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Updated: Apr 27, 2026

Capsular Serotyping of Streptococcus pneumoniae Using the Quellung Reaction
Published on: February 24, 2014
Protective role of the capsule and impact of serotype 4 switching on Streptococcus mitis
Håkon V Rukke1, Raja Sab Kalluru2, Urska Repnik2
1Department of Oral Biology, Faculty of Dentistry, University of Oslo, Oslo, Norway.
Abstract:
The polysaccharide capsule surrounding Streptococcus pneumoniae is essential for virulence. Recently, Streptococcus mitis, a human commensal and a close relative of S. pneumoniae, was also shown to have a capsule. In this study, the S. mitis type strain switched capsule by acquisition of the serotype 4 capsule locus of S. pneumoniae TIGR4, following induction of competence for natural transformation. Comparison of the wild type with the capsule-switching mutant and with a capsule deletion mutant showed that the capsule protected S. mitis against phagocytosis by RAW 264.7 macrophages. This effect was enhanced in the S. mitis strain expressing the S. pneumoniae capsule, which showed, in addition, increased resistance against early clearance in a mouse model of lung infection. Expression of both capsules also favored survival in human blood, and the effect was again more pronounced for the capsule-switching mutant. S. mitis survival in horse blood or in a mouse model of bacteremia was not significantly different between the wild type and the mutant strains. In all models, S. pneumoniae TIGR4 showed higher rates of survival than the S. mitis type strain or the capsule-switching mutant, except in the lung model, in which significant differences between S. pneumoniae TIGR4 and the capsule-switching mutant were not observed. Thus, we identified conditions that showed a protective function for the capsule in S. mitis. Under such conditions, S. mitis resistance to clearance could be enhanced by capsule switching to serotype 4, but it was enhanced to levels lower than those for the virulent strain S. pneumoniae TIGR4.
Insights
The capsule of Streptococcus mitis protects it from immune cells and infection. Capsule switching to Streptococcus pneumoniae serotype 4 enhances S. mitis survival but not to the level of the virulent S. pneumoniae TIGR4 strain.
Area of Science:
- Microbiology
- Immunology
- Bacterial Pathogenesis
Background:
- The polysaccharide capsule is a key virulence factor for Streptococcus pneumoniae.
- Streptococcus mitis, a human commensal bacterium, also possesses a capsule.
- Natural transformation allows genetic exchange between related bacterial species.
Purpose of the Study:
- To investigate the role of the capsule in Streptococcus mitis virulence.
- To determine if capsule switching affects S. mitis survival and resistance to host defenses.
- To compare the protective effects of S. mitis and S. pneumoniae capsules in S. mitis.
Main Methods:
- Induced natural transformation in S. mitis to acquire the S. pneumoniae serotype 4 capsule locus.
- Compared wild-type S. mitis, a capsule-switching mutant, and a capsule deletion mutant.
- Assessed bacterial survival and resistance to phagocytosis (macrophages) and clearance (mouse models, human/horse blood).
Main Results:
- The capsule protects S. mitis from macrophage phagocytosis.
- Expression of the S. pneumoniae capsule in S. mitis enhanced resistance to lung infection clearance and human blood survival.
- Capsule switching improved S. mitis survival but remained lower than the highly virulent S. pneumoniae TIGR4, except in the lung model.
Conclusions:
- The capsule plays a protective role in S. mitis.
- Capsule switching can enhance S. mitis resistance to host defenses under specific conditions.
- While capsule switching offers advantages, S. mitis does not achieve the same virulence level as S. pneumoniae TIGR4.
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