Strickler Melodie A, Hwang Hong Jin, Burnap Robert L, Yano Junko, Walker Lee M, Service Rachel J, Britt R David, Hillier Warwick, Debus Richard J
Department of Biochemistry, University of California, Riverside, CA 92521, USA.
Philos Trans R Soc Lond B Biol Sci. 2008 Mar 27;363(1494):1179-87; discussion 1187-8. doi: 10.1098/rstb.2007.2213.
In the recent X-ray crystallographic structural models of photosystem II, Glu354 of the CP43 polypeptide is assigned as a ligand of the O2-evolving Mn4Ca cluster. In this communication, a preliminary characterization of the CP43-Glu354Gln mutant of the cyanobacterium Synechocystis sp. PCC 6803 is presented. The steady-state rate of O2 evolution in the mutant cells is only approximately 20% compared with the wild-type, but the kinetics of O2 release are essentially unchanged and the O2-flash yields show normal period-four oscillations, albeit with lower overall intensity. Purified PSII particles exhibit an essentially normal S2 state multiline electron paramagnetic resonance (EPR) signal, but exhibit a substantially altered S2-minus-S1 Fourier transform infrared (FTIR) difference spectrum. The intensities of the mutant EPR and FTIR difference spectra (above 75% compared with wild-type) are much greater than the O2 signals and suggest that CP43-Glu354Gln PSII reaction centres are heterogeneous, with a minority fraction able to evolve O2 with normal O2 release kinetics and a majority fraction unable to advance beyond the S2 or S3 states. The S2-minus-S1 FTIR difference spectrum of CP43-Glu354Gln PSII particles is altered in both the symmetric and asymmetric carboxylate stretching regions, implying either that CP43-Glu354 is exquisitely sensitive to the increased charge that develops on the Mn4Ca cluster during the S1-->S2 transition or that the CP43-Glu354Gln mutation changes the distribution of Mn(III) and Mn(IV) oxidation states within the Mn4Ca cluster in the S1 and/or S2 states.
在最近的光系统II的X射线晶体结构模型中,CP43多肽的Glu354被指定为产氧Mn4Ca簇的配体。在本通讯中,展示了对蓝藻集胞藻PCC 6803的CP43-Glu354Gln突变体的初步表征。与野生型相比,突变体细胞中O2释放的稳态速率仅约为20%,但O2释放的动力学基本不变,并且O2闪光产率呈现正常的四周期振荡,尽管总体强度较低。纯化的PSII颗粒表现出基本正常的S2态多线电子顺磁共振(EPR)信号,但表现出显著改变的S2减S1傅里叶变换红外(FTIR)差谱。突变体EPR和FTIR差谱的强度(与野生型相比高于75%)远大于O2信号,这表明CP43-Glu354Gln PSII反应中心是异质的,少数部分能够以正常的O2释放动力学产氧,而大多数部分无法超越S2或S3态。CP43-Glu354Gln PSII颗粒的S2减S1 FTIR差谱在对称和不对称羧酸盐伸缩区域均发生了改变,这意味着要么CP43-Glu354对S1到S2转变过程中Mn4Ca簇上增加的电荷极为敏感,要么CP43-Glu354Gln突变改变了S1和/或S2态下Mn(III)和Mn(IV)氧化态在Mn4Ca簇内的分布。