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The Origin of Membrane Bioenergetics

CellPublished 1 December 2012Open access
Nick Lane, William Martin
Citations443
SJR quartileQ1
SJR score22.61
SNIP7.62
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TL;DR

This work uses new insights into anaerobe metabolism to propose geochemical origins that account for the ubiquity of chemiosmotic coupling, and Na(+)/H(+) transporters in particular, and accounts for the Na(+))/H (+) promiscuity of bioenergetic proteins.

Abstract

Harnessing energy as ion gradients across membranes is as universal as the genetic code. We leverage new insights into anaerobe metabolism to propose geochemical origins that account for the ubiquity of chemiosmotic coupling, and Na(+)/H(+) transporters in particular. Natural proton gradients acting across thin FeS walls within alkaline hydrothermal vents could drive carbon assimilation, leading to the emergence of protocells within vent pores. Protocell membranes that were initially leaky would eventually become less permeable, forcing cells dependent on natural H(+) gradients to pump Na(+) ions. Our hypothesis accounts for the Na(+)/H(+) promiscuity of bioenergetic proteins, as well as the deep divergence between bacteria and archaea.

Keywords

Materials ScienceBiochemistry, Genetics and Molecular BiologyPhysics and Astronomy