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亮氨酸氨肽酶2.7埃分辨率下的分子结构

Molecular structure of leucine aminopeptidase at 2.7-A resolution.

作者信息

Burley S K, David P R, Taylor A, Lipscomb W N

机构信息

Gibbs Chemical Laboratory, Harvard University, Cambridge, MA 02138.

出版信息

Proc Natl Acad Sci U S A. 1990 Sep;87(17):6878-82. doi: 10.1073/pnas.87.17.6878.

Abstract

The three-dimensional structure of bovine lens leucine aminopeptidase (EC 3.4.11.1) complexed with bestatin, a slow-binding inhibitor, has been solved to 3.0-A resolution by the multiple isomorphous replacement method with phase combination and density modification. In addition, the structure of the isomorphous native enzyme has been refined at 2.7-A resolution, and the current crystallographic R factor is 0.169 for a model that includes the two zinc ions and all 487 amino acid residues comprising the asymmetric unit. The enzyme is physiologically active as a hexamer, which has 32 symmetry and is triangular in shape with a triangle edge length of 115 A and maximal thickness of 90 A. The monomers are crystallographically equivalent and each is folded into two unequal alpha/beta domains connected by an alpha-helix to give a comma-like shape with approximate maximal dimensions of 90 x 55 x 55 A3. The secondary structural composition is 40% alpha-helix and 19% beta-strand. The N-terminal domain (160 amino acids) mediates trimer-trimer interactions and does not appear to participate directly in catalysis. The C-terminal domain (327 amino acids) is responsible for catalysis and binds the two zinc ions, which are 2.88 A apart. The pair of metal ions is located near the edge of an eight-stranded, saddle-shaped beta-sheet. One zinc ion is coordinated by carboxylate oxygen atoms of Asp-255, Asp-332, and Glu-334 and the carbonyl oxygen of Asp-332. The other zinc ion is coordinated by the carboxylate oxygen atoms of Asp-255, Asp-273, and Glu-334. The active site also contains two positively charged residues, Lys-250 and Arg-336. The six active sites are themselves located in the interior of the hexamer, where they line a disk-shaped cavity of radius 15 A and thickness 10 A. Access to this cavity is provided by solvent channels that run along the twofold symmetry axes.

摘要

通过同晶置换法结合相位组合和密度修正,已将与慢结合抑制剂贝他汀复合的牛晶状体亮氨酸氨肽酶(EC 3.4.11.1)的三维结构解析到3.0埃分辨率。此外,已将同晶型天然酶的结构精修到2.7埃分辨率,对于包含两个锌离子和构成不对称单元的所有487个氨基酸残基的模型,当前晶体学R因子为0.169。该酶作为六聚体具有生理活性,具有32对称性,呈三角形,三角形边长为115埃,最大厚度为90埃。单体在晶体学上是等效的,每个单体折叠成两个不相等的α/β结构域,由一个α螺旋连接,形成逗号状,最大尺寸约为90×55×55埃³。二级结构组成为40%的α螺旋和19%的β链。N端结构域(160个氨基酸)介导三聚体-三聚体相互作用,似乎不直接参与催化。C端结构域(327个氨基酸)负责催化并结合两个锌离子,它们相距2.88埃。这对金属离子位于一个八链鞍形β折叠片边缘附近。一个锌离子由Asp-255、Asp-332和Glu-334的羧酸盐氧原子以及Asp-332的羰基氧配位。另一个锌离子由Asp-255、Asp-273和Glu-334的羧酸盐氧原子配位。活性位点还包含两个带正电荷的残基,Lys-250和Arg-336。六个活性位点本身位于六聚体内部,它们排列在一个半径为15埃、厚度为10埃的盘形腔内。沿着二重对称轴的溶剂通道提供了进入该腔的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccf0/54641/c2999a13d202/pnas01042-0413-a.jpg

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