首页> 美国卫生研究院文献>Scientific Reports >The Effect of Two Amino acid Residue Substitutions via RNA Editing on Dark-operative Protochlorophyllide Oxidoreductase in the Black Pine Chloroplasts
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The Effect of Two Amino acid Residue Substitutions via RNA Editing on Dark-operative Protochlorophyllide Oxidoreductase in the Black Pine Chloroplasts

机译:通过RNA编辑的两个氨基酸残基取代对黑松叶绿体中黑暗操作的原绿叶素氧化还原酶的影响

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摘要

Dark-operative protochlorophyllide oxidoreductase (DPOR) is a key enzyme to produce chlorophyll in the dark. Among photosynthetic eukaryotes, all three subunits chlL, chlN, and chlB are encoded by plastid genomes. In some gymnosperms, two codons of chlB mRNA are changed by RNA editing to codons encoding evolutionarily conserved amino acid residues. However, the effect of these substitutions on DPOR activity remains unknown. We first prepared cyanobacterial ChlB variants with amino acid substitution(s) to mimic ChlB translated from pre-edited mRNA. Their activities were evaluated by measuring chlorophyll content of dark-grown transformants of a chlB-lacking mutant of the cyanobacterium Leptolyngbya boryana that was complemented with pre-edited mimic chlB variants. The chlorophyll content of the transformant cells expressing the ChlB variant from the fully pre-edited mRNA was only one-fourth of the control cells. Co-purification experiments of ChlB with Strep-ChlN suggested that a stable complex with ChlN is greatly impaired in the substituted ChlB variant. We then confirmed that RNA editing efficiency was markedly greater in the dark than in the light in cotyledons of the black pine Pinus thunbergii. These results indicate that RNA editing on chlB mRNA is important to maintain appropriate DPOR activity in black pine chloroplasts.
机译:在黑暗中进行操作的原叶绿素原氧化还原酶(DPOR)是在黑暗中产生叶绿素的关键酶。在光合作用的真核生物中,所有三个亚基chlL,chlN和chlB均由质体基因组编码。在一些裸子植物中,通过RNA编辑将chlB mRNA的两个密码子改变为编码进化上保守的氨基酸残基的密码子。然而,这些取代对DPOR活性的影响仍然未知。我们首先准备了具有氨基酸取代的蓝细菌ChlB变体,以模拟从预编辑的mRNA翻译的ChlB。通过测量缺乏蓝绿色假单胞菌蓝藻的chlB突变体的深色生长转化体的叶绿素含量来评估其活性,该突变体与预先编辑的模拟chlB变体互补。从完全预编辑的mRNA表达ChlB变体的转化细胞的叶绿素含量仅为对照细胞的四分之一。 ChlB与Strep-ChlN的共纯化实验表明,在取代的ChlB变体中与ChlN的稳定复合物大大受损。然后,我们确认黑松针叶松子叶在黑暗中的RNA编辑效率明显高于在光照下的RNA编辑效率。这些结果表明,对chlB mRNA的RNA编辑对于维持黑松叶绿体中适当的DPOR活性很重要。

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