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通过棕榈酰化作用对组织因子胞质结构域磷酸化的调控。

Regulation of tissue factor cytoplasmic domain phosphorylation by palmitoylation.

作者信息

Dorfleutner Andrea, Ruf Wolfram

机构信息

Department of Immunology, C204, The Scripps Research Institute, 10550 North Torrey Pines Rd, La Jolla, CA 92037, USA.

出版信息

Blood. 2003 Dec 1;102(12):3998-4005. doi: 10.1182/blood-2003-04-1149. Epub 2003 Aug 14.

Abstract

The tissue factor (TF)-initiated coagulation pathway plays important roles in hemostasis, inflammation, metastasis, and angiogenesis. Phosphorylation of the TF cytoplasmic domain is functionally relevant in metastasis. How TF cytoplasmic domain phosphorylation downstream of protein kinase C (PKC) activation is regulated in primary vascular cells remains poorly understood. Here, phosphorylation of Ser258, rather than the PKC consensus site Ser253, is identified as the major conformational switch required for recognition by a phosphorylation-specific antibody. With this novel reagent, we demonstrate that the TF cytoplasmic domain is primarily unphosphorylated in confluent endothelial cells. TF cytoplasmic domain phosphorylation can occur in the absence of the autologous TF transmembrane and extracellular domains but requires maturation of TF in the Golgi compartment and cell surface expression. Site-directed mutagenesis and 2-bromopalmitate treatment provide evidence that palmitoylation of the cytoplasmic Cys245 is a negative regulatory mechanism of Ser258 phosphorylation. Profiling with PKC-selective inhibitors identifies PKCalpha as important for TF cytoplasmic domain phosphorylation. Mutagenesis of protein kinase consensus sites are consistent with a model in which PKC-dependent phosphorylation of Ser253 enhances subsequent Ser258 phosphorylation by a Pro-directed kinase. Thus, cell surface location-dependent phosphorylation of the TF cytoplasmic domain is regulated at multiple levels.

摘要

组织因子(TF)启动的凝血途径在止血、炎症、转移和血管生成中发挥重要作用。TF胞质结构域的磷酸化在转移中具有功能相关性。蛋白激酶C(PKC)激活下游的TF胞质结构域磷酸化在原代血管细胞中是如何被调控的,目前仍知之甚少。在这里,Ser258的磷酸化而非PKC共有位点Ser253的磷酸化,被确定为磷酸化特异性抗体识别所需的主要构象转换。使用这种新型试剂,我们证明在汇合的内皮细胞中TF胞质结构域主要未被磷酸化。TF胞质结构域磷酸化可在不存在自身TF跨膜和胞外结构域的情况下发生,但需要TF在高尔基体区室中成熟并在细胞表面表达。定点诱变和2-溴棕榈酸处理提供了证据,表明胞质Cys245的棕榈酰化是Ser258磷酸化的负调控机制。用PKC选择性抑制剂进行分析确定PKCα对TF胞质结构域磷酸化很重要。蛋白激酶共有位点的诱变与一个模型一致,即Ser253的PKC依赖性磷酸化通过脯氨酸导向激酶增强随后的Ser258磷酸化。因此,TF胞质结构域的细胞表面定位依赖性磷酸化在多个水平上受到调控。

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