A Multi-Serotype Approach Clarifies the Catabolite Control Protein A Regulon in the Major Human Pathogen Group A Streptococcus
Author
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DebRoy, Sruti
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Saldaña, Miguel
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Travisany, Dante
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Montano, Andrew
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Galloway Peña, Jessica
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Horstmann, Nicola
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Yao, Hui
Author
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González Canales, Mauricio
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Maass Sepúlveda, Alejandro
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Latorre Mora, Mauricio
Author
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Shelburne, Samuel
Admission date
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2017-01-04T20:29:11Z
Available date
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2017-01-04T20:29:11Z
Publication date
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2016
Cita de ítem
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Scientific Reports 6:32442
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Identifier
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10.1038/srep32442
Identifier
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https://repositorio.uchile.cl/handle/2250/142263
Abstract
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Catabolite control protein A (CcpA) is a highly conserved, master regulator of carbon source utilization in gram-positive bacteria, but the CcpA regulon remains ill-defined. In this study we aimed to clarify the CcpA regulon by determining the impact of CcpA-inactivation on the virulence and transcriptome of three distinct serotypes of the major human pathogen Group A Streptococcus (GAS). CcpA-inactivation significantly decreased GAS virulence in a broad array of animal challenge models consistent with the idea that CcpA is critical to gram-positive bacterial pathogenesis. Via comparative transcriptomics, we established that the GAS CcpA core regulon is enriched for highly conserved CcpA binding motifs (i.e. cre sites). Conversely, strain-specific differences in the CcpA transcriptome seems to consist primarily of affected secondary networks. Refinement of cre site composition via analysis of the core regulon facilitated development of a modified cre consensus that shows promise for improved prediction of CcpA targets in other medically relevant gram-positive pathogens
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Patrocinador
dc.description.sponsorship
FONDECYT 11150679
Center for Genome Regulation FONDAP 15090007
Basal grant of the Center for Mathematical Modeling UMI2807 UCHILE-CNRS PFB03
CCSG P30 CA016672
Research Animal Support Facility
Sequencing and Microarray facility at MD Anderson Cancer Center
RO1 AI089891