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Deciphering Genetic Susceptibility to Tuberculous Meningitis
Haiko Schurz1, Brigitte Glanzmann1,2, Nicholas Bowker1
1DSI-NRF Centre of Excellence for Biomedical Tuberculosis Research, South African Medical Research Council Centre for Tuberculosis Research, Division of Molecular Biology and Human Genetics, Faculty of Medicine and Health Sciences, Stellenbosch University, Cape Town, South Africa.
Abstract:
Tuberculous meningitis (TBM) is the most severe form of extrapulmonary tuberculosis (TB) that arises when a caseating meningeal granuloma discharges its contents into the subarachnoid space. It accounts for ~1% of all disease caused by Mycobacterium tuberculosis and the age of peak incidence is from 2-4 years. The exact pathogenesis of TBM is still not fully understood and the mechanism(s) by which the bacilli initially invade the blood-brain-barrier are still to be elucidated. This study investigated the involvement of the host genome in TBM susceptibility, by considering common variants (minor allele frequency (MAF) >5%) using microarray genotyping and rare variants (MAF <1%) via exome sequencing. A total of 123 TBM cases, 400 pulmonary TB (pTB) cases and 477 healthy controls were genotyped on the MEGA array. A genome-wide association study (GWAS) comparing 114 TBM cases to 395 healthy controls showed no association with TBM susceptibility. A second analysis comparing 114 TBM cases to 382 pTB cases was conducted to investigate variants associated with different TB phenotypes. No significant associations were found with progression from pTB to TBM. Ten TBM cases and 10 healthy controls were exome sequenced. Gene set association tests SKAT-O and SKAT Common Rare were used to assess the association of rare SNPs and the cumulative effect of both common and rare SNPs with susceptibility to TBM, respectively. Ingenuity Pathway Analysis (IPA) of the top-hits of the SKAT-O analysis showed that NOD2 and CYP4F2 are both important in TBM pathogenesis and highlighted these as targets for future study. For the SKAT Common Rare analysis Centriolar Coiled-Coil Protein 110 (CCP110) was nominally associated (p = 5.89x10-6) with TBM susceptibility. In addition, several top-hit genes ascribed to the development of the central nervous system (CNS) and innate immune system regulation were identified. Exome sequencing and GWAS of our TBM cohort has identified a single previously undescribed association of CCP110 with TBM susceptibility. These results advance our understanding of TBM in terms of both variants and genes that influence susceptibility. In addition, several candidate genes involved in innate immunity have been identified for further genotypic and functional investigation.
Insights
This study investigated host genome involvement in tuberculous meningitis (TBM) susceptibility. A novel association between CCP110 and TBM risk was identified, advancing understanding of this severe TB form.
Area of Science:
- Genetics
- Immunology
- Infectious Diseases
Background:
- Tuberculous meningitis (TBM) is a severe form of tuberculosis, primarily affecting young children.
- The precise mechanisms of TBM pathogenesis and host genetic factors influencing susceptibility remain largely unknown.
Purpose of the Study:
- To investigate the role of common and rare genetic variants in TBM susceptibility.
- To identify host genes associated with the progression from pulmonary TB to TBM.
Main Methods:
- Genome-wide association study (GWAS) and exome sequencing were employed.
- Analysis included TBM cases, pulmonary TB cases, and healthy controls.
- Gene set association tests (SKAT-O, SKAT Common Rare) and Ingenuity Pathway Analysis (IPA) were utilized.
Main Results:
- GWAS did not reveal significant associations with TBM susceptibility or progression from pulmonary TB to TBM.
- Exome sequencing identified a nominal association between Centriolar Coiled-Coil Protein 110 (CCP110) and TBM susceptibility.
- NOD2 and CYP4F2 were highlighted as potentially important in TBM pathogenesis.
Conclusions:
- The study identified CCP110 as a novel candidate gene associated with TBM susceptibility.
- Findings contribute to understanding the genetic underpinnings of TBM.
- Candidate genes involved in innate immunity warrant further investigation.
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