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一个具有保守的PTB、CH1和SH2区域的Shc相关蛋白家族。

A family of Shc related proteins with conserved PTB, CH1 and SH2 regions.

作者信息

Pelicci G, Dente L, De Giuseppe A, Verducci-Galletti B, Giuli S, Mele S, Vetriani C, Giorgio M, Pandolfi P P, Cesareni G, Pelicci P G

机构信息

Istituto Europeo di Oncologia, Dpt. of Experimental Oncology, Milan, Italy.

出版信息

Oncogene. 1996 Aug 1;13(3):633-41.

PMID:8760305
Abstract

Shc proteins are targets of activated tyrosine kinases and have been implicated in the transmission of activation signals to Ras. Upon phosphorylation, Shc proteins form stable complexes with cellular tyrosine-phosphorylated proteins and with the Grb2 adaptor protein. Two Shc isoforms of 52 and 46 kDa have been characterized. They share a C-terminal SH2 domain, a proline- and glycine-rich region (collagen homologous region 1; CH1) and a N-terminal phospho-tyrosine binding domain (PTB). We report her ethe initial characterization of two Shc related human cDNAs: ShcB and ShcC. The ShcB and ShcC cDNAs code for proteins that are highly similar and share the same modular organization as Shc. PTB and SH2 domains of ShcB and ShcC have similar binding specificities in vitro and bind to activated EGFR in a phosphotyrosine-dependent manner. Based on these findings we propose to rename Shc as ShcA. Anti-ShcB and anti-ShcC antibodies recognize specific polypeptides of 52, 47 kDa (ShcB) and 54 kDa (ShcC) in mammalian cells. Since these two genes are predominantly expressed in specific brain tissues, these Shc family members may be involved in cell type-specific signaling, in the nervous system.

摘要

Shc蛋白是活化酪氨酸激酶的作用靶点,并且与激活信号向Ras的传导有关。磷酸化后,Shc蛋白与细胞内酪氨酸磷酸化蛋白以及Grb2衔接蛋白形成稳定的复合物。已鉴定出两种分子量分别为52 kDa和46 kDa的Shc亚型。它们共享一个C端SH2结构域、一个富含脯氨酸和甘氨酸的区域(胶原同源区域1;CH1)以及一个N端磷酸酪氨酸结合结构域(PTB)。我们在此报道两种与Shc相关的人类cDNA:ShcB和ShcC的初步鉴定。ShcB和ShcC cDNA编码的蛋白质高度相似,并且与Shc具有相同的模块化结构。ShcB和ShcC的PTB和SH2结构域在体外具有相似的结合特异性,并以磷酸酪氨酸依赖的方式结合活化的表皮生长因子受体(EGFR)。基于这些发现,我们建议将Shc重新命名为ShcA。抗ShcB和抗ShcC抗体可识别哺乳动物细胞中52 kDa、47 kDa(ShcB)和54 kDa(ShcC)的特定多肽。由于这两个基因主要在特定脑组织中表达,这些Shc家族成员可能参与神经系统中细胞类型特异性的信号传导。

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