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Molecular mechanisms for interaction of glycine betaine with supra-molecular phycobiliprotein complexes

Molecular mechanisms for interaction of glycine betaine with supra-molecular phycobiliprotein complexes
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摘要 Glycine betaine(GB) is a biologically important small molecule protecting cells,proteins and enzymes in vivo and in vitro under environmental stresses.Recently,it was found that GB could also relax the structure and inactivate the function of phycobiliproteins and phycobilisome(PBS),a kind of supramolecular complexes,in cyanobacterial cells.The molecular mechanisms for the opposite phenomena are quite ambiguous.Taking PBS and a trimeric or monomeric C-phycocyanin(C-PC) as models,the molecular mechanism for the interaction of GB with supra-molecular complexes or nuclear proteins was investigated.The energetic decoupling of PBS components induced by GB suggests that the PBS core-membrane linking polypeptide was the most sensitive site while the rod-core linker was the next.Biochemistry analysis proves that PBS structure was loosened but not dissociated into the components.On the basis of the results and structure knowledge,it was proposed that GB screened the electrostatic attraction of the opposite charges on a linker and a protein leading to a much looser structure.It was observed that GB induced a spectral blue shift for trimeric C-PC but a red shift for a monomeric C-PC(a nuclear protein),which were ascribed to GB's screening of the electrostatic attraction of a linker to a protein and strengthening of the hydrophobic interaction between C-PC monomers.The trimers and monomers' forming of the same products under high concentration of GB was ascribed to a compromise of the opposite interaction forces. Glycine betaine (GB) is a biologically important small molecule protecting cells, proteins and enzymes in vivo and in vitro under environmental stresses. Recently, it was found that GB could also relax the structure and inactivate the function of phycobiliproteins and phycobilisome (PBS), a kind of supra-molecular complexes, in cyanobacterial cells. The molecular mechanisms for the opposite phenomena are quite ambiguous. Taking PBS and a trimeric or monomeric C-phycocyanin (C-PC) as models, the molecular mechanism for the interaction of GB with supra-molecular complexes or nuclear proteins was investigated. The energetic decoupling of PBS components induced by GB suggests that the PBS core-membrane linking polypeptide was the most sensitive site while the rod-core linker was the next. Biochemistry analysis proves that PBS structure was loosened but not dissociated into the components. On the basis of the results and structure knowledge, it was proposed that GB screened the electrostatic attraction of the opposite charges on a linker and a protein leading to a much looser structure. It was observed that GB induced a spectral blue shift for trimeric C-PC but a red shift for a monomeric C-PC (a nuclear protein), which were ascribed to GB’s screening of the electrostatic attraction of a linker to a protein and strengthening of the hydrophobic interaction between C-PC monomers. The trimers and monomers’ forming of the same products under high concentration of GB was ascribed to a compromise of the opposite interaction forces.
出处 《Science China Chemistry》 SCIE EI CAS 2009年第11期1865-1870,共6页 中国科学(化学英文版)
基金 Supported by the National Natural Science Foundation of China (Grant No. 20872144)
关键词 glycine BETAINE PHYCOBILIPROTEINS PHYCOBILISOME supra-molecular complex MOLECULAR INTERACTION mechanism glycine betaine phycobiliproteins phycobilisome supra-molecular complex molecular interaction mechanism
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  • 1Dirk Bald,Jochen Kruip,Matthias R?gner.Supramolecular architecture of cyanobacterial thylakoid membranes: How is the phycobilisome connected with the photosystems?[J]. Photosynthesis Research . 1996 (2) 被引量:1
  • 2George C. Papageorgiou,Norio Murata.The unusually strong stabilizing effects of glycine betaine on the structure and function of the oxygen-evolving Photosystem II complex[J]. Photosynthesis Research . 1995 (3) 被引量:1
  • 3Zhao J Q,Li H.The excitation energy transfer in photosynthesis of cyanobacteria. Recent Progress of Bio/chemiluminescence and Fluorescence Analysis in Photosynthesis . 2005 被引量:1
  • 4Yu M H,Glazer A N.Cyanobacterial phycobilisomes.Role of the linker polypeptides in the assembly of phycocyanin. Journal of Biological Chemistry . 1982 被引量:1
  • 5Capuano V,Braux A,Marsac N T,Houmard J.The ‘anchor polypeptide’ of cyanobacterial phycobilisomes.Molecular characterization of the Synechococcus sp.PCC 6301 apcE gene. Journal of Biological Chemistry . 1993 被引量:1
  • 6Gantt E,Lipschultz C A,Zilinskas B.Further evidence for a phyco- bilisome model from selective dissociation,fluorescence emission, immunoprecipitation and electron microscopy. Biochimica et Biophysica Acta . 1976 被引量:1
  • 7Wang X Q,Li L N,Chang W R,Zhang J P,Gui L L,Guo B J,Liang D C.Structure of C-phycocynin from spirulina platensis at 2.2 - resolution:a novel crystal from for phycobiliproteins in phycobili- somes. Acta Crytallogr.Sect.D . 2001 被引量:1
  • 8Kruip B D,R-gner M.Supramolecular architecture of cyanobacterial thylakoid membranes:how is the phycobilisome connected with the photosystems. Photosynthesis Research . 1996 被引量:1
  • 9MacColl R.Cyanobacterial phycobilisomes. Journal of Structural Biology . 1998 被引量:1
  • 10Schirmer T,Huber R,Schneider M,et al.Crystal structure analysis and refinement at 2.5 ? of hexameric C-phycocyanin from the cyanobacterium Agmenellum quadruplicatum. The molecular model and its implications for light-harvesting. Journal of Molecular Biology . 1986 被引量:1

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