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人埃莫帕米结合蛋白的组氨酸77、谷氨酸81、谷氨酸123、苏氨酸126、天冬酰胺194和色氨酸197是体内甾醇δ8-δ7异构化所必需的。

Histidine77, glutamic acid81, glutamic acid123, threonine126, asparagine194, and tryptophan197 of the human emopamil binding protein are required for in vivo sterol delta 8-delta 7 isomerization.

作者信息

Moebius F F, Soellner K E, Fiechtner B, Huck C W, Bonn G, Glossmann H

机构信息

Institut für Biochemische Pharmakologie, Universität Innsbruck, Austria.

出版信息

Biochemistry. 1999 Jan 19;38(3):1119-27. doi: 10.1021/bi981804i.

Abstract

The human emopamil binding protein (hEBP) exhibits sterol Delta8-Delta7 isomerase activity (EC 5.3.3.5) upon heterologous expression in a sterol Delta8-Delta7 isomerization-deficient erg2-3 yeast strain. Ala scanning mutagenesis was used to identify residues in the four putative transmembrane alpha-helices of hEBP that are required for catalytic activity. Isomerization was assayed in vivo by spectrophotometric quantification of Delta5,7-sterols. Out of 64 Ala mutants of hEBP only H77A-, E81A-, E123A-, T126A-, N194A-, and W197A-expressing yeast strains contained 10% or less of wild-type (wt) Delta5,7-sterols. All substitutions of these six residues with functionally or structurally similar amino acid residues failed to fully restore catalytic activity. Mutants E81D, T126S, N194Q, and W197F, but not H77N and E123D, still bound the enzyme inhibitor 3H-ifenprodil. Changed equilibrium and kinetic binding properties of the mutant enzymes confirmed our previous suggestion that residues required for catalytic activity are also involved in inhibitor binding [Moebius et al. (1996) Biochemistry 35, 16871-16878]. His77, Glu81, Glu123, Thr126, Asn194, and Trp197 are localized in the cytoplasmic halves of the transmembrane segments 2-4 and are proposed to line the catalytic cleft. Ala mutants of Trp102, Tyr105, Asp109, Arg111, and Tyr112 in a conserved cytoplasmic domain (WKEYXKGDSRY) between transmembrane segments 2 and 3 contained less than 10% of wt Delta5,7-sterols, implying that this region also could be functionally important. The in vivo complementation of enzyme-deficient yeast strains with mutated cDNAs is a simple and sensitive method to rapidly analyze the functional consequences of mutations in sterol modifying enzymes.

摘要

人埃莫帕米结合蛋白(hEBP)在甾醇Δ8-Δ7异构化缺陷型erg2-3酵母菌株中进行异源表达时,表现出甾醇Δ8-Δ7异构酶活性(EC 5.3.3.5)。采用丙氨酸扫描诱变来鉴定hEBP四个假定跨膜α-螺旋中催化活性所需的残基。通过分光光度法定量测定Δ5,7-甾醇在体内进行异构化分析。在hEBP的64个丙氨酸突变体中,只有表达H77A-、E81A-、E123A-、T126A-、N194A-和W197A的酵母菌株含有10%或更少的野生型(wt)Δ5,7-甾醇。这六个残基被功能或结构相似的氨基酸残基取代后,均未能完全恢复催化活性。突变体E81D、T126S、N194Q和W197F,但不是H77N和E123D,仍然结合酶抑制剂3H-ifenprodil。突变酶平衡和动力学结合特性的改变证实了我们之前的推测,即催化活性所需的残基也参与抑制剂结合[Moebius等人(1996年)《生物化学》35,16871 - 16878]。His77、Glu81、Glu123、Thr126、Asn194和Trp197位于跨膜区段2 - 4的胞质半区,推测它们构成催化裂隙的内壁。跨膜区段2和3之间保守胞质结构域(WKEYXKGDSRY)中的Trp102、Tyr105、Asp109、Arg111和Tyr112的丙氨酸突变体含有不到10%的wt Δ5,7-甾醇,这意味着该区域在功能上也可能很重要。用突变的cDNA对酶缺陷型酵母菌株进行体内互补是一种简单且灵敏的方法,可快速分析甾醇修饰酶突变的功能后果。

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