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Carnitine-dependent metabolic activities in Saccharomyces cerevisiae : three carnitine acetyltransferases are essential in a carnitine-dependent strain

机译:酿酒酵母中的肉碱依赖性代谢活动:三个肉碱乙酰转移酶在肉碱依赖性菌株中是必不可少的

摘要

L-Carnitine is required for the transfer of activated acyl-groups across intracellular membranes in eukaryotic organisms. In Saccharomyces cerevisiae, peroxisomal membranes are impermeable to acetyl-CoA, which is produced in the peroxisome when cells are grown on fatty acids as carbon source. In a reversible reaction catalysed by carnitine acetyltransferases (CATs), activated acetyl groups are transferred to carnitine to form acetylcarnitine which can be shuttled across membranes. Here we describe a mutant selection strategy that specifically selects for mutants affected in carnitine-dependent metabolic activities. Complementation of three of these mutants resulted in the cloning of three CAT encoding genes: CAT2, coding for the carnitine acetyltransferase associated with the peroxisomes and the mitochondria; YAT1, coding for the carnitine acetyltransferase, which is presumably associated with the outer mitochondrial membrane, and YER024w (YAT2), which encodes a third, previously unidentified carnitine acetyltransferase. The data also show that (a) L-carnitine and all three CATs are essential for growth on non-fermentable carbon sources in a strain with a disrupted CIT2 gene; (b) Yat2p contributes significantly to total CAT activity when cells are grown on ethanol; and that (c) the carnitine-dependent transfer of activated acetyl groups plays a more important role in cellular processes than previously realised.
机译:左旋肉碱是真核生物中跨细胞内膜转移活化酰基的必需物质。在酿酒酵母中,过氧化物酶体膜对乙酰辅酶A是不可渗透的,当细胞以脂肪酸作为碳源生长时,该酶在过氧化物酶体中产生。在肉碱乙酰基转移酶(CAT)催化的可逆反应中,活化的乙酰基被转移到肉碱中以形成乙酰肉碱,该乙酰肉碱可以跨膜穿梭。在这里,我们描述了一种突变选择策略,该策略专门选择受肉碱依赖性代谢活动影响的突变体。这些突变体中的三个突变体的互补导致三个CAT编码基因的克隆:CAT2,编码与过氧化物酶体和线粒体相关的肉碱乙酰基转移酶; YAT1编码肉碱乙酰基转移酶,可能与线粒体外膜有关; YER024w(YAT2)编码第三种以前未知的肉碱乙酰基转移酶。数据还表明:(a)L-肉碱和所有三种CAT对于在CIT2基因被破坏的菌株中不可发酵的碳源上生长都是必不可少的; (b)当细胞在乙醇上生长时,Yat2p对总CAT活性有显着贡献; (c)肉碱依赖性的活化乙酰基转移在细胞过程中起着比以前认识到的更为重要的作用。

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