Kehoe D M, Grossman A R
Department of Plant Biology, Carnegie Institution of Washington, 290 Panama Street, Stanford, CA 94305, USA.
Science. 1996 Sep 6;273(5280):1409-12. doi: 10.1126/science.273.5280.1409.
Complementary chromatic adaptation in cyanobacteria acts through photoreceptors to control the biosynthesis of light-harvesting complexes. The mutant FdBk, which appears black, cannot chromatically adapt and may contain a lesion in the apparatus that senses light quality. The complementing gene identified here, rcaE, encodes a deduced protein in which the amino-terminal region resembles the chromophore attachment domain of phytochrome photoreceptors and regions of plant ethylene receptors; the carboxyl- terminal half is similar to the histidine kinase domain of two-component sensor kinases.
蓝细菌中的互补色适应通过光感受器起作用,以控制捕光复合物的生物合成。突变体FdBk呈现黑色,无法进行色适应,可能在感知光质的机制中存在损伤。此处鉴定出的互补基因rcaE编码一种推导蛋白,其氨基末端区域类似于植物光敏色素光感受器的生色团附着结构域以及植物乙烯受体的区域;羧基末端的一半类似于双组分传感激酶的组氨酸激酶结构域。