So proud of our scientists whose contributions have received recognition from INSA! This honour was conferred on Dr. Bapat for her pioneering #research in #CancerBiology & #CancerStemCells, & on Dr. Joseph for his research on annulate lamellae, a less studied cellular compartment
Happy to see Nikhil More, our PhD Research Scholar, featured in the First Person section of the Journal of Cell Science this month.
Read about it here: https://t.co/rcl7Yk4LNa
Research article here:
https://t.co/pbHRcdPARC
#PhDSuccess#PhDResearch#cellbiology#biotechnology
Nikhil More and Jomon Joseph @JomonJosephJoe find that disruption of ER–mitochondria contact sites induces autophagy-dependent loss of P-bodies through the Ca2+-CaMKK2-AMPK pathway.
https://t.co/VDoehUyYMW
Excited to share our new publication:
(Also see: the First Person Interview: https://t.co/fjRrPMnU4O)
Disruption of ER–ER-mitochondria contact sites induces autophagy-dependent loss of P-bodies through the Ca2+-CaMKK2-AMPK pathway https://t.co/LzENE3P0HZ
The October issue is online.
https://t.co/BBmOeBEOqi
The cover features work by Jomon Joseph and co-wrokers @DBT_NCCS_Pune showing that Nup358 restricts ER-#mitochondria connectivity by modulating mTORC2/Akt/GSK3β #signalling.
https://t.co/IPH4U6IwmC
Jomon Joseph & team reveal a novel function of Nup358. As an annulatelamellae-resident nucleoporin, it regulates ER-mitochondria connectivity, which is crucial for the coordination of many critical cellular processes.
Read here: https://t.co/Ce4UK4Jitz
@emboreports@EMBOPress
Nup358 restricts ER-mitochondria connectivity by modulating mTORC2/Akt/GSK3β signalling | EMBO reports https://t.co/EXImTQXHcb
Congratulations to the authors and collaborarors for their hard work and patience.
Happy share our new publication revealing a mechanism by which specific protein cargoes are recruited to small extracellular vesicles using RanGTP-CRM1/XPO1 axis..
https://t.co/NIIjAFJdKK