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The reconstitution of a Photosystem II protein complex, P-700-chlorophyll a-protein complex and light-harvesting chlorophyll ab-protein
Authors:AWD Larkum  Jan M Anderson
Institution:CSIRO, Division of Plant Industry, P.O. Box 1600, Canberra, ACT 2601 Australia
Abstract:A Photosystem II reaction centre protein complex was extracted from spinach chloroplasts using digitonin. This complex showed (i) high rates of dichloroindophenol and ferricyanide reduction in the presence of suitable donors, (ii) low-temperature fluorescence at 685 nm with a variable shoulder at 695 nm which increased as the complex aggregated due to depletion of digitonin and (iii) four major polypeptides of 47, 39, 31 and 6 kDa on dissociating polyacrylamide gels. The Photosystem II protein complex, together woth the P-700-chlorophylla protein complex and light-harvesting chlorophyll ab-protein complex (LHCP) also isolated using digitonin, were reconstituted with lipids from spinach chloroplasts to form proteoliposomes. The low-temperature (77 K) fluorescence properties of the various proteoliposomes were analysed. The F685F695 ratios of the Photosystem II reaction centre protein complex-liposomes decreased as the lipid to protein ratios were increased. The F681F697 ratios of LHCP-liposomes were found to behave similarly. Light excitation of chlorophyll b at 475 nm stimulated emission from both the Photosystem II protein complex (F685 and F695) and the P-700-chlorophyll a-protein complex (F735) when LHCP was reconstituted with either of these complexes, demonstrating energy transfer between LHCP and PS I or II complexes in liposomes. No evidence was found for energy transfer from the PS II complex to the P-700-chlorophyll a-protein complex reconstituted in the same proteoliposome preparation. Proteoliposome preparations containing all three chlorophyll-protein complexes showed fluorescence emission at 685, 700 and 735 nm.
Keywords:Chlorophyll-protein complex  Energy transfer  Photosystem II  Proteoliposome  Light-harvesting protein  (Spinach chloroplast)  chloroplast coupling factor  Chl  chlorophyll  CPa  band from SDS-polyacrylamide gel electrophoresis with PS II characteristics  DCIP  2  6-dichloroindophenol  DCMU  3-(3′  4′-dichlorophenyl)-1  1-dimethylurea  fluorescence excited at 436 nm  fluorescence with a maximum emission at 685 nm  LHCP  PS  Photosystem  SDS  sodium dodecyl sulphate  Tricine
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