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首页> 外文期刊>Archives of Biochemistry and Biophysics >Probing the sterol binding site of soybean sterol methyltransferase by site-directed mutagenesis: Functional analysis of conserved aromatic amino acids in Region 1
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Probing the sterol binding site of soybean sterol methyltransferase by site-directed mutagenesis: Functional analysis of conserved aromatic amino acids in Region 1

机译:通过定点诱变探测大豆固醇甲基转移酶的固醇结合位点:1区保守芳香族氨基酸的功能分析

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Soybean sterol methyltransferase (SMT) in the presence of AdoMet catalyzes the transmethylation of the Delta(24)-bond of the sterol side chain to produce phytosterols with a methyl(lene) or ethyl(idene) group at C-24. The function of six aromatic amino acids associated with the putative active center of the SMT, i.e., Region I that extends from Phe82 to Phe93 in soybean SMT, was studied by site-directed mutagenesis and heterologous expression in BL21(DE3) bacterial cells. The enzyme-gene rated products were characterized kinetically and by GC-MS analysis. Substitution of the aromatic amino acids at positions 82, 83, 85, 87, 91, and 93 with a leucine residue produced mutant SMTs with varying activities. The mutants converted cycloartenol to 24(28)-methylene cycloartanol [C-1-activity] from a few percent to as much as 95% of the control activity. In contrast, none of the leucine mutants were found to catalyze 24(28)-methylene lophenol [C-2-activity], suggesting a loss of function associated with the second C-1-transfer activity. In contrast to the loss of the second C-1-transfer activity of the Phe82Leu, replacement of the Phe82 residue to isoleucine had minimal effect oil the first or second C-1-transfer activities, suggesting that the increased bulk (branching) in the leucine side chain contributes to significant perturbations in the active site that generate inaccurate positioning of the substrate side chain disfavoring the second C-1-transfer activity. Replacement of Tyr83 to phenylalanine resulted in an increase of the specificity constant (k(cat)/K-m) for the substrate of the second C-1-transfer activity by a factor of 5 compared to control and ail increase of Delta(24(28))Z-ethylidene sterol formation in the 24-ethyl sterol product Set, Suggesting that loss of steric bulk from the phenolic hydroxyl group Oil tyrosine generates a less precise fit of the Delta(24(28)) sterol side chain into the active site favoring the second C-1-transfer activity and prompting reaction channeling during catalysis. Circular dichroism spectra, equilibrium dialysis studies of AdoMet, and chromatographic information of the wild-type and Tyr83 mutants confirmed retention of the overall conformation of the enzyme during the experiments. Together, these findings Suggest that the amino acids of Region I provide a tight substrate orientation imposed by hydrophobic interactions between the sterol side chain and the SMT active site contacts and control the production and processing of the transmethylation pathways governed by the first and second C-1-transfer activities. (c) 2005 Elsevier Inc. All rights reserved.
机译:在AdoMet存在下,大豆固醇甲基转移酶(SMT)催化固醇侧链Delta(24)键的甲基化,从而在C-24处生成具有甲基(烯丙基)或乙基(亚乙基)基的植物固醇。通过定点诱变和BL21(DE3)细菌细胞中的异源表达研究了与SMT推定的活性中心相关的六个芳香族氨基酸的功能,即从Phe82延伸到Phe93的I区。对酶基因分级的产物进行动力学表征,并通过GC-MS分析。用亮氨酸残基取代82、83、85、87、91和93位的芳香族氨基酸可产生具有不同活性的突变SMT。突变体将环戊烯醇转化为24(28)-亚甲基环烷醇[C-1-活性],从控制活性的百分之几到多达95%。相反,未发现任何亮氨酸突变体催化24(28)-亚甲基氯酚[C-2-活性],表明与第二次C-1-转移活性有关的功能丧失。与Phe82Leu的第二C-1转移活性丧失相反,将Phe82残基替换为异亮氨酸对第一或第二C-1转移活性的影响很小,这表明Phe82Leu的体积增加(分支)。亮氨酸侧链在活性位点上造成显着扰动,从而导致底物侧链的定位不准确,从而不利于第二次C-1-转移活性。将Tyr83替换为苯丙氨酸导致第二个C-1-转移活性底物的特异性常数(k(cat)/ Km)与对照相比和Delta的所有增加都增加了5倍(24(28 ))在24-乙基固醇产品集中形成Z-亚乙基固醇,这表明酚羟基中油性酪氨酸的空间体积损失会导致Delta(24(28))固醇侧链进入活性位的精确度降低有利于第二次C-1-转移活性并促进催化过程中的反应通道化。圆二色性光谱,AdoMet的平衡透析研究以及野生型和Tyr83突变体的色谱信息证实了该酶在实验过程中的整体构型得以保留。在一起,这些发现表明,区域I的氨基酸提供了紧密的底物方向,该方向由固醇侧链与SMT活性位点之间的疏水相互作用所强加,并控制由第一和第二C- 1次转移活动。 (c)2005 Elsevier Inc.保留所有权利。

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