Accumulation of ambient phosphate into the periplasm of marine bacteria is proton motive force dependent.

Kamennaya, Nina A; Geraki, Kalotina; Scanlan, David J; Zubkov, Mikhail V · Nat Commun · 2020

basic_science · Level V

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Abstract

Bacteria acquire phosphate (P<sub>i</sub>) by maintaining a periplasmic concentration below environmental levels. We recently described an extracellular P<sub>i</sub> buffer which appears to counteract the gradient required for P<sub>i</sub> diffusion. Here, we demonstrate that various treatments to outer membrane (OM) constituents do not affect the buffered P<sub>i</sub> because bacteria accumulate P<sub>i</sub> in the periplasm, from which it can be removed hypo-osmotically. The periplasmic P<sub>i</sub> can be gradually imported into the cytoplasm by ATP-powered transport, however, the proton motive force (PMF) is not required to keep P<sub>i</sub> in the periplasm. In contrast, the accumulation of P<sub>i</sub> into the periplasm across the OM is PMF-dependent and can be enhanced by light energy. Because the conventional mechanism of P<sub>i</sub>-specific transport cannot explain P<sub>i</sub> accumulation in the periplasm we propose that periplasmic P<sub>i</sub> anions pair with chemiosmotic cations of the PMF and millions of accumulated P<sub>i</sub> pairs could influence the periplasmic osmolarity of marine bacteria.

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