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首页> 外文期刊>Plant and Cell Physiology >Absence of the PsbZ Subunit Prevents Association of PsbK and Ycf12 with the PSII Complex in the Thermophilic Cyanobacterium Thermosynechococcus elongatus BP-1
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Absence of the PsbZ Subunit Prevents Association of PsbK and Ycf12 with the PSII Complex in the Thermophilic Cyanobacterium Thermosynechococcus elongatus BP-1

机译:PsbZ亚基的缺乏阻止嗜热蓝细菌嗜热嗜蓝球菌BP-1中PsbK和Ycf12与PSII复合物的关联。

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摘要

PsbZ (Ycf9) is a membrane protein of PSII complexes and is highly conserved from cyanobacteria to plants. We deleted the psbZ gene in the thermophilic cyanobacterium, Thermosynechococcus elongatus. The mutant cells showed photoautotrophic growth indistinguishable from that of the wild type under low and standard light conditions, while they showed even better growth than the wild type under high light. The mutant accumulated less carotenoids and more phycobiliproteins than the wild type under high light, suggestive of tolerance to photoinhibition. The mutant cells evolved oxygen at a rate comparable with the wild type, while the PSII complex isolated from the mutant retained much lower activity than the wild type. N-terminal sequencing revealed that Ycf12 and PsbK proteins were almost lost in the PSII complex. These results indicate that PsbZ is involved in functional integrity of the PSII complex by stabilizing PsbK and Ycf12. We suggest that Ycf12 is an unidentified membrane-spanning polypeptide that is placed near PsbZ and PsbK in the crystal structure of PSII.
机译:PsbZ(Ycf9)是PSII复合物的膜蛋白,从蓝细菌到植物高度保守。我们删除了嗜热蓝藻中的psbZ基因,即嗜热嗜热球菌。突变细胞在弱光和标准光照条件下显示出与野生型无区别的光合自养生长,而在强光下它们显示出比野生型更好的生长。在强光下,该突变体比野生型积累更少的类胡萝卜素和更多的藻胆蛋白,提示其对光抑制的耐受性。突变细胞以与野生型相当的速率释放出氧气,而从突变体中分离出的PSII复合物保留的活性比野生型低得多。 N端测序表明,Ycf12和PsbK蛋白几乎在PSII复合物中丢失。这些结果表明,PsbZ通过稳定PsbK和Ycf12参与PSII复合物的功能完整性。我们建议,Ycf12是一种未知的跨膜多肽,位于PSII晶体结构中的PsbZ和PsbK附近。

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  • 来源
    《Plant and Cell Physiology》 |2007年第12期|1758-1763|共6页
  • 作者单位

    Department of Applied Biological Science Faculty of Science and Technology Tokyo University of Science Yamazaki 2641 Noda Chiba 278-8510 Japan;

    Tissue Engineering Research Center Research Institute of Biological Science Tokyo University of Science Yamazaki 2641 Noda Chiba 278-8510 Japan;

    Biomolecular Characterization Team Advanced Development and Supporting Center The Institute of Physical and Chemical Research (RIKEN) Hirosawa 2-1 Wako Saitama 351-0198 Japan and;

    Department of Life Sciences (Biology) University of Tokyo Komaba 3-8-1 Meguro Tokyo 153-8902 Japan;

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