Kobayashi Koichi, Mochizuki Nobuyoshi, Yoshimura Naho, Motohashi Ken, Hisabori Toru, Masuda Tatsuru
Department of General Systems Studies, Graduate School of Arts and Sciences, The University of Tokyo, Komaba 3-8-1, Tokyo, 153-8902, Japan.
Photochem Photobiol Sci. 2008 Oct;7(10):1188-95. doi: 10.1039/b802604c. Epub 2008 Jun 9.
The first step of chlorophyll biosynthesis is catalyzed by a Mg-chelatase composed of the subunits CHLI, CHLD and CHLH. Mg-chelatase requires ATP hydrolysis that can be attributed to CHLI. Arabidopsis has two CHLI isoforms, CHLI1 and CHLI2, that have similar expression profiles, but it has been suggested that CHLI2 has limited function in the Mg-chelatase complex. Recently, we showed that Arabidopsis CHLI1 is an ATPase and a target of chloroplast thioredoxin. Here, we demonstrate that CHLI2 also has ATPase activity but with a lower Vmax and higher Km ATP than CHLI1. We confirmed the thioredoxin-dependent reduction of a disulfide bond in CHLI2 and thiol-modulation of its ATPase activity. We then examined the physiological contribution of CHLI2 using a chli2 T-DNA knockout line. Although visible phenotype of homozygous chli2 mutants was almost comparable to wild type, the mutant accumulated significantly less chlorophyll. Furthermore, cs/cs; chli2/chli2 double mutants were almost albino. There were three phenotypes among progenies segregated from the cs/cs; CHLI2/chli2 parent: cs-like pale green, yellow, and almost albino were obtained in the approximate ratio of 1:2:0.7. PCR analysis confirmed that the chli2 mutation is semidominant on a homozygous cs background. These results reveal that although CHLI2 plays a limited role in chlorophyll biosynthesis, this subunit certainly contributes to the assembly of the Mg-chelatase complex.
叶绿素生物合成的第一步由由CHLI、CHLD和CHLH亚基组成的镁螯合酶催化。镁螯合酶需要ATP水解,这可归因于CHLI。拟南芥有两种CHLI同工型,CHLI1和CHLI2,它们具有相似的表达谱,但有人认为CHLI2在镁螯合酶复合物中的功能有限。最近,我们表明拟南芥CHLI1是一种ATP酶,也是叶绿体硫氧还蛋白的靶标。在这里,我们证明CHLI2也具有ATP酶活性,但与CHLI1相比,其Vmax较低,Km ATP较高。我们证实了硫氧还蛋白依赖性地还原CHLI2中的二硫键及其ATP酶活性的硫醇调节。然后,我们使用chli2 T-DNA敲除系研究了CHLI2的生理作用。尽管纯合chli2突变体的可见表型与野生型几乎相当,但突变体积累的叶绿素明显较少。此外,cs/cs; chli2/chli2双突变体几乎是白化苗。从cs/cs; CHLI2/chli2亲本分离的后代中有三种表型:类似cs的淡绿色、黄色和几乎白化苗,其比例约为1:2:0.7。PCR分析证实,chli2突变在纯合cs背景下是半显性的。这些结果表明,尽管CHLI2在叶绿素生物合成中起的作用有限,但该亚基肯定有助于镁螯合酶复合物的组装。