Olsen J D, Sturgis J N, Westerhuis W H, Fowler G J, Hunter C N, Robert B
Robert Hill Institute for Photosynthesis, University of Sheffield, Western Bank, Sheffield S10 2TN, U.K.
Biochemistry. 1997 Oct 14;36(41):12625-32. doi: 10.1021/bi9710481.
The core light-harvesting LH1 complex of Rhodobactersphaeroides consists of an assembly of membrane-spanning alpha and beta polypeptides, each of which binds one bacteriochlorophyll molecule. In this study we have used site-directed mutagenesis to demonstrate that the B880 bacteriochlorophyll binding site of LH1 shows a high degree of specificity for the residue that provides the ligand to the Bchl Mg2+ ion. alpha His0 (alphaH0) was changed to Asn, Leu, and Tyr, and beta His0 (betaH0) to Asn, Gln, Leu, and Tyr; the mutated genes were expressed to yield both LH1-only and LH1 + RC strains, in two different carotenoid backgrounds. None of the alphaH0 mutations formed an LH1 complex either in isolation or with RCs. Of the mutations of betaH0 those to Asn and Gln formed LH1 complexes but in the latter case the complex was very unstable and occurred at very low cellular levels. In a similar study, the alphaH0 and betaH0 residues of the LH2 complex were changed to Asn. However, no complex was formed in either case. FT Raman spectroscopy of the betaH0N mutant LH1 shows perturbation of the interaction state of the keto carbonyl of one Bchl which sheds light on the possible H-bond partners for these keto oxygens. These data directly address the B880 binding site of the core LH1 complex and show that it is subtly different from the B850 binding site of the peripheral LH2 complex. A model of this binding site may be proposed from these results.
球形红细菌的核心捕光LH1复合物由跨膜的α和β多肽组装而成,每个多肽结合一个细菌叶绿素分子。在本研究中,我们利用定点诱变证明,LH1的B880细菌叶绿素结合位点对为Bchl Mg2+离子提供配体的残基具有高度特异性。将α His0(αH0)分别突变为Asn、Leu和Tyr,将β His0(βH0)分别突变为Asn、Gln、Leu和Tyr;在两种不同的类胡萝卜素背景下,表达突变基因以产生仅含LH1和LH1 + RC的菌株。αH0的突变无论是单独还是与RCs一起都没有形成LH1复合物。βH0的突变中,突变为Asn和Gln的形成了LH1复合物,但在后一种情况下,复合物非常不稳定,且在细胞中的水平非常低。在一项类似的研究中,LH2复合物中的αH0和βH0残基被突变为Asn。然而,在这两种情况下都没有形成复合物。βH0N突变体LH1的傅里叶变换拉曼光谱显示,一个Bchl的酮羰基的相互作用状态受到扰动,这为这些酮氧的可能氢键伙伴提供了线索。这些数据直接针对核心LH1复合物的B880结合位点,表明它与外周LH2复合物的B850结合位点略有不同。根据这些结果可以提出该结合位点的模型。