McGrath M E, Mirzadegan T, Schmidt B F
Arris Pharmaceutical, South San Francisco, California 94080, USA.
Biochemistry. 1997 Nov 25;36(47):14318-24. doi: 10.1021/bi971403n.
The X-ray crystal structure of human chymase has been determined to 1.9 A resolution using molecular replacement methods. This first structure of human chymase is present as the Ser 195 ester of alpha-toluenesulfonic acid. The refined structure (Rcryst = 0.183) shows that the inhibitor phenyl moiety lies at the top of the major specificity pocket, S1, while the sulfur is covalently linked to Ser 195-O gamma. The sulfonyl oxygens interact with the oxyanion hole and with His 57-N delta 1. The presence of the inhibitor disturbs the usual gauche position of His 57 and forces it to the trans conformer. Though the primary binding pockets are similarly specific in chymase and chymotrypsin, examination of the extended substrate binding sites reveals the structural basis for chymase's greater discrimination in choosing substrates. The larger 30s loop and its proximity to the active site indicates that it contacts substrate residues C-terminal to the scissile bond. Modeling of substrate at the chymase active site suggests that binding energy may be gained by three main-chain hydrogen bonds provided by substrate residues P2' and P4' and that discriminating interactions with substrate side chains are also likely. The presence of Lys 40 in S1' of human chymase explains its preference for Asp/Glu at P1'. Moreover, the cationic nature of S1' provides a structural basis for human chymase's poor catalytic efficiency when angiotensin II is the substrate.
利用分子置换法,已将人糜酶的X射线晶体结构解析至1.9埃的分辨率。人糜酶的首个结构以α-甲苯磺酸的Ser 195酯形式存在。优化后的结构(Rcryst = 0.183)显示,抑制剂的苯基部分位于主要特异性口袋S1的顶部,而硫原子与Ser 195-Oγ共价相连。磺酰氧与氧负离子洞以及His 57-Nδ1相互作用。抑制剂的存在扰乱了His 57通常的 gauche构象,迫使其转变为反式构象。尽管糜酶和胰凝乳蛋白酶的主要结合口袋具有相似的特异性,但对扩展底物结合位点的研究揭示了糜酶在选择底物时具有更强区分能力的结构基础。较大的30s环及其与活性位点的接近程度表明,它与切割键C端的底物残基接触。在糜酶活性位点对底物进行建模表明,底物残基P2'和P4'提供的三个主链氢键可能会增加结合能,并且与底物侧链的区分性相互作用也很可能存在。人糜酶S1'中Lys 40的存在解释了其对P1'处Asp/Glu的偏好。此外,当以血管紧张素II为底物时,S1'的阳离子性质为人糜酶催化效率低下提供了结构基础。