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The catalytic region and PEST domain of PTPN18 distinctly regulate the HER2 phosphorylation and ubiquitination barcodes OPEN

机译:PTPN18的催化区和PEST结构域明显调节HER2磷酸化和泛素化条形码OPEN

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The tyrosine phosphorylation barcode encoded in C-terminus of HER2 and its ubiquitination regulate diverse HER2 functions. PTPN18 was reported as a HER2 phosphatase; however, the exact mechanism by which it defines HER2 signaling is not fully understood. Here, we demonstrate that PTPN18 regulates HER2-mediated cellular functions through defining both its phosphorylation and ubiquitination barcodes. Enzymologic characterization and three crystal structures of PTPN18 in complex with HER2 phospho-peptides revealed the molecular basis for the recognition between PTPN18 and specific HER2 phosphorylation sites, which assumes two distinct conformations. Unique structural properties of PTPN18 contribute to the regulation of sub-cellular phosphorylation networks downstream of HER2, which are required for inhibition of HER2-mediated cell growth and migration. Whereas the catalytic domain of PTPN18 blocks lysosomal routing and delays the degradation of HER2 by dephosphorylation of HER2 on pY1112, the PEST domain of PTPN18 promotes K48-linked HER2 ubiquitination and its rapid destruction via the proteasome pathway and an HER2 negative feedback loop. In agreement with the negative regulatory role of PTPN18 in HER2 signaling, the HER2/PTPN18 ratio was correlated with breast cancer stage. Taken together, our study presents a structural basis for selective HER2 dephosphorylation, a previously uncharacterized mechanism for HER2 degradation and a novel function for the PTPN18 PEST domain. The new regulatory role of the PEST domain in the ubiquitination pathway will broaden our understanding of the functions of other important PEST domain-containing phosphatases, such as LYP and PTPN12.
机译:在HER2的C端编码的酪氨酸磷酸化条形码及其泛素化调节了各种HER2功能。 PTPN18被报道为HER2磷酸酶。但是,它定义HER2信号转导的确切机制尚不完全清楚。在这里,我们证明PTPN18通过定义其磷酸化和泛素化条形码来调节HER2介导的细胞功能。酶学特征和与HER2磷酸肽复合的PTPN18的三个晶体结构揭示了PTPN18与特定HER2磷酸化位点之间识别的分子基础,这假定了两个不同的构象。 PTPN18的独特结构特性有助于调节HER2下游的亚细胞磷酸化网络,这是抑制HER2介导的细胞生长和迁移所必需的。 PTPN18的催化结构域阻断了pY1112上的HER2的去磷酸化,从而阻止了溶酶体途径,并延迟了HER2的降解,而PTPN18的PEST域则促进了K48连接的HER2泛素化,并通过蛋白酶体途径和HER2负反馈回路快速破坏了它。与PTPN18在HER2信号中的负调控作用相一致,HER2 / PTPN18的比例与乳腺癌的分期相关。两者合计,我们的研究提供了选择性HER2磷酸化的结构基础,HER2降解以前未知的机制和PTPN18 PEST域的新功能。 PEST域在泛素化途径中的新调节作用将拓宽我们对其他重要的含PEST域的磷酸酶(如LYP和PTPN12)功能的理解。

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