4.7 Article

Structure of c-phycocyanin from the thermophilic cyanobacterium Synechococcus vulcanus at 2.5 Å:: Structural implications for thermal stability in phycobilisome assembly

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 313, 期 1, 页码 71-81

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1006/jmbi.2001.5030

关键词

photosynthesis; antenna; X-ray crystallography; protein structure; protein stability

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The crystal structure of the light-harvesting phycobiliprotein, c-phycocyanin from the thermophilic cyanobacterium Synechochoccus vulcanus has been determined by molecular replacement to 2.5 Angstrom resolution. The crystal belongs to space group R32 with cell parameters a = b = 188.43 Angstrom, c = 61.28 Angstrom, alpha = beta = 90 degrees, gamma = 120 degrees, with one (alpha beta) monomer in the asymmetric unit. The structure has been refined to a crystallographic R factor of 20.2% (R-free factor is 24.4%), for all data to 2.5 Angstrom. The crystals were grown from phycocyanin (alpha beta)(3) trimers that form (alpha beta)(6) hexamers in the crystals, in a fashion similar to other phycocyanins. Comparison of the primary, tertiary and quaternary structures of the S. vulcanus phycocyanin structure with phycocyanins from both the mesophilic Fremyella diplsiphon and the thermophilic Mastigocladus laminosus were performed. We show that each level of assembly of oligomeric phycocyanin, which leads to the formation of the phycobilisome structure, can be stabilized in thermophilic organisms by amino acid residue substitutions. Each substitution can form additional ionic interactions at critical positions of each association interface. In addition, a significant shift in the position of ring D of the B155 phycocyanobilin cofactor in the S. vulcanus phycocyanin, enables the formation of important polar interactions at both the (alpha beta) monomer and (alpha beta)(6) hexamer association interfaces. (C) 2001 Academic Press.

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