Alvey Richard M, Karty Jonathan A, Roos Elicia, Reilly James P, Kehoe David M
Department of Biology, Indiana University, Bloomington, Indiana 47405, USA.
Plant Cell. 2003 Oct;15(10):2448-63. doi: 10.1105/tpc.015016. Epub 2003 Sep 24.
We have characterized the regulation of the expression of the pebAB operon, which encodes the enzymes required for phycoerythrobilin synthesis in the filamentous cyanobacterium Fremyella diplosiphon. The expression of the pebAB operon was found to be regulated during complementary chromatic adaptation, the system that controls the light responsiveness of genes that encode several light-harvesting proteins in F. diplosiphon. Our analyses of pebA mutants demonstrated that although the levels of phycoerythrin and its associated linker proteins decreased in the absence of phycoerythrobilin, there was no significant modulation of the expression of pebAB and the genes that encode phycoerythrin. Instead, regulation of the expression of these genes is coordinated at the level of RNA accumulation by the recently discovered activator CpeR.
我们已经对pebAB操纵子的表达调控进行了表征,该操纵子编码丝状蓝细菌双歧藻中藻红素胆素合成所需的酶。发现pebAB操纵子的表达在互补色适应过程中受到调控,互补色适应是一种控制系统,可控制双歧藻中编码几种捕光蛋白的基因的光响应性。我们对pebA突变体的分析表明,尽管在没有藻红素胆素的情况下藻红蛋白及其相关连接蛋白的水平降低,但pebAB以及编码藻红蛋白的基因的表达没有明显调节。相反,这些基因的表达调控是通过最近发现的激活因子CpeR在RNA积累水平上进行协调的。