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首页> 外文期刊>The Journal of biological chemistry >Spatial proteomics reveal that the protein phosphatase PTP1B interacts with and may modify tyrosine phosphorylation of the rhomboid protease RHBDL4
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Spatial proteomics reveal that the protein phosphatase PTP1B interacts with and may modify tyrosine phosphorylation of the rhomboid protease RHBDL4

机译:空间蛋白质组学揭示蛋白质磷酸酶PTP1B与菱形蛋白酶RHBDL4的酪氨酸磷酸化相互作用并可能修饰酪氨酸磷酸化

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Rhomboid-like proteins are evolutionarily conserved, ubiquitous polytopic membrane proteins, including the canonical rhomboid intramembrane serine proteases and also others that have lost protease activity during evolution. We still have much to learn about their cellular roles, and evidence suggests that some may have more than one function. For example, RHBDL4 (rhomboid-like protein 4) is an endoplasmic reticulum (ER)–resident protease that forms a ternary complex with ubiquitinated substrates and p97/VCP (valosin-containing protein), a major driver of ER-associated degradation (ERAD). RHBDL4 is required for ERAD of some substrates, such as the pre–T-cell receptor α chain (pTα) and has also been shown to cleave amyloid precursor protein to trigger its secretion. In another case, RHBDL4 enables the release of full-length transforming growth factor α in exosomes. Using the proximity proteomic method BioID, here we screened for proteins that interact with or are in close proximity to RHBDL4. Bioinformatics analyses revealed that BioID hits of RHBDL4 overlap with factors related to protein stress at the ER, including proteins that interact with p97/VCP. PTP1B (protein-tyrosine phosphatase nonreceptor type 1, also called PTPN1) was also identified as a potential proximity factor and interactor of RHBDL4. Analysis of RHBDL4 peptides highlighted the presence of tyrosine phosphorylation at the cytoplasmic RHBDL4 C terminus. Site-directed mutagenesis targeting these tyrosine residues revealed that their phosphorylation modifies binding of RHBDL4 to p97/VCP and Lys63-linked ubiquitinated proteins. Our work lays a critical foundation for future mechanistic studies of the roles of RHBDL4 in ERAD and other important cellular pathways.
机译:菱形样蛋白是进化上保守的,无处不在的多聚膜蛋白,包括规范的菱形膜内丝氨酸蛋白酶,以及在进化过程中失去蛋白酶活性的其他蛋白。关于它们在细胞中的作用,我们还有很多要学习的东西,而且有证据表明某些物质可能具有多种功能。例如,RHBDL4(菱形样蛋白4)是一种内质网(ER)驻留蛋白酶,与遍在蛋白化的底物和p97 / VCP(含缬氨酸的蛋白)形成三元复合物,后者是ER相关降解(ERAD)的主要驱动力)。 RHBDL4是某些底物的ERAD所必需的,例如T细胞前受体α链(pTα),并且还显示它可以裂解淀粉样蛋白前体蛋白以触发其分泌。在另一种情况下,RHBDL4能够在外泌体中释放全长转化生长因子α。我们使用接近蛋白质组学方法BioID,筛选了与RHBDL4相互作用或非常接近的蛋白。生物信息学分析表明,RHBDL4的BioID命中与与ER处蛋白质应激相关的因素重叠,包括与p97 / VCP相互作用的蛋白质。 PTP1B(蛋白酪氨酸磷酸酶非受体1型,也称为PTPN1)也被认为是RHBDL4的潜在邻近因子和相互作用因子。 RHBDL4肽的分析突出了在细胞质RHBDL4 C末端存在酪氨酸磷酸化。针对这些酪氨酸残基的定点诱变表明,它们的磷酸化修饰了RHBDL4与p97 / VCP和Lys63连接的泛素化蛋白的结合。我们的工作为RHBDL4在ERAD和其他重要细胞途径中的作用的未来机理研究奠定了重要基础。

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