If you are interested to learn how the groove of mammalian TMEM16F can open to allow lipid scrambling, see our new paper in Nature Communications Biology: https://t.co/3qLRhMFAfd
Special thanks to @KatyaKots @HWeinsteinLab @MichaelVLeVine for collaborating on this project!
#repost#wrongtagsπ€¦ββοΈ
Added bonus: My review from the @NCIYaminiDalal lab, on the H1 family made it to the cover! Thanks @wuhaforever and @haiqing_zhao for your help in creating this cool figure!
https://t.co/Syt3vDR5og https://t.co/hMbt1Rl9mn
A potential gateway to the brain for pharmaceuticals has been determined by
Dr. George Khelashvili and scientists at @ColumbiaPS, #WCM and @dukenus.
The findings highlight brain health and development, and better drug treatments for brain disorders.
https://t.co/QmRTkPP1VT
Really appreciate all the dedicated work and instructions from my mentors Garegin Papoian and Yamini Dalal. It was a very important part of my PhD journey and thesis. Please also check out all other beautiful papers in this SI by all these pioneers in chromatin field. π
Super excited to share our paper "Binding Dynamics of Disordered Linker Histone H1 with a Nucleosomal Particle" https://t.co/MJSGLj9OBL in this amazing special issue of chromatin dynamics! If you are curious how the disordered H1 modulates chromatin structure, check it out!
Super excited to share our paper "Binding Dynamics of Disordered Linker Histone H1 with a Nucleosomal Particle" https://t.co/MJSGLj9OBL in this amazing special issue of chromatin dynamics! If you are curious how the disordered H1 modulates chromatin structure, check it out!
@McKnightLab_UO Hi Jeff. I read your splendid works on chromatin remodelers and learned a lot from them. Just heard this heartbreaking news... Please don't give up. There are lots of people supporting and praying for you! π