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Updated: Jan 27, 2026

In Vitro Reconstitution of Light-harvesting Complexes of Plants and Green Algae
Published on: October 10, 2014
Oligomeric state of the light-harvesting complexes B800-850 and B875 from purple bacterium Rubrivivax gelatinosus in
Vladimira Jirsakova1, Françoise Reiss-Husson, Jean-Luc Ranck
1CGM, Bât 24, CNRS, 91198 Gif sur Yrette, France.
Abstract:
Molecular weights of the purified light-harvesting complexes B800-850 and B875 from purple bacterium Rubrivivax gelatinosus were determined in detergent solutions by analytical centrifugation. The precise density measurement of the antenna solutions provided the values of the buoyant factor of both complexes. Phospholipid content was measured in both antennae. Sedimentation velocity and equilibrium centrifugation indicated that the B800-850 sample is monodisperse and composed from heptamers (α/β/3 Bacteriochlorophyll α 1.3 Carotenoid)7. B875 is not monodisperse but analysis of equilibrium centrifugation indicated that its smallest oligomer is a dodecamer (α/β/2 BChlα/2 hydroxyspheroidene)12; larger oligomers probably coexist. The amount of bound detergent could be calculated. B800-850 binds about 0.4-0.5 g of lauryl-dimethyl-amine oxide per g of protein (i.e., 28-35 detergent molecules per α β ) while a large amount of detergent (2.3 g of decanoylsucrose per g of protein, i.e., 64 detergent molecules per α β ) is bound to 13875. The electron microscopy images of both antennae in detergent solutions after negative staining are presented and compared to the centrifugation results.
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