Trosper T L, Benson D L, Thornber P J
Biochim Biophys Acta. 1977 May 11;460(2):318-30. doi: 10.1016/0005-2728(77)90218-3.
A method is described for isolation of the Rhodopseudomonas viridis reaction center complex free of altered, 685 nm absorbing pigment. This improved preparation contains two c-type cytochromes in the ratio P-960: cytochrome c-558: cytochrome c-553 of 1:2:2 to 3. The near infrared spectral forms of the reduced preparation are located at 790, 832, 846, and 987 nm at 77 K; the oxidized complex absorbs at 790, 808, 829 and approx. 1310 nm. The 790 nm band is attributed to bacteriophaeophytin b and the other absorbances to bacteriochlorophyll b, The visible absorption bands may be assigned to these pigments and to the cytochromes present and, probably to a carotenoid. The presence of two bacteriochlorophyll b spectral forms in the P+-830 band suggests that exciton interactions occur among pigments in the oxidized, as well as the reduced, reaction center. Changes in the 790 and 544 nm bands upon illumination of the reaction center preparation at low redox potential may be indicative of a role for bacteriophaeophytin b in primary photochemical events.
本文描述了一种分离不含改变的、吸收685nm色素的绿假单胞菌反应中心复合物的方法。这种改进的制剂含有两种c型细胞色素,其P-960:细胞色素c-558:细胞色素c-553的比例为1:2:2至3。还原制剂在77K时的近红外光谱形式位于790、832、846和987nm处;氧化复合物在790、808、829和约1310nm处吸收。790nm带归因于细菌叶绿素b,其他吸收归因于细菌叶绿素b,可见吸收带可归因于这些色素和存在的细胞色素,可能还归因于类胡萝卜素。在P+-830带中存在两种细菌叶绿素b光谱形式,这表明在氧化和还原的反应中心中,色素之间发生了激子相互作用。在低氧化还原电位下照射反应中心制剂时,790和544nm带的变化可能表明细菌叶绿素b在初级光化学事件中起作用。