Institute of Low Temperature Science, Hokkaido University, Sapporo 060-0819, Japan.
Plant Cell. 2011 Sep;23(9):3442-53. doi: 10.1105/tpc.111.089714. Epub 2011 Sep 20.
The interconversion of chlorophyll a and chlorophyll b, referred to as the chlorophyll cycle, plays a crucial role in the processes of greening, acclimation to light intensity, and senescence. The chlorophyll cycle consists of three reactions: the conversions of chlorophyll a to chlorophyll b by chlorophyllide a oxygenase, chlorophyll b to 7-hydroxymethyl chlorophyll a by chlorophyll b reductase, and 7-hydroxymethyl chlorophyll a to chlorophyll a by 7-hydroxymethyl chlorophyll a reductase. We identified 7-hydroxymethyl chlorophyll a reductase, which is the last remaining unidentified enzyme of the chlorophyll cycle, from Arabidopsis thaliana by genetic and biochemical methods. Recombinant 7-hydroxymethyl chlorophyll a reductase converted 7-hydroxymethyl chlorophyll a to chlorophyll a using ferredoxin. Both sequence and biochemical analyses showed that 7-hydroxymethyl chlorophyll a reductase contains flavin adenine dinucleotide and an iron-sulfur center. In addition, a phylogenetic analysis elucidated the evolution of 7-hydroxymethyl chlorophyll a reductase from divinyl chlorophyllide vinyl reductase. A mutant lacking 7-hydroxymethyl chlorophyll a reductase was found to accumulate 7-hydroxymethyl chlorophyll a and pheophorbide a. Furthermore, this accumulation of pheophorbide a in the mutant was rescued by the inactivation of the chlorophyll b reductase gene. The downregulation of pheophorbide a oxygenase activity is discussed in relation to 7-hydroxymethyl chlorophyll a accumulation.
叶绿素 a 和叶绿素 b 的相互转化,即叶绿素循环,在植物的变绿、对光强的适应和衰老过程中起着关键作用。叶绿素循环由三个反应组成:叶绿素 a 被叶绿素酶转化为叶绿素 b,叶绿素 b 被叶绿素 b 还原酶转化为 7-羟甲基叶绿素 a,7-羟甲基叶绿素 a 被 7-羟甲基叶绿素 a 还原酶转化为叶绿素 a。我们通过遗传和生化方法从拟南芥中鉴定出 7-羟甲基叶绿素 a 还原酶,这是叶绿素循环中最后一个未被鉴定的酶。重组的 7-羟甲基叶绿素 a 还原酶使用铁氧还蛋白将 7-羟甲基叶绿素 a 转化为叶绿素 a。序列和生化分析均表明,7-羟甲基叶绿素 a 还原酶含有黄素腺嘌呤二核苷酸和铁硫中心。此外,系统发育分析阐明了 7-羟甲基叶绿素 a 还原酶从二乙烯基叶绿素 a 乙烯还原酶的进化。发现缺失 7-羟甲基叶绿素 a 还原酶的突变体积累 7-羟甲基叶绿素 a 和原脱镁叶绿酸 a。此外,该突变体中积累的原脱镁叶绿酸 a 可以通过失活叶绿素 b 还原酶基因得到挽救。还讨论了与 7-羟甲基叶绿素 a 积累相关的原脱镁叶绿酸 a 加氧酶活性的下调。