CutA1 are a protein family present in bacteria, plants, and animals, including humans. Escherichia coli CutA1 is involved in copper tolerance, whereas mammalian proteins are implicated in the anchoring of acetylcholinesterase in neuronal cell membranes. The x-ray structures of CutA1 from E. coli and rat were determined. Both proteins are trimeric in the crystals and in solution through an inter-subunit β-sheet formation. Each subunit consists of a ferredoxin-like (β1α1β2β3α 2β4) fold with an additional strand (β5), a C-terminal helix (α3), and an unusual extended β-hairpin involving strands β2 and β3. The bacterial CutA1 is able to bind copper(II) in vitro through His2Cys coordination in a type II water-accessible site, whereas the rat protein precipitates in the presence of copper(II). The evolutionarily conserved trimeric assembly of CutA1 is reminiscent of the architecture of PII signal transduction proteins. This similarity suggests an intriguing role of CutA1 proteins in signal transduction through allosteric communications between subunits.
The evolutionarily conserved trimeric structure of CutA1 proteins suggests a role in signal transduction / F. Arnesano.; L. Banci; M. Benvenuti; I. Bertini; V. Calderone; S. Mangani; M.S. Viezzoli. - In: THE JOURNAL OF BIOLOGICAL CHEMISTRY. - ISSN 0021-9258. - STAMPA. - 278:(2003), pp. 45999-46006. [10.1074/jbc.M304398200]
The evolutionarily conserved trimeric structure of CutA1 proteins suggests a role in signal transduction
BANCI, LUCIA;BERTINI, IVANO;CALDERONE, VITO;VIEZZOLI, MARIA SILVIA
2003
Abstract
CutA1 are a protein family present in bacteria, plants, and animals, including humans. Escherichia coli CutA1 is involved in copper tolerance, whereas mammalian proteins are implicated in the anchoring of acetylcholinesterase in neuronal cell membranes. The x-ray structures of CutA1 from E. coli and rat were determined. Both proteins are trimeric in the crystals and in solution through an inter-subunit β-sheet formation. Each subunit consists of a ferredoxin-like (β1α1β2β3α 2β4) fold with an additional strand (β5), a C-terminal helix (α3), and an unusual extended β-hairpin involving strands β2 and β3. The bacterial CutA1 is able to bind copper(II) in vitro through His2Cys coordination in a type II water-accessible site, whereas the rat protein precipitates in the presence of copper(II). The evolutionarily conserved trimeric assembly of CutA1 is reminiscent of the architecture of PII signal transduction proteins. This similarity suggests an intriguing role of CutA1 proteins in signal transduction through allosteric communications between subunits.File | Dimensione | Formato | |
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