首页> 美国卫生研究院文献>Journal of Bacteriology >Competitive Inhibitions of the Chlorophyll Synthase of Synechocystis sp. Strain PCC 6803 by Bacteriochlorophyllide a and the Bacteriochlorophyll Synthase of Rhodobacter sphaeroides by Chlorophyllide a
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Competitive Inhibitions of the Chlorophyll Synthase of Synechocystis sp. Strain PCC 6803 by Bacteriochlorophyllide a and the Bacteriochlorophyll Synthase of Rhodobacter sphaeroides by Chlorophyllide a

机译:竞争抑制的Synechocystis sp。的叶绿素合酶。细菌叶绿素a的PCC 6803菌株和叶绿素a的球形红球菌的细菌叶绿素合酶

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摘要

The photosynthetic growth of Synechocystis sp. strain PCC 6803 is hampered by exogenously added bacteriochlorophyllide a (Bchlide a) in a dose-dependent manner. The growth inhibition caused by Bchlide a, however, is relieved by an increased level of exogenously added chlorophyllide a (Chlide a). The results are explained by the competitive inhibition of chlorophyll synthase by Bchlide a, with inhibition constants (KIs) of 0.3 mM and 1.14 mM in the presence of sufficient geranylgeranyl pyrophosphate (GGPP) and phytyl pyrophosphate (PPP), respectively. Surprisingly, the bacteriochlorophyll synthase of Rhodobacter sphaeroides is inhibited competitively by Chlide a, with KIs of 0.54 mM and 0.77 mM in the presence of sufficient GGPP and PPP, respectively. Consistently, exogenously added Chlide a inhibits the metabolic conversion of exogenously added Bchlide a to bacteriochlorophyll a by an R. sphaeroides bchFNB-bchZ mutant that neither synthesizes nor metabolizes Chlide a. The metabolic inhibition by Chlide a, however, is relieved by the elevated level of Bchlide a. Thus, the chlorophyll synthase of Synechocystis sp. PCC 6803 and the bacteriochlorophyll synthase of R. sphaeroides, both of which perform ping-pong-type reactions, are inhibited by Bchlide a and Chlide a, respectively. Although neither inhibitor is catalyzed by the target enzyme, inhibitions in the competitive mode suggest a structural similarity between their active sites.
机译:蓝藻的光合生长。菌株PCC 6803受剂量依赖性方式外源添加细菌叶绿素a(Bchlide a)的阻碍。但是,由于外源添加的叶绿素a(含量较高)的含量增加,可减轻由bchlide a引起的生长抑制。结果由Bchlide a对叶绿素合酶的竞争性抑制来解释,在足够的香叶基香叶基香叶基焦磷酸酯(GGPP)和植酸基焦磷酸酯(PPP)的存在下,抑制常数(KIs)分别为0.3 mM和1.14 mM。令人惊讶的是,在足够的GGPP和PPP的存在下,球形变红杆菌的细菌叶绿素合酶被氯化物a竞争性抑制,KI分别为0.54 mM和0.77 mM。一致地,外源添加的Chlide a抑制了既不合成也不代谢Ch.a的球状芽孢杆菌bchFNB-bchZ突变体将外源添加的Bchlide a代谢为细菌叶绿素a。但是,Bchlide a 的升高可缓解Chlide a 对代谢的抑制作用。因此, Synechocystis sp。的叶绿素合酶。 PCC 6803和 R的细菌叶绿素合酶。均发生乒乓球型反应的sphaeroides 分别受到Bchlide a 和Chlide a 的抑制。尽管两种抑制剂均不受靶酶催化,但竞争模式的抑制作用表明它们的活性位点之间存在结构相似性。

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