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来自困惑乳杆菌的L-2-羟基异己酸脱氢酶在2.2埃分辨率下的晶体结构。亚基间强烈不对称的一个实例。

Crystal structure of L-2-hydroxyisocaproate dehydrogenase from Lactobacillus confusus at 2.2 A resolution. An example of strong asymmetry between subunits.

作者信息

Niefind K, Hecht H J, Schomburg D

机构信息

Gesellschaft für Biotechnologische Forschung (GBF), Abteilung Molekulare Strukturforschung, Braunschweig, Germany.

出版信息

J Mol Biol. 1995 Aug 11;251(2):256-81. doi: 10.1006/jmbi.1995.0433.

Abstract

L-2-Hydroxyisocaproate dehydrogenase (L-HicDH) from Lactobacillus confusus, a homotetramer with a molecular mass of 33 kDa per subunit, belongs to the protein family of the NAD(+)-dependent L-2-hydroxycarboxylate dehydrogenases. L-HicDH was crystallized with ammonium sulphate as precipitant in the presence of NAD+. The crystals belong to the trigonal space group P3(2)21, with a = 135.9 A and c = 205.9 A, and diffract X-rays to 2.2 A resolution. The crystal structure was solved by Patterson search and molecular replacement techniques and refined to an R-value of 21.4% (2.2 to 8 A). The final structure model contains one NAD+ molecule and one sulphate ion per subunit, with 309 water molecules. An unusual feature of this crystal structure is the deviation of the protein subunits from non-crystallographic symmetry, which is so strong that it can be detected globally by self-rotation calculations in reciprocal space. This asymmetry is especially pronounced in the environment of the active site; it is reflected also in the nicotinamide conformation of NAD+ and allows some conclusions to be drawn about the catalytic mechanism. In this context, an "inner active site loop" is identified as a structural element of fundamental functional importance. Furthermore, with knowledge of the crystal structure of L-HicDH the differences in substrate specificity between L-HicDH and the L-lactate dehydrogenases can be partly explained.

摘要

来自迷惑乳杆菌的L-2-羟基异己酸脱氢酶(L-HicDH)是一种同源四聚体,每个亚基的分子量为33 kDa,属于NAD(+)-依赖性L-2-羟基羧酸盐脱氢酶的蛋白质家族。L-HicDH在NAD+存在下以硫酸铵作为沉淀剂进行结晶。晶体属于三方空间群P3(2)21,a = 135.9 Å,c = 205.9 Å,X射线衍射分辨率为2.2 Å。通过帕特森搜索和分子置换技术解析了晶体结构,并精修至R值为21.4%(2.2至8 Å)。最终的结构模型每个亚基包含一个NAD+分子和一个硫酸根离子,还有309个水分子。该晶体结构的一个不寻常特征是蛋白质亚基偏离非晶体学对称性,这种偏离非常强烈,以至于可以通过倒易空间中的自旋转计算全局检测到。这种不对称性在活性位点环境中尤为明显;它也反映在NAD+的烟酰胺构象中,并允许对催化机制得出一些结论。在这种情况下,一个“内部活性位点环”被确定为具有基本功能重要性的结构元件。此外,基于L-HicDH的晶体结构知识,可以部分解释L-HicDH与L-乳酸脱氢酶之间底物特异性的差异。

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