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首页> 外文期刊>Plant Molecular Biology >Characterization of chloroplast psbA transformants of Chlamydomonas reinhardtii with impaired processing of a precursor of a photosystem II reaction center protein, D1
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Characterization of chloroplast psbA transformants of Chlamydomonas reinhardtii with impaired processing of a precursor of a photosystem II reaction center protein, D1

机译:莱茵衣藻叶绿体psbA转化子的表征与光系统II反应中心蛋白D1前体的加工受阻

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One of the photosystem II reaction center proteins, D1, is encoded by the psbA gene and is synthesized as a precursor form with a carboxyl-terminal extension that is subsequently cleaved between Ala-344 and Ser-345. We have generated three psbA transformants of the green alga Chlamydomonas reinhardtii in which Ala-344 or Ser-345 have been substituted with Pro or Glu (A344P, S345E, and S345P) to understand the effects of the amino acid substitutions on the processing of the precursor D1. S345E grew photoautotrophically and showed PSII activity like the wild type. However, A344P and S345P were unable to grow photoautotrophically and were significantly photosensitive. A344P was deficient in the processing of precursor D1 and in oxygen-evolving activity, but assembled photosystem II complex capable of charge separation. In contrast, both precursor and mature forms of D1 accumulated in S345P cells from the logarithmic phase and the cells evolved oxygen at 18% of wild-type level. However, S345P cells from the stationary phase contained mostly the mature D1 and showed a twofold increase in oxygen-evolving activity. The rate of processing of the accumulated pD1 was estimated to be about 100 times slower than in the wild type. It is therefore concluded that the functional oxygen-evolving complex is assembled when the precursor D1 is processed, albeit at a very low rate. These results suggest the functional significance of the amino acid residues at the processing site of the precursor D1. [References: 35]
机译:光系统II反应中心蛋白之一D1由psbA基因编码,并合成为具有羧基末端延伸的前体形式,随后在Ala-344和Ser-345之间裂解。我们已经生成了三个绿藻衣藻衣藻的psbA转化体,其中Ala-344或Ser-345已被Pro或Glu取代(A344P,S345E和S345P),以了解氨基酸取代对Ala-344或S345P加工的影响。前体D1。 S345E光合自养,并表现出与野生型相似的PSII活性。但是,A344P和S345P无法自养生长,并且具有显着的光敏性。 A344P在前体D1的处理和放氧活性方面是不足的,但是组装的光系统II复合物能够进行电荷分离。相反,D1的前体形式和成熟形式都从对数期开始积累在S345P细胞中,并且细胞以野生型水平的18%释放出氧气。但是,来自固定相的S345P细胞主要包含成熟的D1,并且显示出放氧活性增加了两倍。估计积累的pD1的加工速度比野生型慢约100倍。因此得出的结论是,尽管前体D1的加工速度非常低,但功能性的析氧复合物仍在加工时组装。这些结果表明在前体D1的加工位点的氨基酸残基的功能意义。 [参考:35]

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