细胞生物学
生物
河马信号通路
调节器
细胞骨架
背景(考古学)
肌动蛋白
磷酸酶
上游和下游(DNA)
信号转导
磷酸化
生物化学
上游(联网)
细胞
基因
计算机科学
古生物学
计算机网络
作者
Liang Hu,Wyatt Brichalli,Naren Li,Shifan Chen,Yaqing Cheng,Qinfang Liu,Yulan Xiong,Jianzhong Yu
标识
DOI:10.15252/embr.202255851
摘要
The Hippo pathway is an evolutionarily conserved developmental pathway that controls organ size by integrating diverse regulatory inputs, including actomyosin-mediated cytoskeletal tension. Despite established connections between the actomyosin cytoskeleton and the Hippo pathway, the upstream regulation of actomyosin in the Hippo pathway is less defined. Here, we identify the phosphoinositide-3-phosphatase Myotubularin (Mtm) as a novel upstream regulator of actomyosin that functions synergistically with the Hippo pathway during growth control. Mechanistically, Mtm regulates membrane phospholipid PI(3)P dynamics, which, in turn, modulates actomyosin activity through Rab11-mediated vesicular trafficking. We reveal PI(3)P dynamics as a novel mode of upstream regulation of actomyosin and establish Rab11-mediated vesicular trafficking as a functional link between membrane lipid dynamics and actomyosin activation in the context of growth control. Our study also shows that MTMR2, the human counterpart of Drosophila Mtm, has conserved functions in regulating actomyosin activity and tissue growth, providing new insights into the molecular basis of MTMR2-related peripheral nerve myelination and human disorders.
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