Hwang Daehee, Kim Miju, Kim Soyeon, Kwon Mi Ra, Kang Ye-Seul, Kim Dahyun, Kang Ho-Chul, Lim Dae-Sik
National Creative Research Center for Cell Plasticity, Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon, Korea.
Genomic Instability Research Center, Ajou University School of Medicine, Suwon, Korea.
Life Sci Alliance. 2021 Aug 17;4(10). doi: 10.26508/lsa.202000953. Print 2021 Oct.
Contact inhibition is a key cellular phenomenon that prevents cells from hyper-proliferating upon reaching confluence. Although not fully characterized, a critical driver of this process is the Hippo signaling pathway, whose downstream effector yes-associated protein plays pivotal roles in cell growth and differentiation. Here, we provide evidence that the E3 ligase WWP1 (WW-domain containing protein 1) mono-ubiquitinates AMOTL2 (angiomotin-like 2) at K347 and K408. Mono-ubiquitinated AMOTL2, in turn, interacts with the kinase LATS2, which facilitates recruitment of the upstream Hippo pathway component SAV1 and ultimately promotes yes-associated protein phosphorylation and subsequent cytoplasmic sequestration and/or degradation. Furthermore, contact inhibition induced by high cell density promoted the localization and stabilization of WWP1 at cell junctions, where it interacted with Crumbs polarity proteins. Notably, the Crumbs complex was functionally important for AMOTL2 mono-ubiquitination and LATS activation under high cell density conditions. These findings delineate a functionally important molecular mechanism in which AMOTL2 mono-ubiquitination by WWP1 at cell junctions and LATS activation are tightly coupled to upstream cell density cues.
接触抑制是一种关键的细胞现象,可防止细胞在达到汇合状态时过度增殖。尽管尚未完全明确其特征,但这一过程的一个关键驱动因素是Hippo信号通路,其下游效应分子Yes相关蛋白在细胞生长和分化中起关键作用。在此,我们提供证据表明E3连接酶WWP1(含WW结构域蛋白1)在K347和K408位点对AMOTL2(血管动蛋白样蛋白2)进行单泛素化修饰。单泛素化的AMOTL2继而与激酶LATS2相互作用,这有助于募集上游Hippo通路成分SAV1,并最终促进Yes相关蛋白的磷酸化以及随后的细胞质隔离和/或降解。此外,高细胞密度诱导的接触抑制促进了WWP1在细胞连接处的定位和稳定,在该处它与Crumbspolarity蛋白相互作用。值得注意的是,在高细胞密度条件下,Crumb复合物对AMOTL2单泛素化和LATS激活具有重要的功能作用。这些发现描绘了一种功能上重要的分子机制,其中细胞连接处WWP1对AMOTL2的单泛素化和LATS激活与上游细胞密度信号紧密相关。