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The sulfur atoms of the substrate CoA and the catalytic cysteine are required for a productive mode of substrate binding in bacterial biosynthetic thiolase, a thioester-dependent enzyme

机译:底物CoA和催化半胱氨酸的硫原子是细菌生物合成硫解酶(一种硫酯依赖性酶)中底物结合的生产方式所必需的

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摘要

Thioesters are more reactive than oxoesters, and thioester chemistry is important for the reaction mechanisms of many enzymes, including the members of the thiolase superfamily, which play roles in both degradative and biosynthetic pathways. In the reaction mechanism of the biosynthetic thiolase, the thioester moieties of acetyl-CoA and the acetylated catalytic cysteine react with each other, forming the product acetoacetyl-CoA. Although a number of studies have been carried out to elucidate the thiolase reaction mechanism at the atomic level, relatively little is known about the factors determining the affinity of thiolases towards their substrates. We have carried out crystallographic studies on the biosynthetic thiolase from Zoogloea ramigera complexed with CoA and three of its synthetic analogues to compare the binding modes of these related compounds. The results show that both the CoA terminal SH group and the side chain SH group of the catalytic Cys89 are crucial for the correct positioning of substrate in the thiolase catalytic pocket. Furthermore, calorimetric assays indicate that the mutation of Cys89 into an alanine significantly decreases the affinity of thiolase towards CoA. Thus, although the sulfur atom of the thioester moiety is important for the reaction mechanism of thioester-dependent enzymes, its specific properties can also affect the affinity and competent mode of binding of the thioester substrates to these enzymes.
机译:硫酯比氧酯更具反应性,硫酯化学对于许多酶的反应机制很重要,包括硫解酶超家族成员,它们在降解和生物合成途径中均起着作用。在生物合成硫解酶的反应机理中,乙酰基-CoA的硫酯部分与乙酰化的催化半胱氨酸彼此反应,形成了乙酰乙酰基-CoA产物。尽管已经进行了许多研究以阐明原子水平上的硫解酶反应机理,但是对于确定硫解酶对其底物的亲和力的因素知之甚少。我们已经对与CoA及其三个合成类似物复合的圆球动员动物的生物合成硫解酶进行了晶体学研究,以比较这些相关化合物的结合方式。结果表明,催化Cys89的CoA末端SH基团和侧链SH基团都对底物在硫解酶催化口袋中的正确定位至关重要。此外,量热分析表明,Cys89突变为丙氨酸会大大降低硫解酶对CoA的亲和力。因此,尽管硫酯部分的硫原子对于硫酯依赖性酶的反应机理很重要,但其特殊性质也会影响硫酯底物与这些酶的亲和力和结合方式。

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