Assay of locus-specific genetic load implicates rare Toll-like receptor 4 mutations in meningococcal susceptibility
Irina Smirnova1, Navjiwan Mann, Annemiek Dols
1Department of Immunology, The Scripps Research Institute, La Jolla, CA 92037, USA.
Abstract:
As the central component of the human endotoxin sensor, Toll-like receptor 4 (TLR4) functions in the early detection and response to Gram-negative infection. We therefore examined a large collection of patients with meningococcal sepsis, comparing the frequency of rare TLR4 coding changes to those in an ethnically matched control population. TLR2 sequences were also acquired and compared. Total nucleotide variation at TLR4 and TLR2 loci was assayed by using a novel computational method. A total of 3.01 megabases of coding sequence was captured at these loci from white subjects with or without meningococcal disease. Authentic mutations were found and high-quality, bidirectional coverage was measured across the coding region by using mutationseeker, a program specifically designed to assay locus-specific genetic load. Using a method that obviates the confounding effect of linkage disequilibrium, we observed that rare heterozygous missense mutations of TLR4 contribute to the development of systemic meningococcal disease among white populations of the southern United Kingdom (P = 0.02; odds ratio 8.2). When results from all white populations were pooled, an overwhelmingly significant excess of such mutations was observed among individuals with disease (P = 2 x 10(-6); odds ratio 27.0). The common white TLR4 variant (TLR4B), synonymous TLR4 substitutions, and variant TLR2 alleles were not significantly over-represented among patients with systemic meningococcal infections. No single variant of TLR4 was significantly over-represented in the meningococcal population. Collectively, however, rare TLR4 coding variants were markedly over-represented. Sensing via TLR4 probably contributes to the early containment of meningococcal infection, and sensing defects create increased risk of disease.
Insights
Rare genetic changes in Toll-like receptor 4 (TLR4) increase the risk of severe meningococcal disease. Defects in TLR4 sensing may impair the body's early defense against this Gram-negative infection.
Area of Science:
- Immunology
- Genetics
- Infectious Disease
Background:
- Toll-like receptor 4 (TLR4) is crucial for detecting Gram-negative bacteria and initiating immune responses.
- Meningococcal sepsis, caused by Neisseria meningitidis, is a severe infection with significant mortality.
- Genetic variations in immune response genes may influence susceptibility to infectious diseases.
Purpose of the Study:
- To investigate the association between rare coding variations in Toll-like receptor 4 (TLR4) and meningococcal sepsis.
- To compare the frequency of TLR4 and TLR2 coding changes in patients with meningococcal disease versus healthy controls.
Main Methods:
- A cohort of patients with meningococcal sepsis and ethnically matched controls were analyzed.
- Sequencing of TLR4 and TLR2 coding regions was performed.
- A novel computational method, mutationseeker, was used to assay genetic variation and control for linkage disequilibrium.
Main Results:
- Rare heterozygous missense mutations in TLR4 were significantly over-represented in individuals with systemic meningococcal disease (P = 0.02, OR = 8.2 in southern UK; P = 2 x 10(-6), OR = 27.0 when pooled).
- No significant over-representation was found for common TLR4 variants (TLR4B), synonymous TLR4 substitutions, or variant TLR2 alleles.
- Collectively, rare TLR4 coding variants showed a marked excess in patients with meningococcal infections.
Conclusions:
- Rare TLR4 coding variants contribute to the susceptibility to systemic meningococcal disease in white populations.
- Defects in TLR4-mediated sensing likely increase the risk of developing severe meningococcal infections.
- TLR4 signaling plays a critical role in the early containment of Neisseria meningitidis infections.

