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脯氨酰二肽酶DPP8的二聚体界面及底物特异性研究

Investigation of the dimer interface and substrate specificity of prolyl dipeptidase DPP8.

作者信息

Lee Hong-Jen, Chen Yuan-Shou, Chou Chi-Yuan, Chien Chia-Hui, Lin Chun-Hung, Chang Gu-Gang, Chen Xin

机构信息

Division of Biotechnology and Pharmaceutical Research, National Health Research Institutes, Zhu Nan Town, Miaoli Co., Taiwan 350, Republic of China.

出版信息

J Biol Chem. 2006 Dec 15;281(50):38653-62. doi: 10.1074/jbc.M603895200. Epub 2006 Oct 13.

Abstract

DPP8 belongs to the family of prolyl dipeptidases, which are capable of cleaving the peptide bond after a penultimate proline residue. Unlike DPP-IV, a drug target for type II diabetes, no information is available on the crystal structure of DPP8, the regulation of its enzymatic activity, or its substrate specificity. In this study, using analytical ultracentrifugation and native gel electrophoresis, we show that the DPP8 protein is predominantly dimeric when purified or in the cell extracts. Four conserved residues in the C-terminal loop of DPP8 (Phe(822), Val(833), Tyr(844), and His(859)), corresponding to those located at the dimer interface of DPP-IV, were individually mutated to Ala. Surprisingly, unlike DPP-IV, these single-site mutations abolished the enzymatic activity of DPP8 without disrupting its quaternary structure, indicating that dimerization itself is not sufficient for the optimal enzymatic activity of DPP8. Moreover, these mutations not only decreased k(cat), as did the corresponding DPP-IV mutations, but also dramatically increased K(m). We further show that the K(m) effect is independent of the substrate assayed. Finally, we identified the distinctive and strict substrate selectivity of DPP8 for hydrophobic or basic residues at the P2 site, which is in sharp contrast to the much less discriminative substrate specificity of DPP-IV. Our study has identified the residues absolutely required for the optimal activity of DPP8 and its unique substrate specificity. This study extends the functional importance of the C-terminal loop to the whole family of prolyl dipeptidases.

摘要

DPP8属于脯氨酰二肽酶家族,该家族能够切割倒数第二个脯氨酸残基后的肽键。与作为II型糖尿病药物靶点的DPP-IV不同,目前尚无关于DPP8晶体结构、其酶活性调节或底物特异性的信息。在本研究中,我们使用分析型超速离心和天然凝胶电泳表明,DPP8蛋白在纯化或细胞提取物中主要以二聚体形式存在。DPP8 C末端环中的四个保守残基(Phe(822)、Val(833)、Tyr(844)和His(859)),与位于DPP-IV二聚体界面的残基相对应,分别突变为丙氨酸。令人惊讶的是,与DPP-IV不同,这些单点突变消除了DPP8的酶活性,而没有破坏其四级结构,表明二聚化本身不足以实现DPP8的最佳酶活性。此外,这些突变不仅像相应的DPP-IV突变那样降低了k(cat),还显著增加了K(m)。我们进一步表明,K(m)效应与所检测的底物无关。最后,我们确定了DPP8对P2位点疏水或碱性残基具有独特且严格的底物选择性,这与DPP-IV的底物特异性差异小得多形成鲜明对比。我们的研究确定了DPP8最佳活性及其独特底物特异性所绝对必需的残基。这项研究将C末端环的功能重要性扩展到了整个脯氨酰二肽酶家族。

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