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光系统II D1和D2亚基的一级结构表征

Primary structure characterization of the photosystem II D1 and D2 subunits.

作者信息

Sharma J, Panico M, Shipton C A, Nilsson F, Morris H R, Barber J

机构信息

Wolfson Laboratories, Department of Biochemistry, Imperial College, London, SW7 2AY, United Kingdom.

出版信息

J Biol Chem. 1997 Dec 26;272(52):33158-66. doi: 10.1074/jbc.272.52.33158.

Abstract

Mass spectrometry techniques have been applied in a protein mapping strategy to elucidate the majority of the primary structures of the D1 and D2 proteins present in the photosystem II reaction center. Evidence verifying the post-translational processing of the initiating methionine residue and acetylation of the free amino group, similar to those reported for other higher plant species, are presented for the two subunits from pea plants (Pisum sativum L.). Further covalent modifications observed on the D1 protein include the COOH-terminal processing with a loss of nine amino acids and phosphorylation of Thr2. In addition, the studies reported in this paper provide the first definitive characterization of oxidations on specific amino acids of the D1 and D2 proteins. We believe that these oxidations, and to a much lesser extent the phosphorylations, are major contributors to the heterogeneity observed during the electrospray analysis of the intact subunits reported in the accompanying paper (Sharma, J., Panico, M., Barber, J., and Morris, H. R. (1997) J. Biol. Chem. 272, 33153-33157). Significantly, all of the regions that have been identified as those particularly susceptible to oxidation are anticipated (from current models) to be in close proximity to the redox active components of the photosystem II complex.

摘要

质谱技术已应用于一种蛋白质图谱策略,以阐明光系统II反应中心中存在的D1和D2蛋白的大部分一级结构。本文给出了豌豆(Pisum sativum L.)两个亚基的证据,证实了起始甲硫氨酸残基的翻译后加工以及游离氨基的乙酰化,这与其他高等植物物种的报道类似。在D1蛋白上观察到的进一步共价修饰包括COOH末端九个氨基酸的缺失以及Thr2的磷酸化。此外,本文报道的研究首次明确表征了D1和D2蛋白特定氨基酸上的氧化作用。我们认为,这些氧化作用,以及程度小得多的磷酸化作用,是随附论文(Sharma, J., Panico, M., Barber, J., and Morris, H. R. (1997) J. Biol. Chem. 272, 33153 - 33157)中完整亚基电喷雾分析期间观察到的异质性的主要原因。值得注意的是,所有已确定为特别易受氧化的区域(根据当前模型)预计都紧邻光系统II复合物的氧化还原活性成分。

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