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Assistant Professor of Molecular Biology, Center for Alzheimer's and Neurodegenerative Diseases, UT Southwestern. My lab studies damaged things. Sometimes we fix them. Hiring! Write if interested in postdoc or tech position. https://www.davidwsanders.com
David W. Sanders!









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Yay @anitadonlic.bsky.social !!!
Thrilled to see our Deep-Phase paper now online in @cellcellpress.bsky.social! 🎉 The final version expands Deep-Phase across labeling modalities, adds dual-condensate imaging to dissect pathway specificity, and shows greater robustness to batch effects than classical image-analysis methods.
On July 1st, I'll be joining the faculty at UC Berkeley, with a joint appointment in the Division of Molecular Therapeutics within MCB and the Helen Wills Neuroscience Institute.
I’m thrilled to share that my PhD work has been just published in Cell. After a long and bumpy ride, we uncovered the core function of nuclear speckles -splicing of GC-levelled exons- and traced the evolution of this gene architecture and condensates themselves to amniotes.
So excited that UTSW was able to retain your talent. Mol Bio SLAYS!
Congrats Lindsay. The skies are bluer in Texas!
Missed this sadly. Jordy is a rock star! Cool work!
The function of nuclear speckles is revealed! This is an incredibly important paper with absolutely beautiful data! Wow! www.cell.com/cell/fulltex...
Sooo happy to share our new paper in @nature.com “CLCC1 promotes hepatic neutral lipid flux and nuclear pore complex assembly.” A terrific collaboration with @arrudalab.bsky.social, led by co–first authors Alyssa Mathiowetz and Emily Maymand. www.nature.com/articles/s41...
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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Deep learning of functional perturbations from condensate morphology
A deep learning method quantitatively decodes nucleolar, nuclear speckle, and viral condensate morphology to reveal underlying biochemical states. Applying this framework reveals a previously unrecogn...
www.cell.com
Nuclear speckles are key subnuclear structures that regulate gene expression in GC-rich regions. This work shows that the evolution and expansion of core speckle proteins were crucial for the increase...
www.cell.com
Nuclear speckles enable processing of RNA from GC-rich isochores
CRISPR–Cas9 screening identifies CLCC1 as a factor that increases neutral lipid flux to prevent hepatic steatosis and promotes nuclear pore complex assembly by promoting membrane bending and fusi...
www.nature.com
CLCC1 promotes hepatic neutral lipid flux and nuclear pore complex assembly - Nature
doi.org
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David W. Sanders!
David W. Sanders!
David W. Sanders!
David W. Sanders!
David W. Sanders!
Anita Donlic
Michael Ward
James Olzmann
Michał Małszycki
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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doi.org
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Tugce Aktas
Check out our newest paper from the great @jbotello.bsky.social . Such an awesome discovery that the ribosome population undergoes molecular aging!!!!
Belated congrats to Brangwynne lab postdoc @lindsayabecker.bsky.social for getting the TargetALS springboard fellowship to launch her independent career!!! targetals.org/news/springb...
www.cell.com/cell/fulltex...
Thrilled to share that I’ll be starting my lab as an Assistant Professor and Endowed Scholar in the UT Southwestern Molecular Biology Dept this Fall! 🥳 We’ll study #peroxisomes #mitochondria #metabolism via the lens of neonatology 👶🏻, a very exciting frontier in medicine! #neotwitter
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