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肥大细胞和中性粒细胞肽酶攻击肝细胞生长因子中的一个失活片段,以生成类NK4拮抗剂。

Mast cell and neutrophil peptidases attack an inactivation segment in hepatocyte growth factor to generate NK4-like antagonists.

作者信息

Raymond Wilfred W, Cruz Anthony C, Caughey George H

机构信息

Department of Medicine and Cardiovascular Research Institute, The University of California at San Francisco, San Francisco, California 94143, USA.

出版信息

J Biol Chem. 2006 Jan 20;281(3):1489-94. doi: 10.1074/jbc.M511154200. Epub 2005 Nov 22.

Abstract

Hepatocyte growth factor (HGF) is a plasminogen-like protein with an alpha chain linked to a trypsin-like beta chain without peptidase activity. The interaction of HGF with c-met, a receptor tyrosine kinase expressed by many cells, is important in cell growth, migration, and formation of endothelial and epithelial tubes. Stimulation of c-met requires two-chain, disulfide-linked HGF. Portions of an alpha chain containing an N-terminal segment and four kringle domains (NK4) antagonize HGF activity. Until now, no physiological pathway for generating NK4 was known. Here we show that chymases, which are chymotryptic peptidases secreted by mast cells, hydrolyze HGF, thereby abolishing scatter factor activity while generating an NK4-like antagonist of HGF scatter factor activity. Thus, chymase interferes with HGF directly by destroying active protein and indirectly by generating an antagonist. The site of hydrolysis, Leu480, lies in the alpha chain on the N-terminal side of the cysteine linking the alpha and beta chains. This site appears to be specific for HGF because chymase does not hydrolyze other plasminogen-like proteins, such as macrophage-stimulating protein and plasminogen itself. Mast cell/neutrophil cathepsin G and neutrophil elastase generate similar fragments of HGF by cleaving near the chymase site. Mast cell and neutrophil peptidases are secreted during tissue injury, infection, ischemia, and allergic inflammation, where they may oppose HGF effects on epithelial repair. Thus, HGF possesses an "inactivation segment" that serves as an Achilles' heel attacked by inflammatory proteases. This work reveals a potential physiological pathway for inactivation of HGF and generation of NK4-like antagonists.

摘要

肝细胞生长因子(HGF)是一种类似纤溶酶原的蛋白质,其α链与无肽酶活性的胰蛋白酶样β链相连。HGF与c-met(一种由许多细胞表达的受体酪氨酸激酶)的相互作用在细胞生长、迁移以及内皮管和上皮管的形成中起着重要作用。c-met的激活需要双链、二硫键连接的HGF。α链中包含N端片段和四个kringle结构域的部分(NK4)可拮抗HGF活性。到目前为止,尚不清楚产生NK4的生理途径。在此我们表明,肥大细胞分泌的糜蛋白酶样肽酶——糜酶,可水解HGF,从而消除其散射因子活性,同时产生一种类似NK4的HGF散射因子活性拮抗剂。因此,糜酶通过破坏活性蛋白直接干扰HGF,并通过产生拮抗剂间接干扰HGF。水解位点Leu480位于α链上连接α链和β链的半胱氨酸的N端一侧。该位点似乎对HGF具有特异性,因为糜酶不会水解其他类似纤溶酶原的蛋白质,如巨噬细胞刺激蛋白和纤溶酶原本身。肥大细胞/中性粒细胞组织蛋白酶G和中性粒细胞弹性蛋白酶通过在糜酶位点附近切割产生类似的HGF片段。肥大细胞和中性粒细胞肽酶在组织损伤、感染、缺血和过敏性炎症期间分泌,它们可能会对抗HGF对上皮修复的作用。因此,HGF拥有一个“失活片段”,它就像一个易受炎症蛋白酶攻击的致命弱点。这项工作揭示了HGF失活和产生类似NK4拮抗剂的潜在生理途径。

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