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Two Closely Related Genes of Arabidopsis Encode Plastidial Cytidinediphosphate Diacylglycerol Synthases Essential for Photoautotrophic Growth

机译:拟南芥的两个紧密相关的基因编码光合自养生长必需的塑料胞嘧啶二磷酸二酰基甘油合成酶。

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摘要

Cytidinediphosphate diacylglycerol synthase (CDS) catalyzes the formation of cytidinediphosphate diacylglycerol, an essential precursor of anionic phosphoglycerolipids like phosphatidylglycerol or -inositol. In plant cells, CDS isozymes are located in plastids, mitochondria, and microsomes. Here, we show that these isozymes are encoded by five genes in Arabidopsis (Arabidopsis thaliana). Alternative translation initiation or alternative splicing of CDS2 and CDS4 transcripts can result in up to 10 isoforms. Most of the cDNAs encoding the various plant isoforms were functionally expressed in yeast and rescued the nonviable phenotype of the mutant strain lacking CDS activity. The closely related genes CDS4 and CDS5 were found to encode plastidial isozymes with similar catalytic properties. Inactivation of both genes was required to obtain Arabidopsis mutant lines with a visible phenotype, suggesting that the genes have redundant functions. Analysis of these Arabidopsis mutants provided further independent evidence for the importance of plastidial phosphatidylglycerol for structure and function of thylakoid membranes and, hence, for photoautotrophic growth.
机译:胞苷二磷酸二酰基甘油合酶(CDS)催化胞苷二磷酸二酰基甘油的形成,这是阴离子磷脂甘油脂(如磷脂酰甘油或肌醇)的重要前体。在植物细胞中,CDS同工酶位于质体,线粒体和微粒体中。在这里,我们显示这些同工酶由拟南芥(Arabidopsis thaliana)中的五个基因编码。 CDS2和CDS4转录本的替代翻译起始或替代剪接可导致多达10个同工型。编码各种植物同工型的大多数cDNA在酵母中功能表达,并挽救了缺乏CDS活性的突变菌株的无生命表型。发现密切相关的基因CDS4和CDS5编码具有相似催化特性的质体同工酶。为了获得具有可见表型的拟南芥突变体,需要两个基因都失活,这表明这些基因具有冗余功能。这些拟南芥突变体的分析提供了进一步的独立证据,表明质体磷脂酰甘油对于类囊体膜的结构和功能以及因此对光自养生长的重要性。

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