首页> 外文期刊>Journal of Molecular Biology >THE STRUCTURE OF THE COMPLEX BETWEEN RUBISCO AND ITS NATURAL SUBSTRATE RIBULOSE 1,5-BISPHOSPHATE
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THE STRUCTURE OF THE COMPLEX BETWEEN RUBISCO AND ITS NATURAL SUBSTRATE RIBULOSE 1,5-BISPHOSPHATE

机译:卢比斯科及其天然底物核糖1,5-双磷酸酯之间的络合物结构

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摘要

The three-dimensional structure of the complex of ribulose 1,5-bisphosphate carboxylase/oxygenase (rubisco; EC 4.1.1.39) from spinach with its natural substrate ribulose 1,5-bisphosphate (RuBP) has been determined both under activating and non-activating conditions by X-ray crystallography to a resolution of 2.1 Angstrom and 2.4 Angstrom, respectively. Under activating conditions, the use of calcium instead of magnesium as the activator metal ion enabled us to trap the substrate in a stable complex for crystallographic analysis. Comparison of the structure of the activated and the non-activated RuBP complexes shows a tighter binding for the substrate in the non-activated form of the enzyme, in line with previous solution studies. In the non-activated complex, the substrate triggers isolation of the active site by inducing movements of flexible loop regions of the catalytic subunits. In contrast, in the activated complex the active site remains partly open, probably awaiting the binding of the gaseous substrate. By inspection of the structures and by comparison with Other complexes of the enzyme we were able to identify a network of hydrogen bonds that stabilise a closed active site structure during crucial steps in the reaction. The present structure underlines the central role of the carbamylated lysine 201 in both activation and catalysis, and completes available structural information for our proposal on the mechanism of the enzyme. (C) 1997 Academic Press Limited. [References: 42]
机译:菠菜中核糖1,5-双磷酸羧化酶/加氧酶(rubisco; EC 4.1.1.39)与天然底物核糖1,5-双磷酸(RuBP)的复合物的三维结构已在激活和非通过X射线晶体学激活条件的分辨率分别为2.1埃和2.4埃。在活化条件下,使用钙代替镁作为活化剂金属离子使我们能够将底物捕获在稳定的络合物中,以进行晶体学分析。活化的和未活化的RuBP复合物的结构的比较表明,酶的非活化形式与底物的结合更紧密,这与先前的溶液研究一致。在未活化的复合物中,底物通过诱导催化亚基的柔性环区域的运动来触发活性位点的隔离。相反,在活化的复合物中,活性位点保持部分开放,可能等待气态底物的结合。通过检查结构并与酶的其他复合物进行比较,我们能够鉴定出氢键网络,该网络在反应的关键步骤中稳定了封闭的活性位点结构。本结构强调了氨基甲酰赖氨酸201在活化和催化中的核心作用,并为我们关于酶机理的建议完成了可用的结构信息。 (C)1997 Academic Press Limited。 [参考:42]

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