Increasing intracellular magnesium levels with the 31-amino acid MgtS protein

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Abstract

Synthesis of the 31-amino acid, inner membrane protein MgtS (formerly denoted YneM) is induced by very low Mg2+ in a PhoPQdependent manner in Escherichia coli. Here we report that MgtS acts to increase intracellular Mg2+ levels and maintain cell integrity upon Mg2+ depletion. Upon development of a functional tagged derivative of MgtS, we found that MgtS interacts with MgtA to increase the levels of this P-type ATPase Mg2+ transporter under Mg2+-limiting conditions. Correspondingly, the effects of MgtS upon Mg2+ limitation are lost in a ÄmgtA mutant, and MgtA overexpression can suppress the ÄmgtS phenotype. MgtS stabilization of MgtA provides an additional layer of regulation of this tightly controlled Mg2+ transporter and adds to the list of small proteins that regulate inner membrane transporters.

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Wang, H., Yin, X., Orr, M. W., Dambach, M., Curtis, R., & Storz, G. (2017). Increasing intracellular magnesium levels with the 31-amino acid MgtS protein. Proceedings of the National Academy of Sciences of the United States of America, 114(22), 5689–5694. https://doi.org/10.1073/pnas.1703415114

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