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人防御素HNP-1的前肽对其进行分子内抑制

Intramolecular inhibition of human defensin HNP-1 by its propiece.

作者信息

Valore E V, Martin E, Harwig S S, Ganz T

机构信息

Will Rogers Institute Pulmonary Research Laboratory, Department of Medicine, UCLA School of Medicine, Los Angeles, California, 90095-1736, USA.

出版信息

J Clin Invest. 1996 Apr 1;97(7):1624-9. doi: 10.1172/JCI118588.

Abstract

We examined mechanisms that protect host defense cells from their cytotoxic effector molecules. Human neutrophil peptides (HNP) 1-3 are microbicidal and cytotoxic defensins, initially synthesized as 94-amino acid preproHNP(1-94), cotranslationally proteolyzed to proHNP(20-94), then converted by removal of the anionic propiece to mature HNP(65-94)(HNP-1 and -3) and HNP(66-94) (HNP-2). We hypothesized that during synthesis and subcellular sorting the anionic propiece inhibits the cytotoxicity of the cationic defensin. We expressed preproHNP-1 cDNA in recombinant baculovirus-infected insect cells that secreted the normally transient proHNP-1(20-94) into the medium. Cyanogen bromide cleaved proHNP-1(20-94) at the fortuitously located Met64 to yield mature recombinant HNP-1(65-94) and unlinked propiece. Recombinant and native HNP-1 purified from PMN were identical as judged by mass spectrometry, retention time in reverse-phase high performance liquid chromatography, migration on acid-urea polyacrylamide gels, and reaction with a conformation-specific antibody. Recombinant and native HNP-1 had comparable microbicidal activity towards Listeria monocytogenes and were similarly potent in permeabilizing K562 leukemia cells, but proHNP-1(20-94) was virtually inactive in both assays. Addition of unlinked propiece (proHNP-1(20-64) with Met64-->homoserine) inhibited the bactericidal and cell-permeabilizing activity of mature HNP-1 in a dose-dependent manner. Linked, and to a lesser extent unlinked, propiece interfered with the binding of HNP-1 to target cells. The propiece thus acts as an efficient intramolecular inhibitor of defensin HNP-1 cytotoxicity.

摘要

我们研究了保护宿主防御细胞免受其细胞毒性效应分子影响的机制。人中性粒细胞肽(HNP)1 - 3是具有杀微生物和细胞毒性的防御素,最初作为94个氨基酸的前体前原HNP(1 - 94)合成,共翻译时被蛋白水解为原HNP(20 - 94),然后通过去除阴离子前肽转化为成熟的HNP(65 - 94)(HNP - 1和 - 3)以及HNP(66 - 94)(HNP - 2)。我们推测在合成和亚细胞分选过程中,阴离子前肽会抑制阳离子防御素的细胞毒性。我们在重组杆状病毒感染的昆虫细胞中表达前原HNP - 1 cDNA,这些细胞将通常短暂存在的原HNP - 1(20 - 94)分泌到培养基中。溴化氰在偶然定位的Met64处切割原HNP - 1(20 - 94),产生成熟的重组HNP - 1(65 - 94)和未连接的前肽。通过质谱分析、反相高效液相色谱中的保留时间、酸性尿素聚丙烯酰胺凝胶上的迁移以及与构象特异性抗体的反应判断,从多形核白细胞中纯化的重组HNP - 1和天然HNP - 1是相同的。重组HNP - 1和天然HNP - 1对单核细胞增生李斯特菌具有相当的杀微生物活性,并且在使K562白血病细胞通透方面同样有效,但原HNP - 1(20 - 94)在这两种测定中几乎没有活性。添加未连接的前肽(将Met64替换为高丝氨酸的原HNP - 1(20 - 64))以剂量依赖的方式抑制成熟HNP - 1的杀菌和细胞通透活性。连接的前肽以及程度较轻的未连接前肽会干扰HNP - 1与靶细胞的结合。因此,前肽作为防御素HNP - 1细胞毒性的有效分子内抑制剂发挥作用。

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