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猪胰α-淀粉酶在2.1埃分辨率下的精细分子结构。

Refined molecular structure of pig pancreatic alpha-amylase at 2.1 A resolution.

作者信息

Larson S B, Greenwood A, Cascio D, Day J, McPherson A

机构信息

Department of Biochemistry, University of California at Riverside 92521.

出版信息

J Mol Biol. 1994 Feb 4;235(5):1560-84. doi: 10.1006/jmbi.1994.1107.

Abstract

The structure of pig pancreatic alpha-amylase has been determined by X-ray diffraction analysis using multiple isomorphous replacement in a crystal of space group P2(1)2(1)2(1) (a = 70.6 A, b = 114.8 A, c = 118.8 A) containing nearly 75% solvent. The structure was refined by simulated annealing and Powell minimization, as monitored by 2Fo-Fc difference Fourier syntheses, to a conventional R of 0.168 at 2.1 A resolution. The final model consists of all 496 amino acid residues, a chloride and a calcium ion, 145 water molecules and an endogenous disaccharide molecule that contiguously links protein molecules related by the 2(1) crystallographic operator along x. The protein is composed of a large domain (amino acid residues 1 to 403) featuring a central alpha ta-barrel of eight parallel strands and connecting helices with a prominent excursion between strand beta 3 and helix alpha 3 (amino acid residues 100 to 168). The final 93 amino acid residues at the carboxyl terminus form a second small domain consisting of a compact Greek key beta-barrel. The domains are tightly associated through hydrophobic interfaces. The beta 3/alpha 3 excursion and portions of the central alpha/beta-barrel provide four protein ligands to the tightly bound Ca ion; three water molecules complete the coordination. The Cl- ion is bound within one end of the alpha/beta-barrel by two arginine residues in a manner suggesting a plausible mechanism for its allosteric activation of the enzyme. A crystalline complex of the pancreatic alpha-amylase with alpha-cyclodextrin, a cyclic substrate analog of six glucose residues, reveals, in difference Fourier maps, three unique binding sites. One of the alpha-cyclodextrin sites is near the center of the long polysaccharide binding cleft that traverses one end of the alpha/beta-barrel, another is at the extreme of this cleft. By symmetry this can also be considered as two half sites located at the extremes of the active site cleft. This latter alpha-cyclodextrin displaces the endogenous disaccharide when it binds and, along with the first sugar ring, delineates the extended starch binding site. The third alpha-cyclodextrin binds at an "accessory site" near the edge of the protein and is quite distant from the polysaccharide binding cleft. Its presence explains the multivalency of alpha-amylase binding to dextrins in solution. The extended active site cleft is formed by large, sweeping, connecting loops at one end of the alpha/beta-barrel. These include three sequence segments that are highly conserved among alpha-amylases.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

猪胰α-淀粉酶的结构已通过X射线衍射分析确定,采用多重同晶置换法,在空间群为P2(1)2(1)2(1)(a = 70.6 Å,b = 114.8 Å,c = 118.8 Å)且溶剂含量近75%的晶体中进行。该结构通过模拟退火和鲍威尔最小化进行优化,以2Fo - Fc差值傅里叶合成进行监测,在2.1 Å分辨率下常规R因子为0.168。最终模型包含所有496个氨基酸残基、一个氯离子和一个钙离子、145个水分子以及一个内源性二糖分子,该二糖分子沿着x轴将由2(1)晶体学算子相关的蛋白质分子连续连接起来。该蛋白质由一个大结构域(氨基酸残基1至403)组成,其特征是一个由八条平行链组成的中央α/β桶以及连接螺旋,在β3链和α3螺旋之间(氨基酸残基100至168)有明显的偏移。羧基末端的最后93个氨基酸残基形成第二个小结构域,由一个紧密的希腊钥匙β桶组成。这些结构域通过疏水界面紧密相连。β3/α3偏移以及中央α/β桶的部分区域为紧密结合的钙离子提供了四个蛋白质配体;三个水分子完成配位。氯离子通过两个精氨酸残基结合在α/β桶的一端,其方式暗示了一种可能的酶变构激活机制。胰α-淀粉酶与α-环糊精(一种由六个葡萄糖残基组成的环状底物类似物)的晶体复合物在差值傅里叶图中显示出三个独特的结合位点。其中一个α-环糊精位点靠近贯穿α/β桶一端的长多糖结合裂隙的中心,另一个位于该裂隙的末端。通过对称性,这也可被视为位于活性位点裂隙末端的两个半位点。后一个α-环糊精结合时会取代内源性二糖,并与第一个糖环一起勾勒出延伸的淀粉结合位点。第三个α-环糊精结合在蛋白质边缘附近的“辅助位点”,与多糖结合裂隙相距甚远。它的存在解释了α-淀粉酶在溶液中与糊精结合的多价性。延伸的活性位点裂隙由α/β桶一端的大的、弯曲的连接环形成。这些环包括在α-淀粉酶中高度保守的三个序列片段。(摘要截取自400字)

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