Itoh Shigeru, Mino Hiroyuki, Itoh Kunihiro, Shigenaga Takatoshi, Uzumaki Tatsuya, Iwaki Masayo
Division of Material Science (Physics), Graduate School of Science, Nagoya University, Nagoya 464-8602, Japan.
Biochemistry. 2007 Oct 30;46(43):12473-81. doi: 10.1021/bi7008085. Epub 2007 Oct 6.
Reaction center chlorophylls (Chls) in photosystems II and I were studied in the isolated thylakoid membranes of a cyanobacterium, Acaryochloris marina, which contains Chls d and a as the major and minor pigments, respectively. The membranes contained PS I and II complexes at a 1.8:1 molar ratio on the basis of the spin densities on the tyrosine D radical and the photo-oxidized PS I primary donor (P740+). In the presence of ferricyanide, laser excitation induced bleach at 725 nm that recovered with time constants of 25 micros and 1.2 ms. The signal, designated P725, was suppressed by PS II inhibitors DCMU and hydroxylamine. The P725 spectrum was tentatively assigned to the absorption changes of the special pair Chl d, the accessory Chl d, and the acceptor pheophytin a in PS II. The addition of ascorbate induced the additional signal with a slow decay time constant of 4.5 ms. This signal showed a broad bleach at 740 nm and shift-type absorption changes at around 707 and 685 nm, which were assigned to the absorption changes of PS I special pair of Chl d (P740), the accessory Chl d, and the primary acceptor Chl a (A0), respectively. Mechanisms and the evolution of the Chl-d based reaction centers using far-red light are discussed together with the amino acid sequences of PS II D1 and D2 proteins.
在蓝细菌海栖热袍菌分离的类囊体膜中,对光系统II和I中的反应中心叶绿素(Chls)进行了研究,该蓝细菌分别含有叶绿素d和叶绿素a作为主要和次要色素。基于酪氨酸D自由基和光氧化的光系统I初级供体(P740+)上的自旋密度,这些膜中光系统I和II复合物的摩尔比为1.8:1。在铁氰化物存在下,激光激发在725nm处诱导漂白,其恢复的时间常数为25微秒和1.2毫秒。该信号命名为P725,被光系统II抑制剂敌草隆(DCMU)和羟胺抑制。P725光谱初步归因于光系统II中特殊对叶绿素d、辅助叶绿素d和受体脱镁叶绿素a的吸收变化。添加抗坏血酸盐诱导了具有4.5毫秒缓慢衰减时间常数的额外信号。该信号在740nm处显示出宽漂白,在707和685nm左右显示出位移型吸收变化,分别归因于光系统I特殊对叶绿素d(P740)、辅助叶绿素d和初级受体叶绿素a(A0)的吸收变化。本文结合光系统II D1和D2蛋白的氨基酸序列,讨论了基于叶绿素d的反应中心利用远红光的机制和进化。