Yu Nancy, Kakunda Michael, Pham Victoria, Lill Jennie R, Du Pan, Wongchenko Matthew, Yan Yibing, Firestein Ron, Huang XiaoDong
Department of Discovery Oncology, Genentech, Inc., South San Francisco, California, USA.
Department of Protein Chemistry, Genentech, Inc., South San Francisco, California, USA.
Mol Cell Biol. 2015 Apr;35(8):1390-400. doi: 10.1128/MCB.01307-14. Epub 2015 Feb 2.
The Wnt/β-catenin pathway causes accumulation of β-catenin in the cytoplasm and its subsequent translocation into the nucleus to initiate the transcription of the target genes. Without Wnt stimulation, β-catenin forms a complex with axin (axis inhibitor), adenomatous polyposis coli (APC), casein kinase 1α (CK1α), and glycogen synthase kinase 3β (GSK3β) and undergoes phosphorylation-dependent ubiquitination. Phosphatases, such as protein phosphatase 2A (PP2A), interestingly, also are components of this degradation complex; therefore, a balance must be reached between phosphorylation and dephosphorylation. How this balance is regulated is largely unknown. Here we show that a heat shock protein, HSP105, is a previously unidentified component of the β-catenin degradation complex. HSP105 is required for Wnt signaling, since depletion of HSP105 compromises β-catenin accumulation and target gene transcription upon Wnt stimulation. Mechanistically, HSP105 depletion disrupts the integration of PP2A into the β-catenin degradation complex, favoring the hyperphosphorylation and degradation of β-catenin. HSP105 is overexpressed in many types of tumors, correlating with increased nuclear β-catenin protein levels and Wnt target gene upregulation. Furthermore, overexpression of HSP105 is a prognostic biomarker that correlates with poor overall survival in breast cancer patients as well as melanoma patients participating in the BRIM2 clinical study.
Wnt/β-连环蛋白信号通路会导致β-连环蛋白在细胞质中积累,并随后转运至细胞核内,从而启动靶基因的转录。在没有Wnt刺激的情况下,β-连环蛋白会与轴抑制蛋白(axin)、腺瘤性息肉病大肠杆菌(APC)、酪蛋白激酶1α(CK1α)和糖原合酶激酶3β(GSK3β)形成复合物,并经历磷酸化依赖性泛素化。有趣的是,磷酸酶,如蛋白磷酸酶2A(PP2A),也是这种降解复合物的组成成分;因此,必须在磷酸化和去磷酸化之间达到平衡。这种平衡是如何调节的,目前尚不清楚。在此,我们表明热休克蛋白HSP105是β-连环蛋白降解复合物中一个此前未被鉴定的成分。HSP105是Wnt信号传导所必需的,因为HSP105的缺失会损害Wnt刺激后β-连环蛋白的积累和靶基因转录。从机制上讲,HSP105的缺失会破坏PP2A整合到β-连环蛋白降解复合物中,从而有利于β-连环蛋白的过度磷酸化和降解。HSP105在多种肿瘤类型中过表达,这与细胞核内β-连环蛋白水平升高以及Wnt靶基因上调相关。此外,HSP105的过表达是一种预后生物标志物,与乳腺癌患者以及参与BRIM2临床研究的黑色素瘤患者的总体生存率较差相关。