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首页> 外文期刊>Plant physiology >HCF243 encodes a chloroplast-localized protein involved in the D1 protein stability of the Arabidopsis Photosystem II complex
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HCF243 encodes a chloroplast-localized protein involved in the D1 protein stability of the Arabidopsis Photosystem II complex

机译:HCF243编码参与拟南芥光系统II复合物D1蛋白稳定性的叶绿体定位蛋白

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摘要

Numerous auxiliary nuclear factors have been identified to be involved in the dynamics of the photosystem II (PSII) complex. In this study, we characterized the high chlorophyll fluorescence243 (hcf243) mutant of Arabidopsis (Arabidopsis thaliana), which shows higher chlorophyll fluorescence and is severely deficient in the accumulation of PSII supercomplexes compared with the wild type. The amount of core subunits was greatly decreased, while the outer antenna subunits and other subunits were hardly affected in hcf243. In vivo protein-labeling experiments indicated that the synthesis rate of both D1 and D2 proteins decreased severely in hcf243, whereas no change was found in the rate of other plastid-encoded proteins. Furthermore, the degradation rate of the PSII core subunit D1 protein is higher in hcf243 than in the wild type, and the assembly of PSII is retarded significantly in the hcf243 mutant. HCF243, a nuclear gene, encodes a chloroplast protein that interacts with the D1 protein. HCF243 homologs were identified in angiosperms with one or two copies but were not found in lower plants and prokaryotes. These results suggest that HCF243, which arose after the origin of the higher plants, may act as a cofactor to maintain the stability of D1 protein and to promote the subsequent assembly of the PSII complex.
机译:已确定许多辅助核因子与光系统II(PSII)复合体的动力学有关。在这项研究中,我们表征了拟南芥(Arabidopsis thaliana)的高叶绿素荧光243(hcf243)突变体,该突变体显示出较高的叶绿素荧光,并且与野生型相比严重缺乏PSII超复合物的积累。核心亚基的数量大大减少,而外天线亚基和其他亚基在hcf243中几乎不受影响。体内蛋白质标记实验表明,hcf243中D1和D2蛋白质的合成速率均大大降低,而其他质体编码蛋白质的速率未发现变化。此外,hcf243中PSII核心亚基D1蛋白的降解速率高于野生型,并且hcf243突变体中PSII的装配明显受阻。 HCF243是一种核基因,编码与D1蛋白相互作用的叶绿体蛋白。在被子植物中鉴定出一两个拷贝的HCF243同源物,但在低等植物和原核生物中未发现。这些结果表明,高等植物起源后出现的HCF243可以作为辅助因子来维持D1蛋白的稳定性并促进随后的PSII复合物的组装。

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