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Mitochondrial Carnitine-Dependent Acetyl Coenzyme A Transport Is Required for Normal Sexual and Asexual Development of the Ascomycete Gibberella zeae

机译:线粒体肉碱依赖性乙酰辅酶A转运是必需的子囊性赤霉菌的正常性和无性发育。

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摘要

Fungi have evolved efficient metabolic mechanisms for the exact temporal (developmental stages) and spatial (organelles) production of acetyl coenzyme A (acetyl-CoA). We previously demonstrated mechanistic roles of several acetyl-CoA synthetic enzymes, namely, ATP citrate lyase and acetyl-CoA synthetases (ACSs), in the plant-pathogenic fungus Gibberella zeae. In this study, we characterized two carnitine acetyltransferases (CATs; CAT1 and CAT2) to obtain a better understanding of the metabolic processes occurring in G. zeae. We found that CAT1 functioned as an alternative source of acetyl-CoA required for lipid accumulation in an ACS1 deletion mutant. Moreover, deletion of CAT1 and/or CAT2 resulted in various defects, including changes to vegetative growth, asexual/sexual development, trichothecene production, and virulence. Although CAT1 is associated primarily with peroxisomal CAT function, mislocalization experiments showed that the role of CAT1 in acetyl-CoA transport between the mitochondria and cytosol is important for sexual and asexual development in G. zeae. Taking these data together, we concluded that G. zeae CATs are responsible for facilitating the exchange of acetyl-CoA across intracellular membranes, particularly between the mitochondria and the cytosol, during various developmental stages.
机译:真菌已发展出有效的代谢机制,用于确切的时间(发育阶段)和空间(细胞器)产生乙酰辅酶A(乙酰辅酶A)。我们以前证明了几种乙酰-CoA合成酶的机械作用,即植物病原性真菌赤霉菌中的ATP柠檬酸裂解酶和乙酰-CoA合成酶(ACS)。在这项研究中,我们表征了两种肉碱乙酰基转移酶(CAT; CAT1和CAT2),以更好地了解玉米中发生的代谢过程。我们发现,CAT1充当ACS1缺失突变体中脂质积累所需的乙酰辅酶A的替代来源。此外,CAT1和/或CAT2的缺失导致各种缺陷,包括营养生长,无性/性发育,单端孢菌素产生和毒力的改变。尽管CAT1主要与过氧化物酶体CAT功能有关,但定位错误的实验表明CAT1在线粒体和胞质溶胶之间乙酰辅酶A转运中的作用对于玉米的性和无性发育很重要。综合这些数据,我们得出结论,在不同的发育阶段,G.zeae CAT负责促进跨细胞内膜,尤其是线粒体和细胞质之间的乙酰辅酶A交换。

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