Ashikhmin A A, Makhneva Z K, Bol'shakov M A, Moskalenko A A
Institute of Basic Biological Problems, Russian Academy of Sciences, ul. Institutskaya 2, Pushchino, Moscow oblast, 142290, Russia.
Dokl Biochem Biophys. 2015;465:377-80. doi: 10.1134/S1607672915060095. Epub 2016 Jan 5.
Carotenoidless light-harvesting complexes (DPA-complexes) LH1-RC and LH2 were isolated from the purple sulfur bacterium Ectothiorhodospira haloalkaliphila in which carotenoid biosynthesis was suppressed with diphenylamine (DPA). Carotenoids of the spirilloxanthine series, which were isolated from the same bacterium, were incorporated into the DPA-complexes in vitro with an efficiency of 95-100%. The comparison of characteristics of the complexes with the incorporated carotenoids and the control complexes showed that the LH2 complexes with the incorporated carotenoids restored their absorption spectra, circular dichroism signals, and energy transfer from carotenoids to bacteriochlorophyll, which indicates that carotenoids were correctly incorporated into the structure of this complex.
从嗜盐碱紫色硫细菌嗜盐碱外硫红螺菌中分离出无类胡萝卜素的捕光复合物(DPA复合物)LH1-RC和LH2,其中类胡萝卜素生物合成用二苯胺(DPA)抑制。从同一细菌中分离出的螺菌黄素系列类胡萝卜素在体外以95-100%的效率掺入DPA复合物中。将掺入类胡萝卜素的复合物与对照复合物的特性进行比较表明,掺入类胡萝卜素的LH2复合物恢复了其吸收光谱、圆二色性信号以及从类胡萝卜素到细菌叶绿素的能量转移,这表明类胡萝卜素已正确掺入该复合物的结构中。