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Photosynthesis Genes and LH1 Proteins of Roseospirillum Parvum 930I,a Purple Non-Sulfur Bacterium with Unusual Spectral Properties
Authors:Tuschak  Christian  Beatty  J Thomas  Overmann  Jörg
Institution:(1) Bereich Mikrobiologie, Department Biologie I, Ludwig-Maximilians-Universität München, Maria-Ward-Str. 1a, 80638 München, Germany;(2) Department of Microbiology and Immunology, University of British Columbia, Vancouver, British Columbia, Canada, V6T 1Z3
Abstract:The purple bacterium Roseospirillum(Rss.)parvum 930I, like most other purple bacteria, contains bacteriochlorophyll (BChl)-a as a LH chromophore, but exhibits an extremely red-shifted Q y absorption maximum centered at 909 nm. The puf operon encoding the LH1 and other pigment-binding proteins was cloned and sequenced, revealing the gene structure pufBALMC. Comparative analysis of predicted amino acid sequences of the agr- and beta-core LH polypeptides (PufA and PufB) revealed five amino-acid substitutions at positions that are highly conserved in other purple bacteria. In the primary structure, these residues are in close proximity to the BChl-a ligating histidine residue (agr +3, agr +5, agr +6 and beta –4, beta +9, with respect to the central histidine, His0). The nature of the enormous red-shifts to the near-infrared region of the light were attributed to those residues, with special emphasis to cysteine residues rarely present in other purple bacterial antenna polypeptides. Three-dimensional structural models of the Rss. parvum LH1-agr and -beta polypeptides suggest that the thiol groups of agrCys+3 and betaCys–4 are oriented toward the BChl-a macrocycle in the native antenna complex. Because of their predicted close proximity to BChl, these thiol groups are likely to modulate the spectral properties of the LH1 complex. Phylogenetic comparisons of LH1 polypeptides indicate that Rss. parvum-like amino-acid substitutions in proteobacterial LH1 complexes arose independently during evolution.This revised version was published online in October 2005 with corrections to the Cover Date.
Keywords:anoxygenic photosynthesis  3-D modeling  evolution  light-harvesting complex  pigment-binding  puf genes  purple non-sulfur bacteria  purple sulfur bacteria
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