Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, United States.
Committee on Development, Regeneration and Stem Cell Biology, The University of Chicago, Chicago, United States.
Elife. 2021 Feb 8;10:e62326. doi: 10.7554/eLife.62326.
The Hippo (Hpo) pathway regulates tissue growth in many animals. Multiple upstream components promote Hpo pathway activity, but the organization of these different inputs, the degree of crosstalk between them, and whether they are regulated in a distinct manner is not well understood. Kibra (Kib) activates the Hpo pathway by recruiting the core Hpo kinase cassette to the apical cortex. Here, we show that the Hpo pathway downregulates Kib levels independently of Yorkie-mediated transcription. We find that Hpo signaling complex formation promotes Kib degradation via SCF-mediated ubiquitination, that this effect requires Merlin, Salvador, Hpo, and Warts, and that this mechanism functions independently of other upstream Hpo pathway activators. Moreover, Kib degradation appears patterned by differences in mechanical tension across the wing. We propose that Kib degradation mediated by Hpo pathway components and regulated by cytoskeletal tension serves to control Kib-driven Hpo pathway activation and ensure optimally scaled and patterned tissue growth.
Hippo (Hpo) 通路在许多动物中调节组织生长。多个上游组件促进 Hpo 通路活性,但这些不同输入的组织方式、它们之间的串扰程度以及它们是否以不同的方式受到调节尚不清楚。Kibra (Kib) 通过将核心 Hpo 激酶盒募集到顶端皮质来激活 Hpo 通路。在这里,我们表明 Hpo 通路独立于 Yorkie 介导的转录下调 Kib 水平。我们发现 Hpo 信号复合物的形成通过 SCF 介导的泛素化促进 Kib 降解,这种效应需要 Merlin、Salvador、Hpo 和 Warts,并且这种机制独立于其他上游 Hpo 通路激活剂。此外,Kib 的降解似乎受到翅膀上机械张力差异的影响。我们提出,由 Hpo 通路成分介导并受细胞骨架张力调节的 Kib 降解可用于控制由 Kib 驱动的 Hpo 通路激活,并确保最佳比例和模式的组织生长。