首页> 外文期刊>The biochemical journal >Single active-site histidine in d-xylose isomerase from Streptomyces violaceoruber. Identification by chemical derivatization and peptide mapping
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Single active-site histidine in d-xylose isomerase from Streptomyces violaceoruber. Identification by chemical derivatization and peptide mapping

机译:来自紫链霉菌的d-木糖异构酶中的单个活性位点组氨酸。通过化学衍生和肽图鉴定

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pGroup-specific chemical modifications of D-xylose isomerase from Streptomyces violaceruber indicated that complete loss of activity is fully correlated with the acylation of a single histidine. Active-site protection, by the ligand combination of xylitol plus Mg2+, completely blocked diethyl pyrocarbonate derivatization of this particular residue [Vangrysperre, Callens, Kersters-Hilderson & De Bruyne (1988) Biochem. J. 250, 153-160]. Differential peptide mapping between D-xylose isomerase, which has previously been treated with diethyl pyrocarbonate in the presence or absence of xylitol plus Mg2+, allowed specific isolation and sequencing of a peptide containing this active-site histidine. For this purpose we used two essentially new techniques: first, a highly reproducible peptide cleavage protocol for protease-resistant, carbethoxylated proteins with guanidinium hydrochloride as denaturing agent and subtilisin for proteolysis; and second, reverse-phase liquid chromatography with dual-wavelength detection at 214 and 238 nm, and calculation of absorbance ratios. It allowed us to locate the single active-site histidine at position 54 in the primary structure of Streptomyces violaceoruber D-xylose isomerase. The sequence around this residue is conserved in D-xylose isomerases from a diversity of micro-organisms, suggesting that this is a structurally and/or functionally essential part of the molecule./p
机译:p。来自紫链霉菌的D-木糖异构酶的组特异性化学修饰表明,活性的完全丧失与单个组氨酸的酰化完全相关。通过木糖醇和Mg 2+的配体结合进行的活性位点保护,完全阻断了该特定残基的焦碳酸二乙酯的衍生化[Vangrysperre,Callens,Kersters-Hilderson& Chem。 De Bruyne(1988)生物化学。 J. 250,153-160]。 D-木糖异构酶之间的差异化肽图分析(先前已在有或没有木糖醇加Mg2 +的情况下用焦碳酸二乙酯处理过)可对含有该活性位点组氨酸的肽进行特异性分离和测序。为此,我们使用了两种本质上新的技术:首先,以盐酸胍为变性剂的枯草杆菌蛋白酶用于蛋白酶抗性,乙氧基乙氧基化蛋白的高度可再现的肽裂解方案;用于蛋白质水解的枯草杆菌蛋白酶;第二步是在214和238 nm处进行双波长检测的反相液相色谱法,并计算吸光度比。它使我们能够在紫链霉菌D-木糖异构酶一级结构的第54位上定位单个活性位点组氨酸。来自各种微生物的D-木糖异构酶中该残基周围的序列是保守的,表明这是分子的结构和/或功能必不可少的部分。

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