雷氏菌
TSC1
DYRK1A型
mTORC1型
TSC2
细胞生物学
基因敲除
生物
支架蛋白
结节性硬化
细胞生长
磷酸化
信号转导
PI3K/AKT/mTOR通路
遗传学
基因
心理学
精神科
作者
Pinhua Wang,Sunayana Sarkar,Menghuan Zhang,Tingting Xiao,Fenhua Kong,Zhe Zhang,Deepa Balasubramanian,Nandan Jayaram,Sayantan Datta,Ruyu He,Ping Wu,Chao Peng,Ying Zhang,Michael P. Washburn,Laurence Florens,Sonal Nagarkar-Jaiswal,Manish Jaiswal,Man Mohan
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2024-10-22
卷期号:12
被引量:1
标识
DOI:10.7554/elife.88318.3
摘要
DYRK1A, a ubiquitously expressed kinase , is linked to the dominant intellectual developmental disorder, microcephaly, and Down syndrome in humans. It regulates numerous cellular processes such as cell cycle, vesicle trafficking, and microtubule assembly. DYRK1A is a critical regulator of organ growth; however, how it regulates organ growth is not fully understood. Here, we show that the knockdown of DYRK1A in mammalian cells results in reduced cell size, which depends on mTORC1. Using proteomic approaches, we found that DYRK1A interacts with the tuberous sclerosis complex (TSC) proteins, namely TSC1 and TSC2, which negatively regulate mTORC1 activation. Furthermore, we show that DYRK1A phosphorylates TSC2 at T1462, a modification known to inhibit TSC activity and promote mTORC1 activity. We also found that the reduced cell growth upon knockdown of DYRK1A can be rescued by overexpression of RHEB, an activator of mTORC1. Our findings suggest that DYRK1A inhibits TSC complex activity through inhibitory phosphorylation on TSC2, thereby promoting mTORC1 activity. Furthermore, using the Drosophila neuromuscular junction as a model, we show that the mnb, the fly homologs of DYRK1A , is rescued by RHEB overexpression, suggesting a conserved role of DYRK1A in TORC1 regulation.
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