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C1抑制剂丝氨酸蛋白酶抑制剂结构域结构揭示了肝素增强作用和构象性疾病的可能机制。

C1 inhibitor serpin domain structure reveals the likely mechanism of heparin potentiation and conformational disease.

作者信息

Beinrohr László, Harmat Veronika, Dobó József, Lörincz Zsolt, Gál Péter, Závodszky Péter

机构信息

Institute of Enzymology, Biological Research Center, Hungarian Academy of Sciences, Karolina út 29, H-1113 Budapest, Hungary.

出版信息

J Biol Chem. 2007 Jul 20;282(29):21100-9. doi: 10.1074/jbc.M700841200. Epub 2007 May 8.

Abstract

C1 inhibitor, a member of the serpin family, is a major down-regulator of inflammatory processes in blood. Genetic deficiency of C1 inhibitor results in hereditary angioedema, a dominantly inheritable, potentially lethal disease. Here we report the first crystal structure of the serpin domain of human C1 inhibitor, representing a previously unreported latent form, which explains functional consequences of several naturally occurring mutations, two of which are discussed in detail. The presented structure displays a novel conformation with a seven-stranded beta-sheet A. The unique conformation of the C-terminal six residues suggests its potential role as a barrier in the active-latent transition. On the basis of surface charge pattern, heparin affinity measurements, and docking of a heparin disaccharide, a heparin binding site is proposed in the contact area of the serpin-proteinase encounter complex. We show how polyanions change the activity of the C1 inhibitor by a novel "sandwich" mechanism, explaining earlier reaction kinetic and mutagenesis studies. These results may help to improve therapeutic C1 inhibitor preparations used in the treatment of hereditary angioedema, organ transplant rejection, and heart attack.

摘要

C1 抑制剂是丝氨酸蛋白酶抑制剂家族的一员,是血液中炎症过程的主要下调因子。C1 抑制剂的基因缺陷会导致遗传性血管性水肿,这是一种显性遗传的潜在致命疾病。在此,我们报道了人 C1 抑制剂丝氨酸蛋白酶抑制剂结构域的首个晶体结构,它代表了一种此前未报道的潜在形式,这解释了几种自然发生的突变的功能后果,其中两种将详细讨论。所呈现的结构展示了一种具有七股β折叠 A 的新构象。C 末端六个残基的独特构象表明其在活性 - 潜在转变中作为屏障的潜在作用。基于表面电荷模式、肝素亲和力测量以及肝素二糖的对接,在丝氨酸蛋白酶抑制剂 - 蛋白酶相遇复合物的接触区域提出了一个肝素结合位点。我们展示了多阴离子如何通过一种新的“三明治”机制改变 C1 抑制剂的活性,解释了早期的反应动力学和诱变研究。这些结果可能有助于改进用于治疗遗传性血管性水肿、器官移植排斥和心脏病发作的治疗性 C1 抑制剂制剂。

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