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高分辨率表征的α1-抗胰蛋白酶治疗靶点变异性

Therapeutic target-site variability in α1-antitrypsin characterized at high resolution.

作者信息

Patschull Anathe O M, Segu Lakshmi, Nyon Mun Peak, Lomas David A, Nobeli Irene, Barrett Tracey E, Gooptu Bibek

机构信息

Institute of Structural and Molecular Biology, Crystallography, Department of Biological Sciences, Birkbeck College, London, England.

出版信息

Acta Crystallogr Sect F Struct Biol Cryst Commun. 2011 Dec 1;67(Pt 12):1492-7. doi: 10.1107/S1744309111040267. Epub 2011 Nov 25.

Abstract

The intrinsic propensity of α(1)-antitrypsin to undergo conformational transitions from its metastable native state to hyperstable forms provides a motive force for its antiprotease function. However, aberrant conformational change can also occur via an intermolecular linkage that results in polymerization. This has both loss-of-function and gain-of-function effects that lead to deficiency of the protein in human circulation, emphysema and hepatic cirrhosis. One of the most promising therapeutic strategies being developed to treat this disease targets small molecules to an allosteric site in the α(1)-antitrypsin molecule. Partial filling of this site impedes polymerization without abolishing function. Drug development can be improved by optimizing data on the structure and dynamics of this site. A new 1.8 Å resolution structure of α(1)-antitrypsin demonstrates structural variability within this site, with associated fluctuations in its upper and lower entrance grooves and ligand-binding characteristics around the innermost stable enclosed hydrophobic recess. These data will allow a broader selection of chemotypes and derivatives to be tested in silico and in vitro when screening and developing compounds to modulate conformational change to block the pathological mechanism while preserving function.

摘要

α(1)-抗胰蛋白酶从其亚稳态天然状态向超稳定形式发生构象转变的内在倾向为其抗蛋白酶功能提供了动力。然而,异常的构象变化也可通过分子间连接发生,从而导致聚合。这具有功能丧失和功能获得的效应,导致该蛋白在人体循环中缺乏、引发肺气肿和肝硬化。目前正在开发的最有前景的治疗该疾病的策略之一是将小分子靶向α(1)-抗胰蛋白酶分子中的变构位点。该位点的部分填充可阻止聚合而不消除功能。通过优化该位点的结构和动力学数据可以改进药物开发。α(1)-抗胰蛋白酶的一个新的1.8 Å分辨率结构显示了该位点内的结构变异性,其上部和下部入口凹槽存在相关波动,并且在最内层稳定封闭的疏水凹槽周围具有配体结合特性。当筛选和开发化合物以调节构象变化以阻断病理机制同时保留功能时,这些数据将允许在计算机模拟和体外测试更广泛的化学类型和衍生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46f7/3232123/89291db16b10/f-67-01492-fig1.jpg

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