Population fitness and the regulation of Escherichia coli genes by bacterial viruses.

Temperate bacteriophage parasitize their host by integrating into the host genome where they provide additional genetic information that confers higher fitness on the host bacterium by protecting it against invasion by other bacteriophage, by increasing serum resistance, and by coding for toxins and...

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Format: Article
Language:English
Published: Public Library of Science (PLoS) 2005-07-01
Series:PLoS Biology
Online Access:http://dx.doi.org/10.1371/journal.pbio.0030229
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spelling doaj-c93949b631ae4c70b0b4e0e3a30f13712021-07-02T01:58:14ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852005-07-0137e229Population fitness and the regulation of Escherichia coli genes by bacterial viruses.Temperate bacteriophage parasitize their host by integrating into the host genome where they provide additional genetic information that confers higher fitness on the host bacterium by protecting it against invasion by other bacteriophage, by increasing serum resistance, and by coding for toxins and adhesion factors that help the parasitized bacterium invade or evade its host. Here we ask if a temperate phage can also regulate host genes. We find several different host functions that are down-regulated in lysogens. The pckA gene, required for gluconeogenesis in all living systems, is regulated directly by the principal repressor of many different temperate prophage, the cI protein. cI binds to the regulatory region of pckA, thereby shutting down pckA transcription. The pckA regulatory region has target sequences for many other temperate phage repressors, and thus we suggest that down-regulation of the host pckA pathway increases lysogen fitness by lowering the growth rate of lysogens in energy-poor environments, perhaps as an adaptive response to the host predation system or as an aspect of lysogeny that must be offset by down-regulating pckA.http://dx.doi.org/10.1371/journal.pbio.0030229
collection DOAJ
language English
format Article
sources DOAJ
title Population fitness and the regulation of Escherichia coli genes by bacterial viruses.
spellingShingle Population fitness and the regulation of Escherichia coli genes by bacterial viruses.
PLoS Biology
title_short Population fitness and the regulation of Escherichia coli genes by bacterial viruses.
title_full Population fitness and the regulation of Escherichia coli genes by bacterial viruses.
title_fullStr Population fitness and the regulation of Escherichia coli genes by bacterial viruses.
title_full_unstemmed Population fitness and the regulation of Escherichia coli genes by bacterial viruses.
title_sort population fitness and the regulation of escherichia coli genes by bacterial viruses.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2005-07-01
description Temperate bacteriophage parasitize their host by integrating into the host genome where they provide additional genetic information that confers higher fitness on the host bacterium by protecting it against invasion by other bacteriophage, by increasing serum resistance, and by coding for toxins and adhesion factors that help the parasitized bacterium invade or evade its host. Here we ask if a temperate phage can also regulate host genes. We find several different host functions that are down-regulated in lysogens. The pckA gene, required for gluconeogenesis in all living systems, is regulated directly by the principal repressor of many different temperate prophage, the cI protein. cI binds to the regulatory region of pckA, thereby shutting down pckA transcription. The pckA regulatory region has target sequences for many other temperate phage repressors, and thus we suggest that down-regulation of the host pckA pathway increases lysogen fitness by lowering the growth rate of lysogens in energy-poor environments, perhaps as an adaptive response to the host predation system or as an aspect of lysogeny that must be offset by down-regulating pckA.
url http://dx.doi.org/10.1371/journal.pbio.0030229
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