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J Phys Chem B ; 117(36): 10395-404, 2013 Sep 12.
Article in English | MEDLINE | ID: mdl-23919556

ABSTRACT

In the photosynthetic membrane of purple bacteria networks of light-harvesting 2 (LH2) complexes capture the sunlight and transfer the excitation energy. In order to investigate the mutual relationship between the supramolecular organization of the pigment-protein complexes and their biological function, the LH2 complexes were reconstituted into three types of phospholipid membranes, consisting of L-α-phosphatidylglycerol (PG), L-α-phosphatidylcholine (PC), and L-α-phosphatidylethanolamine (PE)/PG/cardiolipin (CL). Atomic force microscopy (AFM) revealed that the type of phospholipids had a crucial influence on the clustering tendency of the LH2 complexes increased from PG over PC to PE/PG/CL, where the LH2 complexes formed large, densely packed clusters. Time-resolved spectroscopy uncovered a strong quenching of the LH2 fluorescence that is ascribed to singlet-singlet and singlet-triplet annihilation by an efficient energy transfer between the LH2 complexes in the artificial membrane systems. Quantitative analysis reveals that the intercomplex energy transfer efficiency varies strongly as a function of the morphology of the nanostructure, namely in the order PE/PG/CL > PC > PG, which is in line with the clustering tendency of LH2 observed by AFM. These results suggest a strong influence of the phospholipids on the self-assembly of LH2 complexes into networks and concomitantly on the intercomplex energy transfer efficiency.


Subject(s)
Light-Harvesting Protein Complexes/chemistry , Lipid Bilayers/chemistry , Energy Transfer , Light-Harvesting Protein Complexes/metabolism , Lipid Bilayers/metabolism , Microscopy, Atomic Force , Nanostructures/chemistry , Phosphatidylcholines/chemistry , Phosphatidylethanolamines/chemistry , Phosphatidylglycerols/chemistry , Proteobacteria/metabolism , Spectrometry, Fluorescence
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