Tetenkin V L
Department of Biophysics, School of Biology, Lomonosov Moscow State University, Moscow 119992, Russia.
Biochemistry (Mosc). 2003 Jun;68(6):662-77. doi: 10.1023/a:1024622027378.
The interrelation between spectral and structural-functional properties of LhcIIb was studied. The dipole strength of the main Q(y )bands of chlorophylls (Chl a 30.8 D(2); Chl b 18.5 D(2)) and chlorophyll a/b ratio (Chl a/Chl b = 7 : 6) were determined for LhcIIb. The Chl a/Chl b value shows that the subunit of this complex contains seven Chl a and six Chl b molecules. Individual bands of chlorophylls (bands in stokes and anti-Stokes parts at 77 K were Lorentzian and Gaussian, respectively) were resolved using synchronized deconvolution of absorption, CD, and LD bands of chlorophylls. Seven of these bands belonged to Chl a. Parameters of absorption bands of Chl a indicate that seven molecules represent a united cluster (heptamer) with exciton interactions, determining the spectrum of LhcIIb in the Chl a absorption region. Parameters of absorption bands of Chl b show the existence of three clusters: monomer (639.6 nm), dimer (645.2 and 647.4 nm), and trimer (649.8 and 654.1 nm). These clusters and their properties agree with the well-known structure of porphyrin groups of the LhcIIb subunit (Kuhlbrandt, 1994). A distorted ring of seven porphyrins in the stromal range of the subunit corresponds to Chl a heptamer; a separately located molecule near the N-terminal domain on the stromal side of the subunit corresponds to Chl b monomer; a dimer and a trimer of porphyrins in the lumenal range of the subunit correspond to the dimer and trimer of Chl b, respectively. The calculated lifetimes of the excitation energy (exciton) transfer in subunit and trimer of LhcIIb confirm this location of pigments. The geometry of the Chl a heptamer (mutual orientation of transition dipole moments) was determined by the steady-state Kasha-Tinoco approximation using parameters of individual bands of exciton splitting. The calculated parameters of mutual orientation of Chl a dipoles agree with the topography of the stromal porphyrins found by electron crystallography (Kuhlbrandt, 1994). A structural model of the granal multicentral macrocomplex of PSII (MPSII) is suggested. The lifetimes of the exciton migration between the main pigment-protein compartments of MPSII were calculated. The results of calculation are consistent with the structural model of the photosystem. The location of pigments provides for fast exciton hopping between Chl a clusters of neighboring proteins in the MPSII along the stromal surface within the membrane (5-25 psec) and between stacked membranes (approximately 40 psec) of chloroplast grana.
研究了LhcIIb的光谱与结构功能特性之间的相互关系。测定了LhcIIb中叶绿素主要Q(y)带的偶极强度(叶绿素a为30.8 D(2);叶绿素b为18.5 D(2))以及叶绿素a/b比值(叶绿素a/叶绿素b = 7 : 6)。叶绿素a/叶绿素b值表明该复合物亚基包含7个叶绿素a分子和6个叶绿素b分子。通过对叶绿素吸收、圆二色性(CD)和线性二色性(LD)带进行同步去卷积,分辨出了叶绿素的各个谱带(77 K时斯托克斯和反斯托克斯部分的谱带分别为洛伦兹型和高斯型)。其中7个谱带属于叶绿素a。叶绿素a吸收带的参数表明,这7个分子代表一个具有激子相互作用的联合簇(七聚体),决定了LhcIIb在叶绿素a吸收区域的光谱。叶绿素b吸收带的参数表明存在三个簇:单体(639.6 nm)、二聚体(645.2和647.4 nm)和三聚体(649.8和654.1 nm)。这些簇及其特性与LhcIIb亚基卟啉基团的已知结构相符(库尔布兰特,1994年)。亚基基质范围内7个卟啉的扭曲环对应于叶绿素a七聚体;亚基基质侧靠近N端结构域处单独定位的分子对应于叶绿素b单体;亚基腔内范围内卟啉的二聚体和三聚体分别对应于叶绿素b的二聚体和三聚体。计算得到的LhcIIb亚基和三聚体中激发能(激子)转移的寿命证实了色素的这种定位。叶绿素a七聚体的几何结构(跃迁偶极矩的相互取向)通过使用激子分裂各谱带的参数,采用稳态卡沙 - 蒂诺科近似法确定。计算得到的叶绿素a偶极相互取向参数与电子晶体学发现的基质卟啉的拓扑结构相符(库尔布兰特,1994年)。提出了PSII颗粒多中心大复合物(MPSII)的结构模型。计算了MPSII主要色素 - 蛋白质区室之间激子迁移的寿命。计算结果与光系统的结构模型一致。色素的定位使得MPSII中相邻蛋白质的叶绿素a簇之间能够沿着膜内基质表面快速进行激子跳跃(5 - 25皮秒),以及在叶绿体基粒的堆叠膜之间进行激子跳跃(约40皮秒)。