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中性粒细胞对趋化因子CCL15的量子蛋白水解激活作用可调节单核细胞黏附性。

Quantum proteolytic activation of chemokine CCL15 by neutrophil granulocytes modulates mononuclear cell adhesiveness.

作者信息

Richter Rudolf, Bistrian Roxana, Escher Sylvia, Forssmann Wolf-Georg, Vakili Jalal, Henschler Reinhard, Spodsberg Nikolaj, Frimpong-Boateng Adjoa, Forssmann Ulf

机构信息

IPF PharmaCeuticals GmbH, Hannover, Germany.

出版信息

J Immunol. 2005 Aug 1;175(3):1599-608. doi: 10.4049/jimmunol.175.3.1599.

DOI:10.4049/jimmunol.175.3.1599
PMID:16034099
Abstract

Monocyte infiltration into inflammatory sites is generally preceded by neutrophils. We show here that neutrophils may support this process by activation of CCL15, a human chemokine circulating in blood plasma. Neutrophils were found to release CCL15 proteolytic activity in the course of hemofiltration of blood from renal insufficiency patients. Processing of CCL15 immunoreactivity (IR) in the pericellular space is suggested by a lack of proteolytic activity in blood and blood filtrate, but a shift of the retention time (t(R)) of CCL15-IR, detected by chromatographic separation of CCL15-IR in blood and hemofiltrate. CCL15 molecules with N-terminal deletions of 23 (delta23) and 26 (delta26) aa were identified as main proteolytic products in hemofiltrate. Neutrophil cathepsin G was identified as the principal protease to produce delta23 and delta26 CCL15. Also, elastase displays CCL15 proteolytic activity and produces a delta21 isoform. Compared with full-length CCL15, delta23 and delta26 isoforms displayed a significantly increased potency to induce calcium fluxes and chemotactic activity on monocytes and to induce adhesiveness of mononuclear cells to fibronectin. Thus, our findings indicate that activation of monocytes by neutrophils is at least in part induced by quantum proteolytic processing of circulating or endothelium-bound CCL15 by neutrophil cathepsin G.

摘要

单核细胞浸润到炎症部位通常在中性粒细胞之后。我们在此表明,中性粒细胞可能通过激活CCL15来支持这一过程,CCL15是一种在血浆中循环的人类趋化因子。在对肾功能不全患者的血液进行血液滤过过程中,发现中性粒细胞释放CCL15蛋白水解活性。血液和血液滤过液中缺乏蛋白水解活性,但通过对血液和血液滤过液中CCL15免疫反应性(IR)进行色谱分离检测到CCL15-IR保留时间(t(R))的变化,提示在细胞周间隙中存在CCL15免疫反应性的加工过程。在血液滤过液中,N端缺失23个氨基酸(delta23)和26个氨基酸(delta26)的CCL15分子被鉴定为主要蛋白水解产物。中性粒细胞组织蛋白酶G被鉴定为产生delta23和delta26 CCL15的主要蛋白酶。此外,弹性蛋白酶也显示出CCL15蛋白水解活性,并产生一种delta21异构体。与全长CCL15相比,delta23和delta26异构体在诱导单核细胞钙流和趋化活性以及诱导单核细胞与纤连蛋白的黏附性方面表现出显著增强的效力。因此,我们的研究结果表明,中性粒细胞对单核细胞的激活至少部分是由中性粒细胞组织蛋白酶G对循环或内皮结合的CCL15进行定量蛋白水解加工所诱导的。

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