Mi H, Deng Y, Tanaka Y, Hibino T, Takabe T
Shanghai Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 300 Fenglin Road, Shanghai, 200032, China,
Photosynth Res. 2001;70(2):167-73. doi: 10.1023/A:1017946524199.
Illumination of the dark-incubated cells of Synechocystis PCC6803 caused recovery of both respiratory activity of oxygen uptake and PS I-cyclic electron flow, which was monitored by the dark reduction of P700(+) in the presence of DCMU after a 50 ms pulse light (MT) under background far-red light, but the effects were much smaller in those of the mutant M55, which has an ndh-B defective gene. Activity of an NADPH-NBT oxidoreductase with a higher molecular mass (around 380 kDa), which was only found in wild type but not in M55, became evident after the dark-incubated cells were exposed to the light. Immuno-blotting analysis indicated that the NADPH-NBT oxidoreductase contains the NdhB subunit of NDH. The expression of NdhB decreased in dark-incubated cells and increased upon transfer of the cells back to light. These results indicate that an NADPH-specific NDH participates in the light-regulated cyclic electron transport around Photosystem I as well as in respiratory electron transport to the intersystem chain in Synechocystis 6803.
对黑暗中培养的集胞藻PCC6803细胞进行光照后,氧气摄取的呼吸活性和PS I循环电子流均得以恢复,这是通过在背景远红光下50毫秒脉冲光(MT)照射后,在DCMU存在的情况下P700(+)的暗还原进行监测的,但在具有ndh - B缺陷基因的突变体M55中,这些效应要小得多。一种分子量较高(约380 kDa)的NADPH - NBT氧化还原酶的活性,仅在野生型中发现而在M55中未发现,在黑暗培养的细胞暴露于光照后变得明显。免疫印迹分析表明,NADPH - NBT氧化还原酶含有NDH的NdhB亚基。NdhB的表达在黑暗培养的细胞中降低,而在细胞重新转移到光照下时增加。这些结果表明,一种NADPH特异性NDH参与了集胞藻6803中围绕光系统I的光调节循环电子传递以及向电子传递链间的呼吸电子传递。