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牛胰胆固醇酯酶1.6埃分辨率的结构:脂肪酶激活中涉及的新结构特征

Structure of bovine pancreatic cholesterol esterase at 1.6 A: novel structural features involved in lipase activation.

作者信息

Chen J C, Miercke L J, Krucinski J, Starr J R, Saenz G, Wang X, Spilburg C A, Lange L G, Ellsworth J L, Stroud R M

机构信息

Graduate Group in Biophysics and Department of Biochemistry and Biophysics, University of California, San Francisco, California 94143, USA.

出版信息

Biochemistry. 1998 Apr 14;37(15):5107-17. doi: 10.1021/bi972989g.

Abstract

The structure of pancreatic cholesterol esterase, an enzyme that hydrolyzes a wide variety of dietary lipids, mediates the absorption of cholesterol esters, and is dependent on bile salts for optimal activity, is determined to 1.6 A resolution. A full-length construct, mutated to eliminate two N-linked glycosylation sites (N187Q/N361Q), was expressed in HEK 293 cells. Enzymatic activity assays show that the purified, recombinant, mutant enzyme has activity identical to that of the native, glycosylated enzyme purified from bovine pancreas. The mutant enzyme is monomeric and exhibits improved homogeneity which aided in the growth of well-diffracting crystals. Crystals of the mutant enzyme grew in space group C2, with the following cell dimensions: a = 100.42 A, b = 54.25 A, c = 106.34 A, and beta = 104.12 degrees, with a monomer in the asymmetric unit. The high-resolution crystal structure of bovine pancreatic cholesterol esterase (Rcryst = 21.1%; Rfree = 25.0% to 1.6 A resolution) shows an alpha-beta hydrolase fold with an unusual active site environment around the catalytic triad. The hydrophobic C terminus of the protein is lodged in the active site, diverting the oxyanion hole away from the productive binding site and the catalytic Ser194. The amphipathic, helical lid found in other triglyceride lipases is truncated in the structure of cholesterol esterase and therefore is not a salient feature of activation of this lipase. These two structural features, along with the bile salt-dependent activity of the enzyme, implicate a new mode of lipase activation.

摘要

胰腺胆固醇酯酶可水解多种膳食脂质,介导胆固醇酯的吸收,且其最佳活性依赖于胆汁盐。该酶的结构已确定至1.6埃分辨率。一个经突变消除两个N - 糖基化位点(N187Q/N361Q)的全长构建体在HEK 293细胞中表达。酶活性测定表明,纯化的重组突变酶与从牛胰腺纯化的天然糖基化酶具有相同的活性。突变酶为单体,具有更高的均一性,这有助于生长出衍射良好的晶体。突变酶的晶体属于空间群C2,其晶胞参数如下:a = 100.42埃,b = 54.25埃,c = 106.34埃,β = 104.12°,不对称单元中有一个单体。牛胰腺胆固醇酯酶的高分辨率晶体结构(Rcryst = 21.1%;Rfree = 25.0%,分辨率为1.6埃)显示出α - β水解酶折叠结构,催化三联体周围的活性位点环境不同寻常。蛋白质的疏水C末端位于活性位点,使氧阴离子洞偏离有效结合位点和催化性丝氨酸194。在其他甘油三酯脂肪酶中发现的两亲性螺旋盖子在胆固醇酯酶的结构中被截断,因此不是该脂肪酶激活的显著特征。这两个结构特征,连同该酶的胆汁盐依赖性活性,暗示了一种新的脂肪酶激活模式。

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