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首页> 外文期刊>Nucleic Acids Research >Mutagenesis of a light-regulated psbA intron reveals the importance of efficient splicing for photosynthetic growth
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Mutagenesis of a light-regulated psbA intron reveals the importance of efficient splicing for photosynthetic growth

机译:光调节的psbA内含子的诱变揭示了有效剪接对光合作用生长的重要性

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The chloroplast-encoded psbA gene encodes the D1 polypeptide of the photosystem II reaction center, which is synthesized at high rates in the light. In Chlamydomonas reinhardtii, the psbA gene contains four self-splicing group I introns whose rates of splicing in vivo are increased at least 6-10-fold by light. However, because psbA is an abundant mRNA, and some chloroplast mRNAs appear to be in great excess of what is needed to sustain translation rates, the developmental significance of light-promoted splicing has not been clear. To address this and other questions, potentially destabilizing substitutions were made in several predicted helices of the fourth psbA intron, Cr.psbA4, and their effects on in vitro and in vivo splicing assessed. Two-nucleotide substitutions in P4 and P7 were necessary to substantially reduce splicing of this intron in vivo, although most mutations reduced self-splicing in vitro. The P7-4,5 mutant, whose splicing was completely blocked, showed no photoautotrophic growth and synthesis of a truncated D1 (exons 1-4) polypeptide from the unspliced mRNA. Most informative was the P4'-3,4 mutant, which exhibited a 45% reduction in spliced psbA mRNA, a 28% reduction in synthesis of fulllength D1, and an 18% reduction in photoautotrophic growth. These results indicate that psbA mRNA is not in great excess, and that highly efficient splicing of psbA introns, which is afforded by light conditions, is necessary for optimal photosynthetic growth.
机译:叶绿体编码的psbA基因编码光系统II反应中心的D1多肽,该多肽在光下以高速率合成。在莱茵衣藻中,psbA基因包含四个自我剪接的I组内含子,它们的体内剪接率被光照提高了至少6-10倍。但是,由于psbA是丰富的mRNA,并且某些叶绿体mRNA似乎远远超过了维持翻译速率所需的水平,因此光促剪接的发展意义尚不清楚。为了解决这个问题和其他问题,在第四个psbA内含子Cr.psbA4的几个预测螺旋中进行了可能破坏稳定性的取代,并评估了它们对体外和体内剪接的影响。为了在体内显着减少该内含子的剪接,P4和P7中的两个核苷酸取代是必需的,尽管大多数突变在体外都降低了自身剪接。 P7-4,5突变体,其剪接被完全阻止,显示没有光合自养生长和从未剪接的mRNA合成截短的D1(外显子1-4)多肽。最有用的是P4'-3,4突变体,其剪接的psbA mRNA减少了45%,全长D1的合成减少了28%,光合自养生长减少了18%。这些结果表明,psbA mRNA并未大量过量,而且光照条件下提供的psbA内含子的高效剪接对于最佳的光合作用生长是必需的。

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