Shuvalov V A, Klimov V V
Biochim Biophys Acta. 1976 Sep 13;440(3):587-99. doi: 10.1016/0005-2728(76)90044-x.
Experimental evidence for electron transfer, photosensitized by bacteriochlorophyll, from cytochrome c to a pigment complex P-760 (involving bacteriopheophytin-760 and also bacteriochlorophyll-800) in the reaction centers of Chromatium minutissimum has been described. This photoreaction occurs between 77 and 293 degrees K at a redox potential of the medium between -250 and -530 mV. Photoreduction of P-760 is accompanied by development of a wide absorption band at 650 nm and of an EPR signal with g=2.0025+/-0.0005 and linewidth of 12.5+/-0.5 G, which are characteristic of the pigment radical anion. It is suggested that the photoreduction of P-760 occurs under the interaction of reduced cytochrome c with the reaction center state P+-890-P--760 which is induced by light. The existence of short-lived state P+-890-P--760 is indicated by the recombination luminescence with activation energy of 0.12 eV and t 1/2 less than or equal to 6 ns. This luminescence is exicted and emitted by bacteriochlorophyll and disappears when P-760 is reduced. At low redox potentials, the flash-induced absorbance changes related to the formation of the carotenoid triplet state with t 1/2 = 6 mus at 20 degreesC are observed. This state is not formed when P-760 is reduced at 293 and 160 degrees K. It is assumed that this state is formed from the reaction center state P+-890---760, which appears to be a primary product of light reaction in the bacterial reaction centers and which is probably identical with the state PF described in recent works.
已经描述了在极小色杆菌反应中心中,由细菌叶绿素光敏化的电子从细胞色素c转移到色素复合物P - 760(涉及细菌脱镁叶绿素 - 760以及细菌叶绿素 - 800)的实验证据。该光反应在77至293开尔文之间发生,介质的氧化还原电位在 - 250至 - 530毫伏之间。P - 760的光还原伴随着在650纳米处出现一个宽吸收带以及一个g = 2.0025±0.0005且线宽为12.5±0.5高斯的电子顺磁共振(EPR)信号,这些是色素自由基阴离子的特征。有人认为P - 760的光还原发生在还原型细胞色素c与由光诱导的反应中心状态P⁺ - 890 - P⁻ - 760相互作用时。短寿命状态P⁺ - 890 - P⁻ - 760的存在由活化能为0.12电子伏特且半衰期小于或等于6纳秒的复合发光表明。这种发光由细菌叶绿素激发和发射,当P - 760被还原时消失。在低氧化还原电位下,观察到与类胡萝卜素三重态形成相关的闪光诱导吸光度变化,在20摄氏度下其半衰期为6微秒。当在293和160开尔文下P - 760被还原时,这种状态不形成。据推测,这种状态由反应中心状态P⁺ - 890 - - - 760形成,它似乎是细菌反应中心光反应的主要产物,并且可能与近期工作中描述的状态PF相同。