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Kinetics of Chlorophyll Accumulation and Formation of Chlorophyll-Protein Complexes during Greening of Chlamydomonas reinhardtii y-1 at 38°C

机译:38°C下莱茵衣藻y-1绿化过程中叶绿素积累和叶绿素-蛋白质复合物形成的动力学

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摘要

The initial kinetics of accumulation of chlorophylls (Chl) were analyzed during optimal greening of Chlamydomonas reinhardtii y-1 at 38°C. Acetate was required for maximal synthesis of Chl, which occurred at a linear rate when degreened cells were exposed to light. During the first hour Chl a and b accumulated predominantly as geranylgeraniol esters, with lesser amounts of the species with more reduced alcohol side chains. When Chl synthesis was blocked either by treatment with gabaculine or by transfer to the dark, the distribution shifted to the more reduced forms. Similar kinetic patterns indicated that a common pool of chlorophyllides a and b provided substrate for the enzymatic system that performs esterification and reduction of the sldechain for each group of Chl. Chl b was essentially quantitatively integrated into light-harvesting complexes as indicated by energy transfer to Chl a. In the presence of cycloheximide, an inhibitor of cytoplasmic protein synthesis, Chl b did not accumulate and Chl a production was reduced about one-half. The results demonstrate that Chl a/b-protein complexes assemble rapidly during greening and that reduction of the alcohol side chain of the Chl is not required for assembly of these complexes.
机译:在38°C下对莱茵衣藻y-1进行最佳绿化期间分析了叶绿素(Chl)积累的初始动力学。乙酸盐是Chl的最大合成所必需的,而Chl的最大合成是在分级细胞暴露于光下时以线性速率发生。在最初的一个小时内,Chl a和b主要以香叶基香叶醇酯的形式积累,而较少数量的物种带有更多还原的醇侧链。当通过加巴豆胆碱处理或转移到黑暗中阻止了Ch1的合成时,分布转移到了更还原的形式。相似的动力学模式表明,叶绿素a和b的共同库为酶系统提供了底物,该酶系统对每组Chl进行了酯化反应和滑环的还原。正如能量转移到Ch1a所表明的那样,Chlb基本上定量地整合到了光收集复合物中。在胞质蛋白合成抑制剂环己酰亚胺的存在下,Chlb未积累,Chla的产量减少了约一半。结果表明,Chl a / b蛋白复合物在绿化期间快速组装,并且不需要Chl醇侧链的还原来组装这些复合物。

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