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一种亚稳态丝氨酸蛋白酶抑制剂中空洞填充突变的局部和全局效应。

Local and global effects of a cavity filling mutation in a metastable serpin.

作者信息

Sengupta Tanusree, Tsutsui Yuko, Wintrode Patrick L

机构信息

Department of Physiology & Biophysics, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

Biochemistry. 2009 Sep 1;48(34):8233-40. doi: 10.1021/bi900342d.

Abstract

The serpins are an unusual class of protease inhibitors which fold to a metastable form and subsequently undergo a massive conformational change to a stable form when they inhibit their target proteases. The driving force for this conformational change has been extensively investigated by site directed mutagenesis, and it has been found that mutations which stabilize the metastable form frequently result in activity deficiency. Here, we employ hydrogen/deuterium exchange to probe the effects of a cavity filling mutant of alpha(1)AT. The Gly117 --> Phe substitution fills a cavity between the F-helix and the face of beta-sheet A, stabilizes the metastable form of alpha(1)AT by approximately 4 kcal/mol and results in a 60% reduction in inhibitory activity against elastase. Globally, the G117F substitution alters the unfolding mechanism by eliminating the molten globule intermediate that is seen in wild type unfolding. Remarkably, this is accomplished primarily by destabilizing the molten globule rather than stabilizing the metastable native state. Locally, conformational flexibility in the native state is reduced in specific regions: the top of the F-helix, beta-strands 5A, 1C, and 4C, and helix D. Except for strand 4C, all of these regions mediate or propagate conformational changes. The F-helix and strand 5A must be displaced during protease inhibition, displacement of strand 1C is required for polymer formation, and helix D is a site (in antithrombin) of allosteric regulation. Our results indicate that these functionally important regions form a delocalized network of residues that are dynamically coupled and that both local and global stability mediate inhibitory activity.

摘要

丝氨酸蛋白酶抑制剂(serpins)是一类不同寻常的蛋白酶抑制剂,它们折叠成亚稳态形式,在抑制其靶蛋白酶时,随后会经历巨大的构象变化而转变为稳定形式。通过定点诱变已广泛研究了这种构象变化的驱动力,并且发现稳定亚稳态形式的突变常常导致活性缺陷。在此,我们采用氢/氘交换来探究α1抗胰蛋白酶(alpha(1)AT)的一个腔填充突变体的影响。甘氨酸117(Gly117)被苯丙氨酸(Phe)取代填充了F螺旋与β折叠A面之间的一个腔,使α1抗胰蛋白酶的亚稳态形式稳定约4千卡/摩尔,并导致对弹性蛋白酶的抑制活性降低60%。总体而言,G117F取代通过消除野生型解折叠过程中出现的熔球中间体改变了解折叠机制。值得注意的是,这主要是通过使熔球不稳定而非稳定亚稳态天然状态来实现的。在局部,天然状态下特定区域的构象灵活性降低:F螺旋顶部、β链5A、1C和4C以及螺旋D。除了链4C外,所有这些区域都介导或传播构象变化。在蛋白酶抑制过程中F螺旋和链5A必须移位,聚合物形成需要链1C移位,并且螺旋D是变构调节位点(在抗凝血酶中)。我们的结果表明,这些功能上重要区域形成了一个动态偶联的残基离域网络,并且局部和全局稳定性都介导抑制活性。

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