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与底物类似物抑制剂结合的前蛋白转化酶弗林蛋白酶的X射线结构揭示了S4口袋之外的底物特异性决定因素。

X-ray Structures of the Proprotein Convertase Furin Bound with Substrate Analogue Inhibitors Reveal Substrate Specificity Determinants beyond the S4 Pocket.

作者信息

Dahms Sven O, Hardes Kornelia, Steinmetzer Torsten, Than Manuel E

机构信息

Department of Molecular Biology, University of Salzburg , Billrothstrasse 11, A-5020 Salzburg, Austria.

Protein Crystallography Group, Leibniz Institute on Aging, Fritz Lipmann Institute (FLI) , Beutenbergstrasse 11, 07745 Jena, Germany.

出版信息

Biochemistry. 2018 Feb 13;57(6):925-934. doi: 10.1021/acs.biochem.7b01124. Epub 2018 Jan 26.

Abstract

The proprotein convertase furin is a highly specific serine protease modifying and thereby activating proteins in the secretory pathway by proteolytic cleavage. Its substrates are involved in many diseases, including cancer and infections caused by bacteria and viruses. Understanding furin's substrate specificity is crucially important for the development of pharmacologically applicable inhibitors. Using protein X-ray crystallography, we investigated the extended substrate binding site of furin in complex with three peptide-derived inhibitors at up to 1.9 Å resolution. The structure of the protease bound with a hexapeptide inhibitor revealed molecular details of its S6 pocket, which remained completely unknown so far. The arginine residue at P6 induced an unexpected turnlike conformation of the inhibitor backbone, which is stabilized by intra- and intermolecular H-bonds. In addition, we confirmed the binding of arginine to the previously proposed S5 pocket (S5). An alternative S5 site (S5) could be utilized by shorter side chains as demonstrated for a 4-aminomethyl-phenylacetyl residue, which shows steric properties similar to those of a lysine side chain. Interestingly, we also observed binding of a peptide with citrulline at P4 substituting for the highly conserved arginine. The structural data might indicate an unusual protonation state of Asp264 maintaining the interaction with uncharged citrulline. The herein identified molecular interaction sites at P5 and P6 can be utilized to improve next-generation furin inhibitors. Our data will also help to predict furin substrates more precisely on the basis of the additional specificity determinants observed for P5 and P6.

摘要

前体蛋白转化酶弗林蛋白酶是一种高度特异性的丝氨酸蛋白酶,通过蛋白水解切割修饰并激活分泌途径中的蛋白质。其底物与许多疾病有关,包括癌症以及由细菌和病毒引起的感染。了解弗林蛋白酶的底物特异性对于开发药理学上适用的抑制剂至关重要。我们使用蛋白质X射线晶体学,以高达1.9 Å的分辨率研究了弗林蛋白酶与三种肽衍生抑制剂复合物的扩展底物结合位点。与六肽抑制剂结合的蛋白酶结构揭示了其S6口袋的分子细节,而该细节迄今为止仍然完全未知。P6处的精氨酸残基诱导了抑制剂主链意外的类似转角的构象,该构象通过分子内和分子间氢键得以稳定。此外,我们证实了精氨酸与先前提出的S5口袋(S5)的结合。如4-氨基甲基-苯乙酰残基所示,较短的侧链可以利用另一个S5位点(S5),该残基显示出与赖氨酸侧链相似的空间性质。有趣的是,我们还观察到在P4处用瓜氨酸取代高度保守的精氨酸的肽的结合。结构数据可能表明Asp264的异常质子化状态维持了与不带电荷的瓜氨酸的相互作用。本文在P5和P6处确定的分子相互作用位点可用于改进下一代弗林蛋白酶抑制剂。我们的数据还将有助于根据在P5和P6处观察到的额外特异性决定因素更精确地预测弗林蛋白酶底物。

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