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人源 DPP7 结构揭示了其特异性抑制的分子基础和脯氨酰特异性肽酶的结构多样性。

Structures of human DPP7 reveal the molecular basis of specific inhibition and the architectural diversity of proline-specific peptidases.

机构信息

Institute of Molecular Biosciences, University of Graz, Graz, Austria.

出版信息

PLoS One. 2012;7(8):e43019. doi: 10.1371/journal.pone.0043019. Epub 2012 Aug 29.

Abstract

Proline-specific dipeptidyl peptidases (DPPs) are emerging targets for drug development. DPP4 inhibitors are approved in many countries, and other dipeptidyl peptidases are often referred to as DPP4 activity- and/or structure-homologues (DASH). Members of the DASH family have overlapping substrate specificities, and, even though they share low sequence identity, therapeutic or clinical cross-reactivity is a concern. Here, we report the structure of human DPP7 and its complex with a selective inhibitor Dab-Pip (L-2,4-diaminobutyryl-piperidinamide) and compare it with that of DPP4. Both enzymes share a common catalytic domain (α/β-hydrolase). The catalytic pocket is located in the interior of DPP7, deep inside the cleft between the two domains. Substrates might access the active site via a narrow tunnel. The DPP7 catalytic triad is completely conserved and comprises Ser162, Asp418 and His443 (corresponding to Ser630, Asp708 and His740 in DPP4), while other residues lining the catalytic pockets differ considerably. The "specificity domains" are structurally also completely different exhibiting a β-propeller fold in DPP4 compared to a rare, completely helical fold in DPP7. Comparing the structures of DPP7 and DPP4 allows the design of specific inhibitors and thus the development of less cross-reactive drugs. Furthermore, the reported DPP7 structures shed some light onto the evolutionary relationship of prolyl-specific peptidases through the analysis of the architectural organization of their domains.

摘要

脯氨酰特异性二肽基肽酶(DPPs)是药物开发的新兴靶点。DPP4 抑制剂已在许多国家获得批准,其他二肽基肽酶通常被称为 DPP4 活性和/或结构同源物(DASH)。DASH 家族的成员具有重叠的底物特异性,尽管它们的序列同一性较低,但治疗或临床交叉反应是一个关注点。在这里,我们报告了人 DPP7 的结构及其与选择性抑制剂 Dab-Pip(L-2,4-二氨基丁酸酰基-哌啶酰胺)的复合物,并将其与 DPP4 进行了比较。两种酶都共享一个共同的催化结构域(α/β-水解酶)。催化口袋位于 DPP7 的内部,位于两个结构域之间的裂隙深处。底物可能通过狭窄的隧道进入活性位点。DPP7 的催化三联体完全保守,由 Ser162、Asp418 和 His443 组成(对应于 DPP4 中的 Ser630、Asp708 和 His740),而排列在催化口袋中的其他残基则有很大的不同。“特异性结构域”在结构上也完全不同,DPP4 中的“特异性结构域”呈现β-螺旋桨折叠,而 DPP7 中的“特异性结构域”则呈现罕见的完全螺旋折叠。比较 DPP7 和 DPP4 的结构可以设计出特异性抑制剂,从而开发出交叉反应性较低的药物。此外,报告的 DPP7 结构通过分析其结构域的结构组织,为脯氨酰特异性肽酶的进化关系提供了一些线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9b4/3430648/fba73602c095/pone.0043019.g001.jpg

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