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木瓜蛋白酶-E64-c复合物的晶体结构。E64-c与木瓜蛋白酶S2和S3亚位点的结合多样性。

Crystal structure of papain-E64-c complex. Binding diversity of E64-c to papain S2 and S3 subsites.

作者信息

Kim M J, Yamamoto D, Matsumoto K, Inoue M, Ishida T, Mizuno H, Sumiya S, Kitamura K

机构信息

Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences, Japan.

出版信息

Biochem J. 1992 Nov 1;287 ( Pt 3)(Pt 3):797-803. doi: 10.1042/bj2870797.

Abstract

In order to investigate the binding mode of E64-c (a synthetic cysteine proteinase inhibitor) to papain at the atomic level, the crystal structure of the complex was analysed by X-ray diffraction at 1.9 A (1 A is expressed in SI units as 0.1 nm) resolution. The crystal has a space group P2(1)2(1)2(1) with a = 43.37, b = 102.34 and c = 49.95 A. A total of 21,135 observed reflections were collected from the same crystal, and 14811 unique reflections of up to 1.9 A resolution [Fo > 3 sigma(Fo)] were used for the structure solution and refinement. The papain structure was determined by means of the molecular replacement method, and then the inhibitor was observed on a (2 magnitude of Fo-magnitude of Fc) difference Fourier map. The complex structure was finally refined to R = 19.4% including 207 solvent molecules. Although this complex crystal (Form II) was polymorphous as compared with the previously analysed one (Form I), the binding modes of leucine and isoamylamide moieties of E64-c were significantly different from each other. By the calculation of accessible surface area for each complex atom, these two different binding modes were both shown to be tight enough to prevent the access of solvent molecules to the papain active site. With respect to the E64-c-papain binding mode, molecular-dynamics simulations proposed two kinds of stationary states which were derived from the crystal structures of Forms I and II. One of these, which corresponds to the binding mode simulated from Form I, was essentially the same as that observed in the crystal structure, and the other was somewhat different from the crystal structure of Form II, especially with respect to the binding of the isoamylamide moiety with the papain S subsites. The substrate specificity for the papain active site is discussed on the basis of the present results.

摘要

为了在原子水平上研究E64 - c(一种合成的半胱氨酸蛋白酶抑制剂)与木瓜蛋白酶的结合模式,通过X射线衍射在1.9埃(1埃在国际单位制中表示为0.1纳米)分辨率下分析了复合物的晶体结构。该晶体属于空间群P2(1)2(1)2(1),a = 43.37,b = 102.34,c = 49.95埃。从同一晶体收集了总共21135个观测反射,并且使用了14811个分辨率高达1.9埃[Fo > 3σ(Fo)]的独立反射进行结构解析和精修。木瓜蛋白酶的结构通过分子置换法确定,然后在(2|Fo| - |Fc|)差值傅里叶图上观察到抑制剂。最终复合物结构精修至R = 19.4%,包括207个溶剂分子。尽管与先前分析的复合物晶体(晶型I)相比,这种复合物晶体(晶型II)是多晶型的,但E64 - c的亮氨酸和异戊酰胺部分的结合模式彼此显著不同。通过计算每个复合物原子的可及表面积,这两种不同的结合模式都显示出足够紧密,以防止溶剂分子进入木瓜蛋白酶的活性位点。关于E64 - c - 木瓜蛋白酶的结合模式,分子动力学模拟提出了两种源自晶型I和晶型II晶体结构的稳态。其中一种对应于从晶型I模拟的结合模式,与晶体结构中观察到的基本相同,另一种与晶型II的晶体结构有些不同,特别是在异戊酰胺部分与木瓜蛋白酶S亚位点的结合方面。基于目前的结果讨论了木瓜蛋白酶活性位点的底物特异性。

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