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Hypoxia regulates Hippo signalling through the SIAH2 ubiquitin E3 ligase

机译:缺氧通过SIAH2泛素E3连接酶调节河马信号

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The Hippo signalling pathway plays important roles in animal development, physiology and tumorigenesis(1-3). Understanding how the activity of this pathway is regulated by the cellular microenvironment remains a major challenge. Here we elucidate a molecular mechanism by which hypoxia deactivates Hippo signalling. We demonstrate that the E3 ubiquitin ligase SIAH2 stimulates YAP by destabilizing LATS2, a critical component of the Hippo pathway, in response to hypoxia. Loss of SIAH2 suppresses tumorigenesis in a LATS2-dependent manner in a xenograft mouse model. We further show that YAP complexes with HIF1 alpha and is essential for HIF1 alpha stability and function in tumours in vivo. LATS2 is downregulated in human breast tumours and negatively correlates with SIAH2 expression levels, indicating that the SIAH2-LATS2 pathway may have a role in human cancer. Our data uncover oxygen availability as a microenvironment signal for the Hippo pathway and have implications for understanding the regulation of Hippo signalling in tumorigenesis.
机译:河马信号通路在动物发育,生理和肿瘤发生中起重要作用(1-3)。理解细胞微环境如何调节该途径的活性仍然是一个重大挑战。在这里,我们阐明了一种通过缺氧使河马信号失活的分子机制。我们证明,E3泛素连接酶SIAH2通过使LATS2(河马途径的关键组成部分)失稳来刺激YAP。 SIAH2的损失在异种移植小鼠模型中以LATS2依赖性方式抑制肿瘤发生。我们进一步表明,YAP与HIF1 alpha形成复合物,并且对于体内HIF1 alpha稳定性和功能至关重要。 LATS2在人乳腺肿瘤中被下调,并且与SIAH2表达水平负相关,表明SIAH2-LATS2途径可能在人癌症中起作用。我们的数据揭示了作为Hippo途径的微环境信号的氧气供应,并且对于了解Hippo信号在肿瘤发生中的调控具有重要意义。

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