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Subunit structure, function and organisation of pyruvate decarboxylases from various organisms

机译:来自各种生物的丙酮酸脱羧酶的亚基结构,功能和组织

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The nature of the environment of macromolecules influences and determines the state of their overall structure and the extent of binding of specific (cofactors, substrates) or unspecific ligands. How these interactions between enzyme molecules and ligands influence their quaternary structures and, in this way, the realisation of high catalytic activity will be discussed here for the enzyme pyruvate decarboxylase from various organisms: brewer's yeast, brewer's yeast strain, recombinant wild type and site-specific mutants of Saccharomyces cerevisiae, the recombinant wild type of the bacterium Zymomonas mobilis and germinating seeds of the plant Pisum sativum from a structural point of view including both high resolution models from crystal structure analysis and low resolution models from small angle X-ray solution scattering with synchrotron radiation.
机译:大分子环境的性质会影响并确定其整体结构的状态以及特定(辅助因子,底物)或非特异性配体的结合程度。酶分子和配体之间的这些相互作用如何影响它们的四级结构,并以此方式,针对来自以下生物体的丙酮酸脱羧酶进行高催化活性的实现:啤酒酵母,啤酒酵母菌株,重组野生型和位点从结构的角度来看,酿酒酵母的特定突变体,运动发酵单胞菌和植物Pisum sativum的发芽种子的重组野生型包括晶体结构分析的高分辨率模型和小角度X射线溶液散射的低分辨率模型具有同步辐射。

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