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Substrate complexes of human dipeptidyl peptidase III reveal the mechanism of enzyme inhibition

机译:人类二肽基肽酶III的底物复合物揭示了酶抑制的机制

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摘要

Human dipeptidyl-peptidase III (hDPP III) is a zinc-dependent hydrolase cleaving dipeptides off the N-termini of various bioactive peptides. Thus, the enzyme is likely involved in a number of physiological processes such as nociception and is also implicated in several forms of cancer. We present high-resolution crystal structures of hDPP III in complex with opioid peptides (Met-and Leu-enkephalin, endomorphin-2) as well as with angiotensin-II and the peptide inhibitor IVYPW. These structures confirm the previously reported large conformational change of the enzyme upon ligand binding and show that the structure of the closed conformation is independent of the nature of the bound peptide. The overall peptide-binding mode is also conserved ensuring the correct positioning of the scissile peptide bond with respect to the catalytic zinc ion. The structure of the angiotensin-II complex shows, how longer peptides are accommodated in the binding cleft of hDPP III. Differences in the binding modes allow a distinction between real substrates and inhibitory peptides or “slow” substrates. The latter displace a zinc bound water molecule necessitating the energetically much less favoured anhydride mechanism as opposed to the favoured promoted-water mechanism. The structural data also form the necessary framework for the design of specific hDPP III inhibitors.
机译:人二肽基肽酶III(hDPP III)是一种锌依赖性水解酶,可从各种生物活性肽的N-末端切割二肽。因此,该酶可能参与许多生理过程,例如伤害感受,并且还与多种癌症有关。我们提出了hDPP III的高分辨率晶体结构,该结构与阿片肽(Met和Leu-脑啡肽,endomorphin-2)以及血管紧张素II和肽抑制剂IVYPW复杂。这些结构证实了先前报道的配体结合后酶的大构象变化,并表明闭合构象的结构与结合肽的性质无关。整体肽结合模式也得以保留,以确保易裂肽键相对于催化锌离子的正确定位。血管紧张素-II复合物的结构表明,在hDPP III的结合裂隙中容纳了更长的肽。结合模式的差异允许区分真实的底物和抑制性肽或“慢”底物。后者取代了与锌结合的水分子,从而在能量上需要大大减少有利于酸酐的机制,而不是有利于促进水的机制。结构数据也构成了设计特定hDPP III抑制剂的必要框架。

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