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Molecular mechanisms of the resistance to hydrogen peroxide of enzymes involved in the Calvin cycle from halotolerant Chlamydomonas sp W80

机译:卤虫衣藻衣原体sp W80参与加尔文循环的酶对过氧化氢的抗性的分子机制

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摘要

cDNA clones encoding NADP(+) -glyceraldehyde-3-phosphate dehydrogenase (NADP(+)-GAPDH) and sedoheptulose-1,7-bisphosphatase (SBPase) were isolated and characterized from halotolerant Chlamydomonas sp, W80 (C. W80) cells. The cDNA clone for NADP(+)-GAPDH encoded 369 amino acid residues, preceded by the chloroplast transit peptide (37 amino acid residues). The cDNA clone for SBPase encoded 351 amino acids with the chloroplast transit peptide. The activities of NADP(+)-GAPDH and SBPase from C. W80 cells were resistant to H2O2 up to 1 mM, as distinct from spinach chloroplastic thiol-modulated enzymes. The illumination to the dark-adapted cells and dithiothreitol treatment to the crude homogenate had little effect on the activities of NADP(+)-GAPDH and SBPase in C. W80. Modeling of the tertiary structures of NADP(+)-GAPDH and SBPase suggests that resistance of the enzymes to H,(C), in C, W80 is due to the different conformational structures in the vicinity of the Cys residues of the chloroplastic enzymes between higher plant and C. W80 cells. (C) 2001 Academic Press. [References: 50]
机译:分离了编码NADP(+)-甘油醛-3-磷酸脱氢酶(NADP(+)-GAPDH)和sedoheptulose-1,7-双磷酸酶(SBPase)的cDNA克隆,并从耐盐性衣原体W80(C. W80)细胞中进行了鉴定。 NADP(+)-GAPDH的cDNA克隆编码369个氨基酸残基,然后是叶绿体转运肽(37个氨基酸残基)。 SBPase的cDNA克隆用叶绿体转运肽编码351个氨基酸。 C. W80细胞的NADP(+)-GAPDH和SBPase活性最高可耐受1 mM的H2O2,这与菠菜的叶绿素硫醇调节酶不同。暗适应细胞的照明和粗匀浆的二硫苏糖醇处理对C. W80中NADP(+)-GAPDH和SBPase的活性影响很小。 NADP(+)-GAPDH和SBPase的三级结构模型表明,该酶对C,W80中H,(C)的抗性是由于在之间的叶绿体酶Cys残基附近的构象结构不同高等植物和C. W80细胞。 (C)2001学术出版社。 [参考:50]

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