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MBL genotype and risk of invasive pneumococcal disease: a case-control study
Suchismita Roy1, Kyle Knox, Shelley Segal
1Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, UK.
Background:
Streptococcus pneumoniae is a major cause of morbidity and mortality in developed and developing countries. No common genetic determinants of susceptibility have been defined. Mannose-binding lectin (MBL) is a key mediator of innate host immunity that activates the complement pathway and directly opsonises some infectious pathogens. Mutations in three codons in the MBL gene have been identified, and individuals homozygous for a mutant genotype have very little or no serum MBL. We did a case-control study in the UK to assess whether these mutant genotypes were associated with invasive pneumococcal disease.
Methods:
The frequencies of genotypes defined by the three mutations in codons 52, 54, and 57, and a functional promoter polymorphism at -221, were compared in a two-stage study of 337 patients with invasive pneumococcal disease and 1032 controls. All individuals were recruited from an ethnically homogeneous white population in Oxfordshire, UK. Patients had S pneumoniae isolated from a normally sterile site.
Findings:
In our initial set of participants, 28 (12%) of 229 patients and 18 (5%) of 353 controls were homozygotes for MBL codon variants (odds ratio 2.59 [95% CI 1.39-4.83], p=0.002). Neither heterozygosity for these codon variants nor the promoter polymorphism was associated with susceptibility. In a confirmatory study, 11 (10%) of 108 patients were MBL homozygotes compared with 36 (5%) of 679 controls (p=0.046).
Interpretation:
Homozygotes for MBL codon variants, who represent about 5% of north Europeans and north Americans and larger proportions of populations in many developing countries, could be at substantially increased risk of invasive pneumococcal disease.
Insights
Individuals with homozygous mutations in the mannose-binding lectin (MBL) gene show increased susceptibility to invasive pneumococcal disease. This genetic factor may significantly elevate the risk of severe infections in certain populations.
Area of Science:
- Immunology
- Genetics
- Infectious Diseases
Background:
- Streptococcus pneumoniae causes significant global morbidity and mortality.
- Mannose-binding lectin (MBL) is crucial for innate immunity, opsonizing pathogens and activating complement.
- Genetic MBL deficiency, particularly homozygous MBL codon variants, leads to very low or absent serum MBL levels.
Purpose of the Study:
- To investigate the association between MBL gene mutations and susceptibility to invasive pneumococcal disease (IPD).
- To determine if specific MBL genotypes confer increased risk for IPD in a UK population.
Main Methods:
- A two-stage case-control study was conducted in Oxfordshire, UK.
- Genotype frequencies for MBL codon variants (codons 52, 54, 57) and a promoter polymorphism (-221) were compared between 337 IPD patients and 1032 controls.
- Participants were from an ethnically homogeneous white population, with S. pneumoniae isolated from sterile sites in patients.
Main Results:
- Homozygosity for MBL codon variants was significantly associated with increased risk of IPD (OR 2.59, p=0.002 in initial analysis; p=0.046 in confirmatory study).
- Approximately 5% of North Europeans and North Americans are MBL homozygotes.
- Neither MBL heterozygosity nor the promoter polymorphism showed an association with IPD susceptibility.
Conclusions:
- Homozygotes for MBL codon variants face a substantially increased risk of invasive pneumococcal disease.
- This finding highlights a specific genetic determinant of susceptibility to IPD.
- The prevalence of these MBL genotypes suggests a significant public health implication, especially in developing countries.
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