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肾素特异性单克隆抗体证明活性位点导向的肾素抑制剂对肾素原的非蛋白水解“激活” 。

Nonproteolytic "activation" of prorenin by active site-directed renin inhibitors as demonstrated by renin-specific monoclonal antibody.

作者信息

Derkx F H, Deinum J, Lipovski M, Verhaar M, Fischli W, Schalekamp M A

机构信息

Department of Internal Medicine I, University Hospital Dykzigt, Erasmus University, Rotterdam, The Netherlands.

出版信息

J Biol Chem. 1992 Nov 15;267(32):22837-42.

PMID:1429632
Abstract

Incubation of human plasma prorenin (PR), the enzymatically inactive precursor of renin (EC 3.4.23.15), with a number of nonpeptide high-affinity active site-directed renin inhibitors induces a conformational change in PR, which was detected by a monoclonal antibody that reacts with active renin but not with native inactive PR. This conformational change also occurred when inactive PR was activated during exposure to low pH. Nonproteolytically acid-activated PR, and inhibitor-"activated" PR, as well as native PR, were retained on a blue Sepharose column, in contrast to proteolytically activated PR. Kinetic analysis of the activation of plasma prorenin by renin inhibitor (INH) indicated that native plasma contains an open intermediary form of prorenin, PRoi, in which the active site is exposed and which is in rapid equilibrium with the inactive closed form, PRc. PRoi reacts with inhibitor to form a reversible complex, PRoi.INH, which undergoes a conformational change resulting in a tight complex of a modified open form of prorenin, PRo, and the inhibitor, PRoi.INH-->PRo.INH. The PRoi-to-PRo conversion leads to the expression of an epitope on the renin part of the molecule that is recognized by a renin-specific monoclonal antibody. Presumably, PRo corresponds to the enzymatically active form of PR that is formed during exposure to low pH. Thus, it seems that the propeptide of PR interacts with the renin part of the molecule not only at or near the enzyme's active site but also at some distance from the active site. Interference with the first interaction by renin inhibitor leads to destabilization of the propeptide, by which the second interaction is disrupted and the enzyme assumes its active conformation. The results of this study may provide a model for substrate-mediated prorenin activation and increase the likelihood that enzymatically active prorenin is formed in vivo.

摘要

人血浆中肾素原(PR)是肾素(EC 3.4.23.15)的无酶活性前体,将其与多种非肽类高亲和力活性位点导向的肾素抑制剂一起温育,会诱导PR发生构象变化,这种变化可通过一种单克隆抗体检测到,该抗体与活性肾素反应,但不与天然无活性的PR反应。当无活性的PR在低pH暴露期间被激活时,也会发生这种构象变化。与经蛋白水解激活的PR不同,非蛋白水解性酸激活的PR、抑制剂“激活”的PR以及天然PR都能保留在蓝色琼脂糖柱上。肾素抑制剂(INH)对血浆肾素原激活的动力学分析表明,天然血浆中含有肾素原的开放中间形式PRoi,其活性位点暴露,与无活性的封闭形式PRc处于快速平衡状态。PRoi与抑制剂反应形成可逆复合物PRoi.INH,该复合物会发生构象变化,导致形成肾素原修饰开放形式PRo与抑制剂的紧密复合物,即PRoi.INH→PRo.INH。PRoi向PRo的转化导致分子肾素部分上一个表位的表达,该表位可被肾素特异性单克隆抗体识别。推测PRo对应于在低pH暴露期间形成的PR的酶活性形式。因此,PR的前肽似乎不仅在酶的活性位点或其附近与分子的肾素部分相互作用,而且在距活性位点一定距离处也有相互作用。肾素抑制剂对第一种相互作用的干扰会导致前肽不稳定,从而破坏第二种相互作用,使酶呈现其活性构象。本研究结果可能为底物介导的肾素原激活提供一个模型,并增加体内形成有酶活性肾素原的可能性。

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