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Hippo信号通路中一种进化上保守的负反馈机制反映了LATS1和LATS2之间的功能差异。

An evolutionarily conserved negative feedback mechanism in the Hippo pathway reflects functional difference between LATS1 and LATS2.

作者信息

Park Gun-Soo, Oh Hyangyee, Kim Minchul, Kim Tackhoon, Johnson Randy L, Irvine Kenneth D, Lim Dae-Sik

机构信息

National Creative Research Center for Cell Division and Differentiation, Department of Biological Sciences, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, South Korea.

Howard Hughes Medical Institute, Waksman Institute and Department of Molecular Biology and Biochemistry, Rutgers University, Brunswick, New Jersey, USA.

出版信息

Oncotarget. 2016 Apr 26;7(17):24063-75. doi: 10.18632/oncotarget.8211.

Abstract

The Hippo pathway represses YAP oncoprotein activity through phosphorylation by LATS kinases. Although variety of upstream components has been found to participate in the Hippo pathway, the existence and function of negative feedback has remained uncertain. We found that activated YAP, together with TEAD transcription factors, directly induces transcription of LATS2, but not LATS1, to form a negative feedback loop. We also observed increased mRNA levels of Hippo upstream components upon YAP activation. To reveal the physiological role of this negative feedback regulation, we deleted Lats2 or Lats1 in the liver-specific Sav1-knockout mouse model which develops a YAP-induced tumor. Additional deletion of Lats2 severely enhanced YAP-induced tumorigenic phenotypes in a liver specific Sav1 knock-out mouse model while additional deletion of Lats1 mildly affected the phenotype. Only Sav1 and Lats2 double knock-down cells formed larger colonies in soft agar assay, thereby recapitulating accelerated tumorigenesis seen in vivo. Importantly, this negative feedback is evolutionarily conserved, as Drosophila Yorkie (YAP ortholog) induces transcription of Warts (LATS2 ortholog) with Scalloped (TEAD ortholog). Collectively, we demonstrated the existence and function of an evolutionarily conserved negative feedback mechanism in the Hippo pathway, as well as the functional difference between LATS1 and LATS2 in regulation of YAP.

摘要

Hippo信号通路通过LATS激酶磷酸化来抑制YAP癌蛋白的活性。尽管已发现多种上游成分参与Hippo信号通路,但负反馈的存在及其功能仍不明确。我们发现,激活的YAP与TEAD转录因子一起直接诱导LATS2而非LATS1的转录,从而形成一个负反馈环。我们还观察到YAP激活后Hippo上游成分的mRNA水平增加。为了揭示这种负反馈调节的生理作用,我们在因YAP诱导而发生肿瘤的肝脏特异性Sav1基因敲除小鼠模型中删除了Lats2或Lats1。在肝脏特异性Sav1基因敲除小鼠模型中额外删除Lats2会严重增强YAP诱导的致瘤表型,而额外删除Lats1对表型的影响较小。只有Sav1和Lats2双敲低的细胞在软琼脂试验中形成更大的集落,从而重现了体内观察到的加速肿瘤发生。重要的是,这种负反馈在进化上是保守的,因为果蝇Yorkie(YAP的直系同源物)与Scalloped(TEAD的直系同源物)一起诱导Warts(LATS2的直系同源物)的转录。我们共同证明了Hippo信号通路中一种进化保守的负反馈机制的存在和功能,以及LATS1和LATS2在调节YAP方面的功能差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26b8/5029684/7dff51b43f29/oncotarget-07-24063-g004.jpg

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