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Tolerance of a Phage Element by Streptococcus Pneumoniae Leads to a Fitness Defect During Colonization

Overview
Journal J Bacteriol
Specialty Microbiology
Date 2014 May 13
PMID 24816604
Citations 20
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Abstract

The pathogenesis of the disease caused by Streptococcus pneumoniae begins with colonization of the upper respiratory tract. Temperate phages have been identified in the genomes of up to 70% of clinical isolates. How these phages affect the bacterial host during colonization is unknown. Here, we examined a clinical isolate that carries a novel prophage element, designated Spn1, which was detected in both integrated and episomal forms. Surprisingly, both lytic and lysogenic Spn1 genes were expressed under routine growth conditions. Using a mouse model of asymptomatic colonization, we demonstrate that the Spn1(-) strain outcompeted the Spn1(+) strain >70-fold. To determine if Spn1 causes a fitness defect through a trans-acting factor, we constructed an Spn1(+) mutant that does not become an episome or express phage genes. This mutant competed equally with the Spn1(-) strain, indicating that expression of phage genes or phage lytic activity is required to confer this fitness defect. In vitro, we demonstrate that the presence of Spn1 correlated with a defect in LytA-mediated autolysis. Furthermore, the Spn1(+) strain displayed increased chain length and resistance to lysis by penicillin compared to the Spn(-) strain, indicating that Spn1 alters the cell wall physiology of its host strain. We posit that these changes in cell wall physiology allow for tolerance of phage gene products and are responsible for the relative defect of the Spn1(+) strain during colonization. This study provides new insight into how bacteria and prophages interact and affect bacterial fitness in vivo.

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References
1.
Obregon V, Garcia P, Lopez R, Garcia J . Molecular and biochemical analysis of the system regulating the lytic/lysogenic cycle in the pneumococcal temperate phage MM1. FEMS Microbiol Lett. 2003; 222(2):193-7. DOI: 10.1016/S0378-1097(03)00281-7. View

2.
McCool T, Weiser J . Limited role of antibody in clearance of Streptococcus pneumoniae in a murine model of colonization. Infect Immun. 2004; 72(10):5807-13. PMC: 517579. DOI: 10.1128/IAI.72.10.5807-5813.2004. View

3.
Hiller N, Ahmed A, Powell E, Martin D, Eutsey R, Earl J . Generation of genic diversity among Streptococcus pneumoniae strains via horizontal gene transfer during a chronic polyclonal pediatric infection. PLoS Pathog. 2010; 6(9):e1001108. PMC: 2940740. DOI: 10.1371/journal.ppat.1001108. View

4.
Ubukata K, Konno M, Fujii R . Transduction of drug resistance to tetracycline, chloramphenicol, macrolides, lincomycin and clindamycin with phages induced from Streptococcus pyogenes. J Antibiot (Tokyo). 1975; 28(9):681-8. DOI: 10.7164/antibiotics.28.681. View

5.
Wu H, Virolainen A, Mathews B, King J, Russell M, Briles D . Establishment of a Streptococcus pneumoniae nasopharyngeal colonization model in adult mice. Microb Pathog. 1997; 23(3):127-37. DOI: 10.1006/mpat.1997.0142. View