Ma Fei, Kimura Yukihiro, Yu Long-Jiang, Wang Peng, Ai Xi-Cheng, Wang Zheng-Yu, Zhang Jian-Ping
Department of Chemistry, Renmin University of China, Beijing, China.
FEBS J. 2009 Mar;276(6):1739-49. doi: 10.1111/j.1742-4658.2009.06905.x. Epub 2009 Feb 14.
Native and Ca(2+)-depleted light-harvesting-reaction center core complexes (LH1-RC) from the photosynthetic bacterium Thermochromatium (Tch.) tepidum exhibit maximal LH1-Q(y) absorption at 915 and 889 nm, respectively. To understand the structural origins of the spectral variation, we performed spectroscopic and structure modeling investigations. For the 889 nm form of LH1-RC, bacteriochlorophyll a (BChl a) in the native form was found by means of near-infrared Fourier-transform Raman spectroscopy, a higher degree of macrocycle distortion and a stronger hydrogen bond with the beta-Trp(-8) residue. SWISS-MODEL structure modeling suggests the presence of a specific coordination motif of Ca(2+) at the C-terminus of the alpha-subunit of LH1, while MODELLER reveals the tilt of alpha- and beta-polypeptides with reference to the structural template, as well as a change in the concentric orientation of BChl a molecules, both of which may be connected to the long-wavelength LH1-Q(y) absorption of the 915 nm form. The carotenoid spirilloxanthin shows a twisted all-trans configuration in both forms of LH1 as evidenced by the resonance Raman spectroscopic results. With regard to the thermal stability, the 915 nm form was shown by the use of temperature-dependent fluorescence spectroscopy to be approximately 20 K more stable than the 889 nm form, which may be ascribed to the specific Ca(2+)-binding motif of LH1.
来自光合细菌嗜温栖热菌(Thermochromatium (Tch.) tepidum)的天然及钙耗尽型捕光反应中心核心复合物(LH1-RC),其最大LH1-Q(y)吸收峰分别位于915和889纳米处。为了理解光谱变化的结构根源,我们进行了光谱学和结构建模研究。对于889纳米形式的LH1-RC,通过近红外傅里叶变换拉曼光谱发现,天然形式的细菌叶绿素a(BChl a)具有更高程度的大环畸变以及与β-Trp(-8)残基更强的氢键。SWISS-MODEL结构建模表明在LH1的α亚基C末端存在特定的Ca(2+)配位基序,而MODELLER揭示了α和β多肽相对于结构模板的倾斜,以及BChl a分子同心取向的变化,这两者都可能与915纳米形式的长波长LH1-Q(y)吸收有关。共振拉曼光谱结果表明,类胡萝卜素螺旋藻黄素在两种形式的LH1中均呈现扭曲的全反式构型。关于热稳定性,通过温度依赖性荧光光谱表明,915纳米形式比889纳米形式大约稳定20 K,这可能归因于LH1特定的Ca(2+)结合基序。