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集胞藻PCC6803中一种新型乙烯还原酶基因的鉴定,其对单乙烯基叶绿素的生物合成至关重要。

Identification of a novel vinyl reductase gene essential for the biosynthesis of monovinyl chlorophyll in Synechocystis sp. PCC6803.

作者信息

Ito Hisashi, Yokono Makio, Tanaka Ryouichi, Tanaka Ayumi

机构信息

Institute of Low Temperature Science, Hokkaido University, Sapporo 060-0819, Japan.

出版信息

J Biol Chem. 2008 Apr 4;283(14):9002-11. doi: 10.1074/jbc.M708369200. Epub 2008 Jan 29.

Abstract

The vast majority of oxygenic photosynthetic organisms use monovinyl chlorophyll for their photosynthetic reactions. For the biosynthesis of this type of chlorophyll, the reduction of the 8-vinyl group that is located on the B-ring of the macrocycle is essential. Previously, we identified the gene encoding 8-vinyl reductase responsible for this reaction in higher plants and termed it DVR. Among the sequenced genomes of cyanobacteria, only several Synechococcus species contain DVR homologues. Therefore, it has been hypothesized that many other cyanobacteria producing monovinyl chlorophyll should contain a vinyl reductase that is unrelated to the higher plant DVR. To identify the cyanobacterial gene that is responsible for monovinyl chlorophyll synthesis, we developed a bioinformatics tool, correlation coefficient calculation tool, which calculates the correlation coefficient between the distributions of a certain phenotype and genes among a group of organisms. The program indicated that the distribution of a gene encoding a putative dehydrogenase protein is best correlated with the distribution of the DVR-less cyanobacteria. We subsequently knocked out the corresponding gene (Slr1923) in Synechocystis sp. PCC6803 and characterized the mutant. The knock-out mutant lost its ability to synthesize monovinyl chlorophyll and accumulated 3,8-divinyl chlorophyll instead. We concluded that Slr1923 encodes the vinyl reductase or a subunit essential for monovinyl chlorophyll synthesis. The function and evolution of 8-vinyl reductase genes are discussed.

摘要

绝大多数产氧光合生物在其光合作用反应中使用单乙烯基叶绿素。对于这种类型叶绿素的生物合成,位于大环B环上的8-乙烯基的还原至关重要。此前,我们在高等植物中鉴定出负责此反应的8-乙烯基还原酶的编码基因,并将其命名为DVR。在已测序的蓝细菌基因组中,只有几种聚球藻属物种含有DVR同源物。因此,有人推测,许多其他产生单乙烯基叶绿素的蓝细菌应该含有一种与高等植物DVR无关的乙烯基还原酶。为了鉴定负责单乙烯基叶绿素合成的蓝细菌基因,我们开发了一种生物信息学工具——相关系数计算工具,该工具可计算一组生物体中特定表型和基因分布之间的相关系数。该程序表明,一个假定的脱氢酶蛋白编码基因的分布与不含DVR的蓝细菌的分布相关性最佳。我们随后在聚球藻属PCC6803中敲除了相应基因(Slr1923)并对突变体进行了表征。敲除突变体失去了合成单乙烯基叶绿素的能力,转而积累3,8-二乙烯基叶绿素。我们得出结论,Slr1923编码乙烯基还原酶或单乙烯基叶绿素合成所必需的一个亚基。文中还讨论了8-乙烯基还原酶基因的功能和进化。

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