripening biorxiv.org/cgi/content/sh… #biorxiv_biophys
Thanks for highlighting our work
Interplay of condensate material properties and chromatin heterogeneity governs nuclear condensate ripening biorxiv.org/cgi/content/sh… #biorxiv_biophys
Another great opportunity to learn all things single cell. Plus check out the speaker list, Impressive !!!! #cytometry
MBoC Call for Papers: Special Issue on #BiomolecularCondensates Submit an article by June 30 to be considered by lead editors: @GladfelterLab, @UNC Jeffrey B. Woodruff, @UTSWNews @lab_zhang, @CarnegieMellon Learn more and submit: molbiolcell.org/biomolecular-c…
Single Cell Analysis 2024 | @CSHL @cshlcourses Amazing bootcamp, great speakers, lots of fun. This year Spatial joins the family! Thanks million @10xGenomics and @curiobio for your generous support this year! meetings.cshl.edu/courses.aspx?c…
I’ve been doing teaching prep for the fall semester recently. Last night I had a dream: I said something and the students walked out…
Working on a condensate manuscript? Consider submitting to this special issue at @MBoCjournal
Interplay of condensate material properties and chromatin heterogeneity governs nuclear condensate ripening biorxiv.org/cgi/content/sh… #biorxiv_biophys
Had a blast teaching students to induce condensates with photosensitive chemical probes in the CSHL Single Cell Analysis course, in collaboration with @DMChenowethLab and thanks to the hard work from our TAs @rongweiz and Changfeng Deng.
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