Matsumoto K, Murata M, Sumiya S, Kitamura K, Ishida T
Research Center, Taisho Pharmaceutical Co., Ltd., Saitama, Japan.
Biochim Biophys Acta. 1994 Oct 19;1208(2):268-76. doi: 10.1016/0167-4838(94)90113-9.
In order to investigate the stereo specificity of papain Sn subsites (n = 1-4) at the atomic level, two kinds of covalent-type inhibitors were designed based on the previous results on papain-E-64 and papain-E-64-c interactions, and their complex crystals with papain were analyzed by X-ray diffraction. The results show that the hydrophobic regions consisting of Val-133, Val-157 and Asp-158 and of Tyr-61, Gly-66 and Tyr-67 residues interact with the hydrophobic P2 and P3 side chains of inhibitors, thus indicating the function of the former and latter binding pockets as S2 and S3 subsites, respectively. Furthermore, the X-ray analysis suggests that the papain has no definite Sn subsite of n > or = 4, and the S3-P3 hydrophobic interaction is significantly affected by the Pn side chain (n > or = 4) of both the substrate and the inhibitor.
为了在原子水平上研究木瓜蛋白酶Sn亚位点(n = 1 - 4)的立体特异性,基于先前关于木瓜蛋白酶 - E - 64和木瓜蛋白酶 - E - 64 - c相互作用的结果设计了两种共价型抑制剂,并通过X射线衍射分析了它们与木瓜蛋白酶形成的复合晶体。结果表明,由Val - 133、Val - 157和Asp - 158以及Tyr - 61、Gly - 66和Tyr - 67残基组成的疏水区域分别与抑制剂的疏水P2和P3侧链相互作用,从而表明前者和后者的结合口袋分别作为S2和S3亚位点发挥功能。此外,X射线分析表明木瓜蛋白酶没有明确的n≥4的Sn亚位点,并且S3 - P3疏水相互作用受到底物和抑制剂两者的Pn侧链(n≥4)的显著影响。