Mima Joji, Hayashida Minoru, Fujii Tomomi, Narita Yusuke, Hayashi Rikimaru, Ueda Mitsuyoshi, Hata Yasuo
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.
J Mol Biol. 2005 Mar 11;346(5):1323-34. doi: 10.1016/j.jmb.2004.12.051. Epub 2005 Jan 25.
Carboxypeptidase Y (CPY) inhibitor, IC, shows no homology to any other known proteinase inhibitors and rather belongs to the phosphatidylethanolamine-binding protein (PEBP) family. We report here on the crystal structure of the IC-CPY complex at 2.7 A resolution. The structure of IC in the complex with CPY consists of one major beta-type domain and a N-terminal helical segment. The structure of the complex contains two binding sites of IC toward CPY, the N-terminal inhibitory reactive site (the primary CPY-binding site) and the secondary CPY-binding site, which interact with the S1 substrate-binding site of CPY and the hydrophobic surface flanked by the active site of the enzyme, respectively. It was also revealed that IC had the ligand-binding site, which is conserved among PEBPs and the putative binding site of the polar head group of phospholipid. The complex structure and analyses of IC mutants for inhibitory activity and the binding to CPY demonstrate that the N-terminal inhibitory reactive site is essential both for inhibitory function and the complex formation with CPY and that the binding of IC to CPY constitutes a novel mode of the proteinase-protein inhibitor interaction. The unique binding mode of IC toward the cognate proteinase provides insights into the inhibitory mechanism of PEBPs toward serine proteinases and into the specific biological functions of IC belonging to the PEBP family as well.
羧肽酶Y(CPY)抑制剂IC与其他任何已知的蛋白酶抑制剂均无同源性,而是属于磷脂酰乙醇胺结合蛋白(PEBP)家族。我们在此报告IC-CPY复合物在2.7埃分辨率下的晶体结构。IC与CPY形成的复合物结构由一个主要的β型结构域和一个N端螺旋片段组成。该复合物结构包含IC与CPY的两个结合位点,即N端抑制性反应位点(主要的CPY结合位点)和次要的CPY结合位点,它们分别与CPY的S1底物结合位点以及酶活性位点两侧的疏水表面相互作用。还发现IC具有配体结合位点,该位点在PEBPs中保守,也是磷脂极性头部基团的假定结合位点。对IC突变体的抑制活性和与CPY结合的复合物结构及分析表明,N端抑制性反应位点对于抑制功能以及与CPY形成复合物均至关重要,并且IC与CPY的结合构成了蛋白酶-蛋白抑制剂相互作用的新模式。IC与同源蛋白酶的独特结合模式为深入了解PEBPs对丝氨酸蛋白酶的抑制机制以及IC所属PEBP家族的特定生物学功能提供了线索。