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人胃蛋白酶原在1.62埃分辨率下的晶体结构和分子结构。

Crystal and molecular structures of human progastricsin at 1.62 A resolution.

作者信息

Moore S A, Sielecki A R, Chernaia M M, Tarasova N I, James M N

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

J Mol Biol. 1995 Mar 31;247(3):466-85. doi: 10.1006/jmbi.1994.0154.

Abstract

The crystal and molecular structures of human progastricsin (hPGC) have been determined using multiple isomorphous replacement methods and anomalous scattering in conjunction with a phased translation function. The structure has been refined to a conventional R-factor (= sigma parallel Fo magnitude of - magnitude of Fc parallel / sigma magnitude of Fo magnitude of) of 0.179 with data to 1.62 A resolution. The first 37 amino acid residues of the prosegment are similar in conformation to the equivalent residues of porcine pepsinogen (pPGN). As in pPGN, the N zeta atom of Lys37p sits between the active-site carboxylate groups of Asp32 and Asp217, thereby preventing catalysis. The side-chains of Tyr38p and Tyr9 sit in the S1' and S1 substrate-binding pockets of hPGC, respectively, in an analogous manner to what is observed in porcine pepsinogen. There are large conformational differences centered around the region containing residues Arg39p to Pro6, relative to the equivalent region in the structure of pPGN. Two surface loops in the vicinity of this segment are also displaced relative to those in pPGN and in mature aspartic proteinases (Phe71 to Thr81 (the "flap"), and Tyr125 to Thr131). In hPGC, Tyr75 O eta does not make its usual hydrogen bond to Trp39 N epsilon 1. Rather, the "flap" containing Tyr75 is excluded from the active site by the polypeptide segment Arg39p to Pro6. However, the conformation of the inhibitory segment, Lys37p to Tyr38p, is virtually identical with that observed in pPGN. Hence the structures of these two proteins indicate that aspartic proteinase zymogens keep themselves inactive at neutral pH by a very similar mechanism in human progastricsin and porcine pepsinogen. This similarity likely carries over to all members of both the pepsinogen A and C families of aspartic proteinase zymogens.

摘要

利用多重同晶置换法和反常散射,并结合相平移函数,已确定了人胃蛋白酶原(hPGC)的晶体结构和分子结构。该结构已精修至常规R因子(=(|Fo| - |Fc|)/|Fo|,其中Fo和Fc分别为观测结构因子和计算结构因子)为0.179,数据分辨率达1.62 Å。前肽的前37个氨基酸残基在构象上与猪胃蛋白酶原(pPGN)的相应残基相似。与pPGN一样,Lys37p的Nζ原子位于Asp32和Asp217的活性位点羧基之间,从而阻止催化作用。Tyr38p和Tyr9的侧链分别位于hPGC的S1'和S1底物结合口袋中,其方式与在猪胃蛋白酶原中观察到的类似。相对于pPGN结构中的等效区域,围绕包含Arg39p至Pro6残基的区域存在较大的构象差异。该片段附近的两个表面环相对于pPGN和成熟天冬氨酸蛋白酶中的那些环(Phe71至Thr81(“瓣片”)以及Tyr125至Thr131)也发生了位移。在hPGC中,Tyr75的Oη不与Trp39的Nε1形成其通常的氢键。相反,包含Tyr75的“瓣片”被Arg39p至Pro6的多肽片段排除在活性位点之外。然而,抑制片段Lys37p至Tyr38p的构象与在pPGN中观察到的几乎相同。因此,这两种蛋白质的结构表明,天冬氨酸蛋白酶原在中性pH下通过非常相似的机制使自身保持无活性,在人胃蛋白酶原和猪胃蛋白酶原中都是如此。这种相似性可能适用于天冬氨酸蛋白酶原的胃蛋白酶原A和C家族的所有成员。

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