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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Oligoubiquitination of tissue factor on Lys255 promotes Ser253-dephosphorylation and terminates TF release
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Oligoubiquitination of tissue factor on Lys255 promotes Ser253-dephosphorylation and terminates TF release

机译:Lys255上组织因子的寡泛素化促进Ser253-去磷酸化并终止TF释放

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Restriction of tissue factor (TF) activity at the cell surface and TF release are critical for prevention of excessive coagulation. This study examined the regulation of TF dephosphorylation and its release through ubiquitination. A plasmid containing the sequence to express the tandem protein TF-tGFP was mutated to include an arginine-substitution at Lys255 within TF. MDA-MB-231 cell line, and HCAEC endothelial cells were transfected and subsequently activated with PAR2-agonist peptide. The wild-type and mutant TF-tGFP were immunoprecipitated from the cell lysates and the ubiquitination and phosphorylation state of TF examined. Analysis of the proteins showed that arginine-substitution of Lys255 within TF prevented its ubiquitination while the wild-type TF-tGFP was oligoubiquitinated. The TF-associated oligoubiquitin chain was estimated to contain up to 4 ubiquitin units, with the linkage formed between Lys63 of one ubiquitin unit, and the C-terminus of the next unit. The Lys255 -> Arg substitution of TF-tGFP prolonged the phosphorylation of Ser253 within TF, compared to the wild-type TF-tGFP, lengthened the presence of TF-tGFP at the cell surface and extended the duration of TF-tGFP release from cells following PAR2 activation. A biotinylated 19-mer peptide corresponding to the C-terminus of TF (TFc) was used as substrate to show that the ubiquitination of TF was mediated by the Ube2D family of E2-enzymes and involved Mdm2. Moreover, double-phosphorylation of TFc was prerequisite for ubiquitination, with subsequent dephosphorylation of Ser253 by phosphatase PP2A. In conclusion, oligoubiquitination of Lys255 within TF permits PP2A to bind and dephosphorylate Ser253 and occurs to terminate TF release and contain its activity. (C) 2016 Elsevier B.V. All rights reserved.
机译:限制细胞表面组织因子(TF)活性和TF释放对于防止过度凝结至关重要。这项研究检查了TF去磷酸化的调控及其通过泛素化释放的机制。将含有表达串联蛋白TF-tGFP的序列的质粒突变,使其在TF内的Lys255处包含精氨酸取代。 MDA-MB-231细胞系和HCAEC内皮细胞被转染,随后被PAR2-激动剂肽激活。从细胞裂解物中免疫沉淀野生型和突变型TF-tGFP,并检查TF的泛素化和磷酸化状态。对蛋白质的分析表明,TF中的Lys255精氨酸取代可阻止其泛素化,而野生型TF-tGFP被寡聚泛素化。估计与TF相关的寡聚泛素链包含多达4个泛素单元,其中一个泛素单元的Lys63与下一泛素单元的C末端之间形成了连接。与野生型TF-tGFP相比,TF-tGFP的Lys255-> Arg取代延长了TF内Ser253的磷酸化,延长了TF-tGFP在细胞表面的存在,并延长了TF-tGFP从细胞释放的持续时间激活PAR2之后。对应于TF C端(TFc)的生物素化19-mer肽用作底物,以显示TF的泛素化是由E2酶的Ube2D家族介导的,并涉及Mdm2。此外,TFc的双磷酸化是泛素化的前提,随后磷酸酶PP2A使Ser253脱磷酸化。总之,TF中Lys255的寡聚泛素化使PP2A结合和磷酸化Ser253,并发生终止TF释放并包含其活性的过程。 (C)2016 Elsevier B.V.保留所有权利。

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