Phage as a source of antibacterial genes Multiple inhibitory products encoded by
Bacteriophage-encoded proteins which inhibit or modify cellular components may contribute to antibacterial drug discovery by allowing the identification of novel targets. Given their abundance and diversity, phages may have various strategies in host inhibition and therefore may possess a variety of...
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Published in | Bacteriophage Vol. 1; no. 4; pp. 195 - 197 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Landes Bioscience
01.07.2011
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Subjects | |
Online Access | Get full text |
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Abstract | Bacteriophage-encoded proteins which inhibit or modify cellular components may contribute to antibacterial drug discovery by allowing the identification of novel targets. Given their abundance and diversity, phages may have various strategies in host inhibition and therefore may possess a variety of such proteins. Using
Rhodococcus equi
and phage YF1, we show that a single phage possesses numerous genes that inhibit the host when introduced into the host on a plasmid. These genes mostly encode proteins of unknown function, confirming the potential that this approach may have in providing new antibacterial targets. |
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AbstractList | Bacteriophage-encoded proteins which inhibit or modify cellular components may contribute to antibacterial drug discovery by allowing the identification of novel targets. Given their abundance and diversity, phages may have various strategies in host inhibition and therefore may possess a variety of such proteins. Using
Rhodococcus equi
and phage YF1, we show that a single phage possesses numerous genes that inhibit the host when introduced into the host on a plasmid. These genes mostly encode proteins of unknown function, confirming the potential that this approach may have in providing new antibacterial targets. |
Author | Dabbs, Eric R. Shibayama, Youtaro |
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Copyright | Copyright © 2011 Landes Bioscience 2011 |
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Subtitle | Multiple inhibitory products encoded by |
Title | Phage as a source of antibacterial genes |
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