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首页> 外文期刊>Journal of bacteriology >Functional redundancy of CDP-ethanolamine and CDP-choline pathway enzymes in phospholipid biosynthesis: ethanolamine-dependent effects on steady-state membrane phospholipid composition in Saccharomyces cerevisiae.
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Functional redundancy of CDP-ethanolamine and CDP-choline pathway enzymes in phospholipid biosynthesis: ethanolamine-dependent effects on steady-state membrane phospholipid composition in Saccharomyces cerevisiae.

机译:CDP-乙醇胺和CDP-胆碱途径酶在磷脂生物合成中的功能冗余:乙醇胺对酿酒酵母稳态膜磷脂成分的依赖性。

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摘要

It has been established that yeast membrane phospholipid content is responsive to the inositol and choline content of the growth medium. Alterations in the levels of transcription of phospholipid biosynthetic enzymes contribute significantly to this response. We now describe conditions under which ethanolamine can exert significant influence on yeast membrane phospholipid composition. We demonstrate that mutations which block a defined subset of the reactions required for the biosynthesis of phosphatidylcholine (PC) via the CDP-choline pathway cause ethanolamine-dependent effects on the steady-state levels of bulk PC in yeast membranes. Such an ethanolamine-dependent reduction in bulk membrane PC content was observed for both choline kinase (cki) and choline phosphotransferase (cpt1) mutants, but it was not observed for mutants defective in cholinephosphate cytidylyltransferase, the enzyme that catalyzes the penultimate reaction of the CDP-choline pathway for PC biosynthesis. Moreover, the ethanolamine effect observed for cki and cpt1 mutants was independent of the choline content of the growth medium. Finally, we found that haploid yeast strains defective in the activity of both the choline and ethanolamine phosphotransferases experienced an ethanolamine-insensitive reduction in steady-state PC content, an effect which was not observed in strains defective in either one of these activities alone. The collective data indicate that specific enzymes of the CDP-ethanolamine pathway for phosphatidylethanolamine biosynthesis, while able to contribute to PC synthesis when yeast cells are grown under conditions of ethanolamine deprivation, do not do so when yeast cells are presented with this phospholipid headgroup precursor.
机译:已经确定酵母膜磷脂含量对生长培养基的肌醇和胆碱含量有响应。磷脂生物合成酶的转录水平的改变大大促进了这种反应。现在我们描述乙醇胺可以对酵母膜磷脂成分产生重大影响的条件。我们证明突变阻止通过CDP-胆碱途径生物合成磷脂酰胆碱(PC)所需的反应的定义的子集的突变引起乙醇胺依赖的影响酵母膜上的大量PC的稳态水平。胆碱激酶(cki)和胆碱磷酸转移酶(cpt1)突变体均观察到这种依赖乙醇胺的整体膜P​​C含量降低,但对于胆碱磷酸胞嘧啶转移酶(催化CDP倒数第二反应的酶)有缺陷的突变体则未观察到。 PC合成的胆碱途径。此外,对cki和cpt1突变体观察到的乙醇胺效应与生长培养基的胆碱含量无关。最后,我们发现在胆碱和乙醇胺磷酸转移酶活性方面均存在缺陷的单倍体酵母菌株在稳态PC含量方面发生了乙醇胺不敏感的降低,仅在这些活性中的任一种缺陷的菌株中均未观察到这种作用。收集的数据表明,用于磷脂酰乙醇胺生物合成的CDP-乙醇胺途径的特定酶,虽然在乙醇胺缺乏的条件下生长酵母细胞时能够促进PC合成,但是当酵母细胞带有这种磷脂头基前体时却不能做到这一点。

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