The Plasma Membrane of the Cyanobacterium Gloeobacter violaceus Contains Segregated Bioenergetic Domains

Author:

Rexroth Sascha1,Mullineaux Conrad W.2,Ellinger Dorothea1,Sendtko Esther1,Rögner Matthias1,Koenig Friederike3

Affiliation:

1. Plant Biochemistry, Ruhr-University Bochum, 44780 Bochum, Germany

2. School of Biological and Chemical Sciences, Queen Mary University of London, London E1 4NS, United Kingdom

3. Molecular Plant Physiology, University of Bremen, 28359 Bremen, Germany

Abstract

Abstract The light reactions of oxygenic photosynthesis almost invariably take place in the thylakoid membranes, a highly specialized internal membrane system located in the stroma of chloroplasts and the cytoplasm of cyanobacteria. The only known exception is the primordial cyanobacterium Gloeobacter violaceus, which evolved before the appearance of thylakoids and harbors the photosynthetic complexes in the plasma membrane. Thus, studies on G. violaceus not only shed light on the evolutionary origin and the functional advantages of thylakoid membranes but also might include insights regarding thylakoid formation during chloroplast differentiation. Based on biochemical isolation and direct in vivo characterization, we report here structural and functional domains in the cytoplasmic membrane of a cyanobacterium. Although G. violaceus has no internal membranes, it does have localized domains with apparently specialized functions in its plasma membrane, in which both the photosynthetic and the respiratory complexes are concentrated. These bioenergetic domains can be visualized by confocal microscopy, and they can be isolated by a simple procedure. Proteomic analysis of these domains indicates their physiological function and suggests a protein sorting mechanism via interaction with membrane-intrinsic terpenoids. Based on these results, we propose specialized domains in the plasma membrane as evolutionary precursors of thylakoids.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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