Fujimoto Zui, Fujii Yoshifumi, Kaneko Satoshi, Kobayashi Hideyuki, Mizuno Hiroshi
Department of Biochemistry, National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8602, Japan.
J Mol Biol. 2004 Aug 27;341(5):1227-35. doi: 10.1016/j.jmb.2004.06.049.
The crystal structure of Irpex lacteus aspartic proteinase (ILAP) in complex with pepstatin (a six amino acid residue peptide-like inhibitor) was determined at 1.3A resolution. ILAP is a pepsin-like enzyme, widely distributed in nature, with high milk-clotting activity relative to proteolytic activity. The overall structure was in good topological agreement with pepsin and other aspartic proteases. The structure and interaction pattern around the catalytic site were conserved, in agreement with the other aspartic proteinase/inhibitor complex structures reported previously. The high-resolution data also supported the transition state model, as proposed previously for the catalytic mechanism of aspartic proteinase. Unlike the other aspartic proteinases, ILAP was found to require hydrophobic residues either in the P(1) or P(1') site, and also in the P(4) and/or P(3) site(s) for secondary interactions. The inhibitor complex structure also revealed the substrate binding mechanism of ILAP at the P(3) and P(4) site of the substrate, where the inserted loop built up the unique hydrophobic pocket at the P(4) site.
测定了与胃蛋白酶抑制剂(一种六氨基酸残基的类肽抑制剂)复合的白囊耙齿菌天冬氨酸蛋白酶(ILAP)的晶体结构,分辨率为1.3埃。ILAP是一种胃蛋白酶样酶,在自然界中广泛分布,相对于蛋白水解活性具有较高的凝乳活性。其整体结构在拓扑结构上与胃蛋白酶和其他天冬氨酸蛋白酶高度一致。催化位点周围的结构和相互作用模式是保守的,这与先前报道的其他天冬氨酸蛋白酶/抑制剂复合结构一致。高分辨率数据也支持了先前提出的天冬氨酸蛋白酶催化机制的过渡态模型。与其他天冬氨酸蛋白酶不同,发现ILAP在P(1)或P(1')位点以及P(4)和/或P(3)位点需要疏水残基进行二级相互作用。抑制剂复合结构还揭示了ILAP在底物P(3)和P(4)位点的底物结合机制,其中插入的环在P(4)位点形成了独特的疏水口袋。
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