Makarova Valeria V, Kosourov Sergey, Krendeleva Tatiana E, Semin Boris K, Kukarskikh Galina P, Rubin Andrei B, Sayre Richard T, Ghirardi Maria L, Seibert Michael
National Renewable Energy Laboratory, 1617 Cole Blvd., Golden, CO 80401, USA.
Photosynth Res. 2007 Oct;94(1):79-89. doi: 10.1007/s11120-007-9219-4. Epub 2007 Aug 14.
Photoproduction of H2 was examined in a series of sulfur-deprived Chlamydomonas reinhardtii D1-R323 mutants with progressively impaired PSII photochemical activity. In the R323H, R323D, and R323E D1 mutants, replacement of arginine affects photosystem II (PSII) function, as demonstrated by progressive decreases in O2-evolving activity and loss of PSII photochemical activity. Significant changes in PSII activity were found when the arginine residue was replaced by negatively charged amino acid residues (R323D and R323E). However, the R323H (positively charged or neutral, depending on the ambient pH) mutant had minimal changes in PSII activity. The R323H, R323D, and R323E mutants and the pseudo-wild-type (pWt) with restored PSII function were used to study the effects of sulfur deprivation on H2-production activity. All of these mutants exhibited significant changes in the normal parameters associated with the H2-photoproduction process, such as a shorter aerobic phase, lower accumulation of starch, a prolonged anaerobic phase observed before the onset of H2-production, a shorter duration of H2-production, lower H2 yields compared to the pWt control, and slightly higher production of dark fermentation products such as acetate and formate. The more compromised the PSII photochemical activity, the more dramatic was the effect of sulfur deprivation on the H2-production process, which depends both on the presence of residual PSII activity and the amount of stored starch.
在一系列硫缺乏的莱茵衣藻D1-R323突变体中检测了H2的光产生情况,这些突变体的光系统II(PSII)光化学活性逐渐受损。在R323H、R323D和R323E D1突变体中,精氨酸的替换影响了光系统II(PSII)的功能,这表现为放氧活性逐渐降低以及PSII光化学活性丧失。当精氨酸残基被带负电荷的氨基酸残基(R323D和R323E)取代时,发现PSII活性有显著变化。然而,R323H突变体(根据环境pH值带正电荷或呈中性)的PSII活性变化最小。利用R323H、R323D和R323E突变体以及PSII功能恢复的假野生型(pWt)来研究硫缺乏对H2产生活性的影响。所有这些突变体在与H2光产生过程相关的正常参数方面都表现出显著变化,例如需氧阶段缩短、淀粉积累减少、在H2产生开始前观察到厌氧阶段延长、H2产生持续时间缩短、与pWt对照相比H2产量降低,以及暗发酵产物如乙酸盐和甲酸盐的产量略有增加。PSII光化学活性受损越严重,硫缺乏对H2产生过程的影响就越显著,这既取决于残余PSII活性的存在,也取决于储存淀粉的量。