Jensen P E, Willows R D, Petersen B L, Vothknecht U C, Stummann B M, Kannangara C G, von Wettstein D, Henningsen K W
Department of Ecology and Molecular Biology, Royal Veterinary and Agricultural University, Frederiksberg C, Denmark.
Mol Gen Genet. 1996 Mar 7;250(4):383-94. doi: 10.1007/BF02174026.
Barley mutants in the loci Xantha-f, Xantha-g and Xantha-h, when fed with 5-aminolevulinate in the dark, accumulate protoporphyrin IX. Mutant alleles at these loci that are completely blocked in protochlorophyllide synthesis are also blocked in development of prolamellar bodies in etioplasts. In contrast to wild type, the xan-f, -g and -h mutants had no detectable Mg-chelatase activity, whereas they all had methyltransferase activity for synthesis of Mg-protoporphyrin monomethyl ester. Antibodies recognising the CH42 protein of Arabidopsis thaliana and the OLIVE (OLI) protein of Antirrhinum majus immunoreacted in wild-type barley with 42 and 150 kDa proteins, respectively. The xan-h mutants lacked the protein reacting with antibodies raised against the CH42 protein. Two xan-f mutants lacked the 150 kDa protein recognised by the anti-OLI antibody. Barley genes homologous to the A. majus olive and the A. thaliana Ch-42 genes were cloned using PCR and screening of cDNA and genomic libraries. Probes for these genes were applied to Northern blots of RNA from the xantha mutants and confirmed the results of the Western analysis. The mutants xan-f27, -f40, -h56 and -h57 are defective in transcript accumulation while -h38 is defective in translation. Southern blot analysis established that h38 has a deletion of part of the gene. Mutants xan-f10 and -f41 produce both transcript and protein and it is suggested that these mutations are in the catalytic sites of the protein. It is concluded that X an-f -h genes encode two subunits of the barley Mg-chelatase and that X an-g is likely to encode a third subunit. The XAN-F protein displays 82% amino acid sequence identity to the OLI protein of Antirrhinum, 66% to the Synechocystis homologue and 34% identity to the Rhodobacter BchH subunit of Mg-chelatase. The XAN-H protein has 85% amino acid sequence identity to the Arabidopsis CH42 protein, 69% identity to the Euglena CCS protein, 70% identity to the Cryptomonas BchA and Olisthodiscus CssA proteins, as well as 49% identity to the Rhodobacter BchI subunit of Mg-chelatase. Identification of the barley X an-f and X an-h encoded proteins as subunits required for Mg-chelatase activity supports the notion that the Antirrhinum OLI protein and the Arabidopsis Ch42 protein are subunits of Mg-chelatase in these plants. The expression of both thet X an-f and -h genes in wild-type barley is light induced in leaves of greening seedlings, and in green tissue the genes are under the control of a circadian clock.
大麦Xantha-f、Xantha-g和Xantha-h位点的突变体在黑暗中饲喂5-氨基乙酰丙酸时,会积累原卟啉IX。这些位点上在原叶绿素酸酯合成中完全受阻的突变等位基因在黄化质体中片层体的发育也受阻。与野生型相比,xan-f、-g和-h突变体没有可检测到的镁螯合酶活性,而它们都具有合成镁原卟啉单甲酯的甲基转移酶活性。识别拟南芥CH42蛋白和金鱼草OLIVE(OLI)蛋白的抗体分别在野生型大麦中与42 kDa和150 kDa的蛋白发生免疫反应。xan-h突变体缺乏与针对CH42蛋白产生的抗体发生反应的蛋白。两个xan-f突变体缺乏抗OLI抗体识别的150 kDa蛋白。利用PCR以及cDNA和基因组文库筛选,克隆了与金鱼草olive和拟南芥Ch-42基因同源的大麦基因。将这些基因的探针应用于来自xantha突变体的RNA的Northern印迹分析,证实了蛋白质印迹分析的结果。突变体xan-f27、-f40、-h56和-h57在转录本积累方面存在缺陷,而-h38在翻译方面存在缺陷。Southern印迹分析表明h38基因有部分缺失。突变体xan-f10和-f41既产生转录本又产生蛋白质,推测这些突变位于该蛋白的催化位点。得出的结论是,Xan-f -h基因编码大麦镁螯合酶的两个亚基,而Xan-g可能编码第三个亚基。XAN-F蛋白与金鱼草的OLI蛋白的氨基酸序列一致性为82%,与集胞藻的同源物一致性为66%,与镁螯合酶的红杆菌BchH亚基一致性为34%。XAN-H蛋白与拟南芥CH42蛋白的氨基酸序列一致性为85%,与眼虫CCS蛋白一致性为69%,与隐滴虫BchA和奥利斯盘藻CssA蛋白一致性为70%,与镁螯合酶的红杆菌BchI亚基一致性为49%。将大麦Xan-f和Xan-h编码的蛋白鉴定为镁螯合酶活性所需的亚基,支持了金鱼草OLI蛋白和拟南芥Ch42蛋白是这些植物中镁螯合酶亚基的观点。野生型大麦中Xan-f和-h基因的表达在绿化幼苗的叶片中受光诱导,在绿色组织中这些基因受生物钟控制。