Kcv is a 94-amino acid protein encoded by chlorella virus PBCV-1 that corresponds to the pore module of K+ channels. Therefore, Kcv can be a model for studying the protein design of K+ channel pores. We analyzed the molecular diversity generated by similar to1 billion years of evolution on kcv genes isolated from 40 additional chlorella viruses. Because the channel is apparently required for virus replication, the Kcv variants are all functional and contain multiple and dispersed substitutions that represent a repertoire of allowed sets of amino acid substitutions ( from 4 to 12 amino acids). Correlations between amino acid substitutions and the new properties displayed by these channels guided site-directed mutations that revealed synergistic amino acid interactions within the protein as well as previously unknown interactions between distant channel domains. The effects of these multiple changes were not predictable from a priori structural knowledge of the channel pore.

Long-distance interactions within the potassium channel pore are revealed by molecular diversity of viral proteins / S. Gazzarrini, M. Kang, J.L. Van Etten, D. DiFrancesco, S. Tayefeh, S.M. Kast, G. Thiel, A. Moroni. - In: THE JOURNAL OF BIOLOGICAL CHEMISTRY. - ISSN 0021-9258. - 279:27(2004), pp. 28443-28449. [10.1074/jbc.M401184200]

Long-distance interactions within the potassium channel pore are revealed by molecular diversity of viral proteins

S. Gazzarrini
Primo
;
D. Difrancesco;A. Moroni
Ultimo
2004

Abstract

Kcv is a 94-amino acid protein encoded by chlorella virus PBCV-1 that corresponds to the pore module of K+ channels. Therefore, Kcv can be a model for studying the protein design of K+ channel pores. We analyzed the molecular diversity generated by similar to1 billion years of evolution on kcv genes isolated from 40 additional chlorella viruses. Because the channel is apparently required for virus replication, the Kcv variants are all functional and contain multiple and dispersed substitutions that represent a repertoire of allowed sets of amino acid substitutions ( from 4 to 12 amino acids). Correlations between amino acid substitutions and the new properties displayed by these channels guided site-directed mutations that revealed synergistic amino acid interactions within the protein as well as previously unknown interactions between distant channel domains. The effects of these multiple changes were not predictable from a priori structural knowledge of the channel pore.
Settore BIO/09 - Fisiologia
Settore BIO/04 - Fisiologia Vegetale
2004
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/65357
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