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Re-characterisation of Saccharomyces cerevisiae Ach1p: fungal CoA-transferases are involved in acetic acid detoxification

机译:酿酒酵母Ach1p的重新表征:真菌CoA转移酶参与乙酸解毒

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Saccharomyces cerevisiae and Neurospora crassa mutants defective in the so-called acetyl-CoA hydrolases Ach1p and Acu-8, respectively, display a severe growth defect on acetate, which is most strongly pronounced under acidic conditions. Acetyl-CoA hydrolysis is an energy wasting process and therefore denoted as a biochemical conundrum. Acetyl-CoA hydrolases show high sequence identity to the CoA-transferase CoaT from Aspergillus nidulans. Therefore, we extensively re-characterised the yeast enzyme. Ach1p showed highest specific activity for the CoASH transfer from succinyl-CoA to acetate and only a minor acetyl-CoA-hydrolase activity. Complementation of an ach1 mutant with the coaT gene reversed the growth defect on acetate confirming the in vivo function of Ach1p as a CoA-transferase. Our results imply that Ach1p is involved in mitochondrial acetate detoxification by a CoASH transfer from succinyl-CoA to acetate. Thereby, Ach1p does not perform the energy wasting hydrolysis of acetyl-CoA but conserves energy by the detoxification of mitochondrial acetate.
机译:在所谓的乙酰辅酶A水解酶Ach1p和Acu-8中分别有缺陷的酿酒酵母和神经孢霉突变体在乙酸盐上显示出严重的生长缺陷,这在酸性条件下最明显。乙酰辅酶A水解是一种能源浪费过程,因此被称为生化难题。乙酰辅酶A水解酶与来自构巢曲霉的辅酶A转移酶CoaT具有高度序列同一性。因此,我们广泛地重新表征了酵母酶。 Ach1p对CoASH从琥珀酰辅酶A转移至乙酸盐显示出最高的比活,而乙酰辅酶A水解酶的活性却很小。 ach1突变体与coaT基因的互补逆转了醋酸盐上的生长缺陷,从而证实了Ach1p作为CoA转移酶的体内功能。我们的结果表明,Ach1p通过从琥珀酰辅酶A到乙酸盐的CoASH转移参与了线粒体乙酸盐的解毒。因此,Ach1p不会执行浪费能量的乙酰辅酶A水解,而是通过线粒体乙酸酯的解毒来节省能量。

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