Structure of a prokaryotic virtual proton pump at 3.2 A resolution.

Structure of a prokaryotic virtual proton pump at 3.2 A resolution.
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DOI:
10.1038/nature08201
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发表时间:
2009-08-20
期刊:
影响因子:
64.8
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--
中科院分区:
综合性期刊1区
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--
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To reach the mammalian gut, enteric bacteria must pass through the stomach. Many such organisms survive exposure to the harsh gastric environment (pH 1.5–4) by mounting extreme acid-resistance responses, one of which, the arginine-dependent system ofEscherichia coli, has been studied at levels of cellular physiology, molecular genetics and protein biochemistry,,,,,,. This multiprotein system keeps the cytoplasm above pH 5 during acid challenge by continually pumping protons out of the cell using the free energy of arginine decarboxylation. At the heart of the process is a ‘virtual proton pump’ in the inner membrane, called AdiC,, that importsl-arginine from the gastric juice and exports its decarboxylation product agmatine. AdiC belongs to the APC superfamily of membrane proteins,,, which transports amino acids, polyamines and organic cations in a multitude of biological roles, including delivery of arginine for nitric oxide synthesis, facilitation of insulin release from pancreatic β-cells, and, when inappropriately overexpressed, provisioning of certain fast-growing neoplastic cells with amino acids,. High-resolution structures and detailed transport mechanisms of APC transporters are currently unknown. Here we describe a crystal structure of AdiC at 3.2 Å resolution. The protein is captured in an outward-open, substrate-free conformation with transmembrane architecture remarkably similar to that seen in four other families of apparently unrelated transport proteins.