Construction of a chimeric ArsA-ArsB protein for overexpression of the oxyanion-translocating ATPase.

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Construction of a chimeric ArsA-ArsB protein for overexpression of the oxyanion-translocating ATPase.

Resistance to toxic oxyanions of arsenic and antimony in Escherichia coli is conferred by the conjugative R-factor R773, which encodes an ATP-driven anion extrusion pump. The ars operon is composed of three structural genes, arsA, arsB, and arsC. Although transcribed as a single unit, the three genes are differentially expressed as a result of translational differences, such that the ArsA and A...

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Substrate-induced dimerization of the ArsA protein, the catalytic component of an anion-translocating ATPase.

The ArsA protein, the catalytic component of the plasmid-encoded resistance system for removal of the toxic oxyanions arsenite, antimonite, and arsenate from bacterial cells, catalyzes oxyanion-stimulated ATP hydrolysis. Three lines of evidence suggest that the ArsA protein functions as a homodimer. First, the ArsA protein was modified with 5'-p-fluorosulfonyl-benzoyladenosine (FSBA). Antimonit...

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Functional Promiscuity of Homologues of the Bacterial ArsA ATPases

The ArsA ATPase of E. coli plays an essential role in arsenic detoxification. Published evidence implicates ArsA in the energization of As(III) efflux via the formation of an oxyanion-translocating complex with ArsB. In addition, eukaryotic ArsA homologues have several recognized functions unrelated to arsenic resistance. By aligning ArsA homologues, constructing phylogenetic trees, examining A...

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ژورنال

عنوان ژورنال: Journal of Biological Chemistry

سال: 1992

ISSN: 0021-9258

DOI: 10.1016/s0021-9258(18)35676-x