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Isolation and characterization of light-regulated phycobilisome linker polypeptide genes and their transcription as a polycistronic mRNA.

机译:光调节的藻胆体接头多肽基因的分离和表征及其转录为多顺反子mRNA。

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摘要

Several cyanobacteria adjust both the phycobiliprotein and linker protein composition of the phycobilisome, a light-harvesting complex in cyanobacteria and some eucaryotic algae, to maximize absorption of prevalent wavelengths of light. This process is called complementary chromatic adaptation. We sequenced the amino terminus of a linker polypeptide which is associated with phycocyanin and accumulates to high levels during growth of the cyanobacterium Fremyella diplosiphon in red light. A mixed oligonucleotide encoding a region of this amino terminus was synthesized and used to identify a fragment of F. diplosiphon genomic DNA encoding the linker polypeptide. This linker gene was located between two other linker genes and contiguous to the red-light-induced phycocyanin gene set. Sequences of all three linker genes are presented. These genes were transcribed together onto a large polycistronic mRNA which also encoded the red-light-induced phycocyanin subunits. The relationship of this transcript to the biogenesis of the phycobilisome when F. diplosiphon is grown under different conditions of illumination is discussed.
机译:几种蓝细菌可同时调节藻胆体的藻胆蛋白和接头蛋白组成,蓝藻中的光捕获复合物和某些真核藻类,以最大限度地吸收普遍波长的光。此过程称为互补色适应。我们对接头多肽的氨基末端进行了测序,该接头多肽与藻蓝蛋白相关联,并在红光下蓝藻弗雷米氏菌的生长过程中积累到高水平。合成了编码该氨基末端区域的混合寡核苷酸,并将其用于鉴定编码接头多肽的双链镰孢基因组DNA的片段。该接头基因位于其他两个接头基因之间,与红光诱导的藻蓝蛋白基因组相邻。给出了所有三个接头基因的序列。这些基因一起转录到一个大的多顺反子mRNA上,该mRNA也编码红光诱导的藻蓝蛋白亚基。讨论了当在不同光照条件下生长二倍生双歧杆菌时该转录本与藻胆体生物发生的关系。

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