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来自枯草芽孢杆菌的单功能分支酸变位酶的晶体结构及其与过渡态类似物的复合物。

Crystal structures of the monofunctional chorismate mutase from Bacillus subtilis and its complex with a transition state analog.

作者信息

Chook Y M, Ke H, 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. 1993 Sep 15;90(18):8600-3. doi: 10.1073/pnas.90.18.8600.

Abstract

We have solved the structure of a chorismate mutase (chorismate pyruvatemutase, EC 5.4.99.5), the 1.9-A crystal structure of the monofunctional enzyme from Bacillus subtilis. The structure determination process was an unusual one, involving 12 monomers of the enzyme in the asymmetric unit. This structure was solved by the multiple isomorphous replacement method with partial structure phase combination and molecular averaging. The final model, which includes 1380 residues and 522 water molecules in an asymmetric unit, has been refined at 1.9 A and the current crystallographic R value is 0.201. The B. subtilis chorismate mutase is a homotrimer, with beta-sheets from each monomer packing to form the core of a pseudo-alpha beta-barrel with helices on the outside of the trimer. In addition, the active sites have been located by using data from a complex with an endo-oxabicyclic inhibitor that mimics the transition state of the reaction. The structure of this complex has been refined to 2.2 A with a current R value of 0.182 for a model that includes 1388 residues, 12 inhibitor molecules, and 530 water molecules in the asymmetric unit. In each trimer, three equivalent active sites are located at the interfaces of two adjacent subunits.

摘要

我们解析了分支酸变位酶(分支酸丙酮酸变位酶,EC 5.4.99.5)的结构,即来自枯草芽孢杆菌的单功能酶的1.9埃晶体结构。结构测定过程非同寻常,不对称单元中包含该酶的12个单体。此结构通过多重同晶置换法、部分结构相位组合和分子平均法得以解析。最终模型在1.9埃分辨率下进行了精修,不对称单元中包含1380个残基和522个水分子,当前晶体学R值为0.201。枯草芽孢杆菌分支酸变位酶是一种同三聚体,每个单体的β折叠相互堆积,形成一个假αβ桶状结构的核心,三聚体外部为螺旋结构。此外,通过与模拟反应过渡态的内氧杂双环抑制剂复合物的数据确定了活性位点。该复合物的结构已精修至2.2埃,对于一个在不对称单元中包含1388个残基、12个抑制剂分子和530个水分子的模型,当前R值为0.182。在每个三聚体中,三个等效的活性位点位于两个相邻亚基的界面处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88a6/47405/0ab905f2fa13/pnas01475-0306-a.jpg

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