New insight into the structure and regulation of the plant vacuolar H+-ATPase.

Christoph Kluge, Joachim Lahr, Miriam Hanitzsch, Susanne Bolte, Dortje Golldack, Karl-Josef Dietz

Journal: Journal of bioenergetics and biomembranes 2004;35(4):377-88

PMID: 14635783

Abstract

Plant cells are characterized by a highly active secretory system that includes the large central vacuole found in most differentiated tissues. The plant vacuolar H+-ATPase plays an essential role in maintaining the ionic and metabolic gradients across endomembranes, in activating transport processes and vesicle dynamics, and, hence, is indispensable for plant growth, development, and adaptation to changing environmental conditions. The review summarizes recent advances in elucidating the structure, subunit composition, localization, and regulation of plant V-ATPase. Emerging knowledge on subunit isogenes from Arabidopsis and rice genomic sequences as well as from Mesembryanthemum illustrates another level of complexity, the regulation of isogene expression and function of subunit isoforms. To this end, the review attempts to define directions of future research on plant V-ATPase.

Address: Department of Biochemistry and Physiology of Plants, University of Bielefeld-W5, D-33501 Bielefeld, Germany.

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