Why are lncRNAs lowly expressed? How can they regulate their more abundant targets? Our paper published in @NatureSMB we explore how these features are balanced to ensure target specificity and robust gene regulation via a spatial amplification mechanism. https://t.co/lvJ2VnSWqs
Equally honoured and thrilled to be one of 27 Exceptional Investigators chosen for a Whitman Fellowship, to work with Loretta Roberson (MBL) & Amy Gladfelter (UNC) on coral bleaching, recovery & communities using my light-sheets (and then some:) https://t.co/s1S9lL6LkQ
Breaking the transcriptome barrier with seqFISH+(base20x3). Evolved from temporal barcoding with seqFISH(2014,base4), tissue(2016,base5), 2017-in vitro SPOTs & 2018-intron (base12). KeyPoints: in situ discovery tool,faster in imaging,neighbors-specific GE https://t.co/ggnnjiwEk9
glad to see the recent comment on our paper. I'm used to typos in my name, but people misspelling gene names or annotation symbols do drive me crazy... https://t.co/9TusbGDCnS
.@drdanbrayson et al preview work from Wong et al (https://t.co/ZoGnT2gHeZ) that provides evidence supporting the hypothesis that cell & tissue mechanics play a crucial role in the regulation of key nuclear functions https://t.co/LlobKJNcMa @myocache@lizzystoops@Unnikannan_CP
"There is a very strong reason to believe that we can produce cells that would be completely resistant to all known viruses,” says Dr. Jef Boeke, director of the Institute for Systems Genetics at NYU Langone Health. More on the new study: https://t.co/WsRCfGhiWi (via @TIME )
All this started as a heart regeneration investigation a few years ago pioneered by my best friend and our PhD candidate Prof Bernardo A Vidne MD. May this publication be a memory of our friendship and the great time at WIS. https://t.co/4gKkxaM72e
Wang et al @WeizmannScience explain how the mechanical link between muscle nuclei and the cytoskeleton controls the amount of DNA in muscle fibers https://t.co/c99u0FPAFK @myocache@lizzystoops@Unnikannan_CP