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Comparative study of the binding pockets of mammalian proprotein convertases and its implications for the design of specific small molecule inhibitors

机译:哺乳动物前蛋白转化酶结合口袋的比较研究及其对特定小分子抑制剂设计的意义

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摘要

Proprotein convertases are enzymes that proteolytically cleave protein precursors in the secretory pathway to yield functional proteins. Seven mammalian subtilisin/Kex2p-like proprotein convertases have been identified: furin, PC1, PC2, PC4, PACE4, PC5 and PC7. The binding pockets of all seven proprotein convertases are evolutionarily conserved and highly similar. Among the seven proprotein convertases, the furin cleavage site motif has recently been characterized as a 20-residue motif that includes one core region P6-P2´ inside the furin binding pocket. This study extended this information by examining the 3D structural environment of the furin binding pocket surrounding the core region P6-P2´ of furin substrates. The physical properties of mutations in the binding pockets of the other six mammalian proprotein convertases were compared. The results suggest that: 1) mutations at two positions, Glu230 and Glu257, change the overall density of the negative charge of the binding pockets, and govern the substrate specificities of mammalian proprotein convertases; 2) two proprotein convertases (PC1 and PC2) may have reduced sensitivity for positively charged residues at substrate position P5 or P6, whereas the substrate specificities of three proprotein convertases (furin, PACE4, and PC5) are similar to each other. This finding led to a novel design of a short peptide pattern for small molecule inhibitors: [K/R]-X-V-X-K-R. Compared with the widely used small molecule dec-RVKR-cmk that inhibits all seven proprotein convertases, a finely-tuned derivative of the short peptide pattern [K/R]-X-V-X-K-R may have the potential to more effectively inhibit five of the proprotein convertases (furin, PC4, PACE4, PC5 and PC7) compared to the remaining two (PC1 and PC2). The results not only provide insights into the molecular evolution of enzyme function in the proprotein convertase family, but will also aid the study of the functional redundancy of proprotein convertases and the development of therapeutic applications.
机译:前蛋白转化酶是在分泌途径中蛋白水解切割蛋白前体以产生功能蛋白的酶。已鉴定出七个哺乳动物枯草杆菌蛋白酶/ Kex2p样前蛋白转化酶:弗林蛋白酶,PC1,PC2,PC4,PACE4,PC5和PC7。所有七个原蛋白转化酶的结合口袋在进化上是保守的并且高度相似。在这七个原蛋白转化酶中,弗林蛋白酶切割位点基序最近被表征为20个残基的基序,其中在弗林蛋白酶结合口袋中包括一个核心区域P6-P2'。这项研究通过检查围绕弗林蛋白酶底物核心区域P6-P2´的弗林蛋白酶结合口袋的3D结构环境,扩展了这一信息。比较了其他六个哺乳动物前蛋白转化酶结合口袋中突变的物理特性。结果表明:1)在两个位置Glu230和Glu257上的突变,改变了结合口袋的负电荷的总体密度,并控制了哺乳动物前蛋白转化酶的底物特异性; 2)两种原蛋白转化酶(PC1和PC2)对底物位置P5或P6上带正电荷的残基的敏感性降低,而三种原蛋白转化酶(弗林蛋白酶,PACE4和PC5)的底物特异性彼此相似。这一发现导致了针对小分子抑制剂的短肽模式的新颖设计:[K / R] -X-V-X-K-R。与广泛使用的抑制所有7种原蛋白转化酶的小分子dec-RVKR-cmk相比,短肽模式[K / R] -XVXKR的微调衍生物可能具有更有效抑制5种原蛋白转化酶的潜力(弗林蛋白酶,PC4,PACE4,PC5和PC7)与其余两个(PC1和PC2)相比。该结果不仅提供对前蛋白转化酶家族中酶功能的分子进化的见解,而且还将有助于前蛋白转化酶功能冗余的研究和治疗应用的发展。

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