首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Proteolysis-induced N-terminal Ectodomain Shedding of the Integral Membrane Glycoprotein CUB Domain-containing Protein 1 (CDCP1) Is Accompanied by Tyrosine Phosphorylation of Its C-terminal Domain and Recruitment of Src and PKCδ
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Proteolysis-induced N-terminal Ectodomain Shedding of the Integral Membrane Glycoprotein CUB Domain-containing Protein 1 (CDCP1) Is Accompanied by Tyrosine Phosphorylation of Its C-terminal Domain and Recruitment of Src and PKCδ

机译:蛋白水解诱导的完整膜糖蛋白CUB结构域含蛋白1(CDCP1)的N端胞外域脱落伴随着其C端域的酪氨酸磷酸化以及Src和PKCδ的募集

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摘要

CUB-domain-containing protein 1 (CDCP1) is an integral membrane glycoprotein with potential as a marker and therapeutic target for a number of cancers. Here we examine mechanisms regulating cellular processing of CDCP1. By analyzing cell lines exclusively passaged non-enzymatically and through use of a panel of protease inhibitors, we demonstrate that full-length 135 kDa CDCP1 is post-translationally processed in a range of cell lines by a mechanism involving serine protease activity, generating a C-terminal 70-kDa fragment. Immunopurification and N-terminal sequencing of this cell-retained fragment and detailed mutagenesis, show that proteolytic processing of CDCP1 occurs at two sites, Arg-368 and Lys-369. We show that the serine protease matriptase is an efficient, but not essential, cellular processor of CDCP1 at Arg-368. Importantly, we also demonstrate that proteolysis induces tyrosine phosphorylation of 70-kDa CDCP1 and recruitment of Src and PKCδ to this fragment. In addition, Western blot and mass spectroscopy analyses show that an N-terminal 65-kDa CDCP1 ectodomain is shed intact from the cell surface. These data provide new insights into mechanisms regulating CDCP1 and suggest that the biological role of this protein and, potentially, its function in cancer, may be mediated by both 70-kDa cell retained and 65-kDa shed fragments, as well as the full-length 135-kDa protein.
机译:含CUB域的蛋白1(CDCP1)是一种完整的膜糖蛋白,具有作为多种癌症的标志物和治疗靶标的潜力。在这里,我们检查调节CDCP1细胞加工的机制。通过分析专门通过非酶途径传代的细胞系并通过使用一组蛋白酶抑制剂,我们证明全长135 kDa CDCP1在一系列细胞系中通过涉及丝氨酸蛋白酶活性的机制进行了翻译后加工,从而产生C -末端70kDa片段。免疫纯化和此细胞保留片段的N端测序和详细的诱变表明,CDCP1的蛋白水解过程发生在两个位点,Arg-368和Lys-369。我们表明,丝氨酸蛋白酶matriptase是有效的,但不是必需的,在Arg-368 CDCP1的细胞处理器。重要的是,我们还证明了蛋白水解诱导70 kDa CDCP1的酪氨酸磷酸化以及Src和PKCδ募集到该片段。此外,蛋白质印迹和质谱分析表明N末端65 kDa CDCP1胞外域从细胞表面完整脱落。这些数据为调节CDCP1的机制提供了新见解,并表明该蛋白质的生物学作用以及潜在的癌症功能可能由70 kDa的细胞保留片段和65 kDa的脱落片段以及全长度为135-kDa的蛋白质。

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