Lapouge K, Näveke A, Gall A, Ivancich A, Seguin J, Scheer H, Sturgis J N, Mattioli T A, Robert B
Section de Biophysique des Protéines et des Membranes, Département de Biologie Cellulaire et Moléculaire/CEA, URA CNRS 2096, Centre d'Etudes Saclay, Gif/Yvette, France.
Biochemistry. 1999 Aug 24;38(34):11115-21. doi: 10.1021/bi990723z.
Fourier transform near-infrared resonance Raman spectroscopy can be used to obtain information on the bacteriochlorophyll a (BChl a) molecules responsible for the redmost absorption band in photosynthetic complexes from purple bacteria. This technique is able to distinguish distortions of the bacteriochlorin macrocycle as small as 0.02 A, and a systematic analysis of those vibrational modes sensitive to BChl a macrocycle conformational changes was recently published [Näveke et al. (1997) J. Raman Spectrosc. 28, 599-604]. The conformation of the two BChl a molecules constituting the primary electron donor in bacterial reaction centers, and of the 850 and 880 nm-absorbing BChl a molecules in the light-harvesting LH2 and LH1 proteins, has been investigated using this technique. From this study it can be concluded that both BChl a molecules of the primary electron donor in the photochemical reaction center are in a conformation close to the relaxed conformation observed for pentacoordinate BChl a in diethyl ether. In contrast, the BChl a molecules responsible for the long-wavelength absorption transition in both LH1 and LH2 antenna complexes are considerably distorted, and furthermore there are noticeable differences between the conformations of the BChl molecules bound to the alpha- and beta-apoproteins. The molecular conformations of the pigments are very similar in all the antenna complexes investigated.
傅里叶变换近红外共振拉曼光谱可用于获取有关负责紫色细菌光合复合物中最红吸收带的细菌叶绿素a(BChl a)分子的信息。该技术能够分辨低至0.02 Å的细菌卟啉大环的畸变,最近发表了对那些对BChl a大环构象变化敏感的振动模式的系统分析[Näveke等人(1997年)《拉曼光谱学杂志》28,599 - 604]。已使用该技术研究了构成细菌反应中心初级电子供体的两个BChl a分子以及光捕获LH2和LH1蛋白中吸收850和880 nm光的BChl a分子的构象。从这项研究可以得出结论,光化学反应中心初级电子供体的两个BChl a分子都处于一种构象,该构象接近在二乙醚中观察到的五配位BChl a的松弛构象。相比之下,负责LH1和LH2天线复合物中长波长吸收跃迁的BChl a分子有相当大的畸变,此外,与α - 和β - 脱辅基蛋白结合的BChl分子的构象之间存在明显差异。在所研究的所有天线复合物中,色素的分子构象非常相似。