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来自聚球藻的光系统I反应中心复合物的小亚基。I. 细胞色素c-553氧化需要psaF基因产物吗?

Small subunits of Photosystem I reaction center complexes from Synechococcus elongatus. I. Is the psaF gene product required for oxidation of cytochrome c-553?

作者信息

Hatanaka H, Sonoike K, Hirano M, Katoh S

机构信息

Department of Biology, Faculty of Science, University of Tokyo, Japan.

出版信息

Biochim Biophys Acta. 1993 Feb 8;1141(1):45-51. doi: 10.1016/0005-2728(93)90187-k.

DOI:10.1016/0005-2728(93)90187-k
PMID:8382079
Abstract

Photosystem I (PS I) reaction center complexes isolated from the thermophilic cyanobacterium Synechococcus elongatus with nonionic detergents, digitonin or sucrose monolaurate, contained eight small subunit polypeptides. Two of the small polypeptides were identified by analysis of their N-terminal amino-acid sequences as the psaF and psaE gene products. Treatment with a cationic detergent, cetyltrimethylammonium bromide, resulted in depletion of five small subunits including the psaF gene product. Five PS I complexes isolated with an anionic detergent, sodium dodecylsulfate, contained zero to four small subunits but were all depleted of the psaF polypeptide. The function of the psaF gene product was examined by measuring reduction kinetics of flash-oxidized P-700 in the presence of different concentrations of cytochrome c-553. Oxidized P-700 was rapidly reduced by the reduced cytochrome in all the PS I complexes that contained, at least, the psaC and psaD polypeptides and the second-order rate constants of electron transfer from cytochrome c-553 to P-700 were essentially the same between PS I complexes that contained the psaF polypeptide and those that lost this polypeptide. Thus, the psaF polypeptide is not required for the bimolecular reaction between P-700 and cytochrome c-553. Mg2+ had a moderate stimulating effect on the rate of P-700 reduction whether PS I complexes were associated with the psaF gene product or not. The function of this subunit polypeptide is discussed.

摘要

用非离子去污剂、洋地黄皂苷或蔗糖单月桂酸酯从嗜热蓝藻细长聚球藻中分离得到的光系统I(PS I)反应中心复合物含有8种小亚基多肽。通过对其N端氨基酸序列的分析,鉴定出其中两种小多肽为psaF和psaE基因产物。用阳离子去污剂十六烷基三甲基溴化铵处理导致包括psaF基因产物在内的5种小亚基缺失。用阴离子去污剂十二烷基硫酸钠分离得到的5种PS I复合物含有0至4种小亚基,但都缺失了psaF多肽。通过在不同浓度的细胞色素c-553存在下测量闪光氧化的P-700的还原动力学,研究了psaF基因产物的功能。在所有至少含有psaC和psaD多肽的PS I复合物中,氧化的P-700被还原的细胞色素迅速还原,并且从细胞色素c-553到P-700的电子转移二级速率常数在含有psaF多肽的PS I复合物和缺失该多肽的PS I复合物之间基本相同。因此,P-700与细胞色素c-553之间的双分子反应不需要psaF多肽。无论PS I复合物是否与psaF基因产物相关联,Mg2+对P-700的还原速率都有适度的刺激作用。讨论了该亚基多肽的功能。

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