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A 20 Residues Motif Delineates the Furin Cleavage Site and its Physical Properties May Influence Viral Fusion

机译:20个残基的图案描绘了弗林蛋白酶的裂解位点,其物理性质可能会影响病毒融合

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Furin is a proprotein convertase that proteolytically cleaves protein precursors to yield functional proteins. Efficient cleavage depends on the presence of a specific sequence motif on the substrate. Currently, the cleavage site motif is described as a four amino acid pattern: R-X-[K/R]-R↓. However, not all furin cleavage recognition sites can be described by this pattern and not all R-X-[K/R]-R↓ sites are cleaved by furin. Since many furin substrates are involved in the pathogenesis of viral infection and human diseases, it is important to accurately characterize the furin cleavage site motif. In this study, the furin cleavage site motif was characterized using statistical analysis. The data were interpreted within the 3D crystal structure of the furin catalytic domain. The results indicate that the furin cleavage site motif is comprised of about 20 residues, P14–P6′. Specific physical properties such as volume, charge, and hydrophilicity are required at specific positions. The furin cleavage site motif is divided into two parts: 1) one core region (8 amino acids, positions P6–P2′) packed inside the furin binding pocket; 2) two polar regions (8 amino acids, positions P7–P14; and 4 amino acids, positions P3′–P6′) located outside the furin binding pocket. The physical properties of the core region contribute to the binding strength of the furin substrate, while the polar regions provide a solvent accessible environment and facilitate the accessibility of the core region to the furin binding pocket. This furin cleavage site motif also revealed a dynamic relationship linking the evolution of physical properties in region P1′–P6′ of viral fusion peptides, furin cleavage efficacy, and viral infectivity.
机译:弗林蛋白酶是一种前蛋白转化酶,可以蛋白水解方式切割蛋白前体以产生功能蛋白。有效的切割取决于底物上特定序列基序的存在。目前,切割位点基序被描述为四个氨基酸模式:R-X- [K / R] -R↓。但是,并非所有的弗林蛋白酶切割识别位点都可以用这种模式描述,也不是所有的R-X- [K / R] -R↓位点都可以被弗林蛋白酶切割。由于许多弗林蛋白酶底物参与病毒感染和人类疾病的发病机理,因此准确表征弗林蛋白酶切割位点基序非常重要。在这项研究中,使用统计分析对弗林蛋白酶切割位点基序进行了表征。在弗林蛋白酶催化结构域的3D晶体结构中解释了数据。结果表明弗林蛋白酶切割位点基序由大约20个残基P14-P6'组成。在特定位置需要特定的物理特性,例如体积,电荷和亲水性。弗林蛋白酶切割位点基序分为两个部分:1)一个核心区域(8个氨基酸,位置P6-P2')堆积在弗林蛋白酶结合口袋内; 2)位于弗林蛋白酶结合口袋外部的两个极性区域(8个氨基酸,位置P7-P14; 4个氨基酸,位置P3'-P6')。核心区域的物理性质有助于弗林蛋白酶底物的结合强度,而极性区域则提供了溶剂可及的环境,并促进了核心区域与弗林蛋白酶结合袋的可及性。该弗林蛋白酶切割位点基序还揭示了一种动态关系,该关系将病毒融合肽的P1'–P6'区域的物理特性演变,弗林蛋白酶切割功效和病毒感染性联系起来。

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