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Updated: Aug 28, 2025

DNA Fingerprinting of Mycobacterium leprae Strains Using Variable Number Tandem Repeat VNTR - Fragment Length Analysis FLA
Published on: July 15, 2011
Genome-wide association study of leprosy in Malawi and Mali
James J Gilchrist1,2,3, Kathryn Auckland3, Tom Parks3,4
1Department of Paediatrics, University of Oxford, Oxford, United Kingdom.
Abstract:
Leprosy is a chronic infection of the skin and peripheral nerves caused by Mycobacterium leprae. Despite recent improvements in disease control, leprosy remains an important cause of infectious disability globally. Large-scale genetic association studies in Chinese, Vietnamese and Indian populations have identified over 30 susceptibility loci for leprosy. There is a significant burden of leprosy in Africa, however it is uncertain whether the findings of published genetic association studies are generalizable to African populations. To address this, we conducted a genome-wide association study (GWAS) of leprosy in Malawian (327 cases, 436 controls) and Malian (247 cases, 368 controls) individuals. In that analysis, we replicated four risk loci previously reported in China, Vietnam and India; MHC Class I and II, LACC1 and SLC29A3. We further identified a novel leprosy susceptibility locus at 10q24 (rs2015583; combined p = 8.81 × 10-9; OR = 0.51 [95% CI 0.40 - 0.64]). Using publicly-available data we characterise regulatory activity at this locus, identifying ACTR1A as a candidate mediator of leprosy risk. This locus shows evidence of recent positive selection and demonstrates pleiotropy with established risk loci for inflammatory bowel disease and childhood-onset asthma. A shared genetic architecture for leprosy and inflammatory bowel disease has been previously described. We expand on this, strengthening the hypothesis that selection pressure driven by leprosy has shaped the evolution of autoimmune and atopic disease in modern populations. More broadly, our data highlights the importance of defining the genetic architecture of disease across genetically diverse populations, and that disease insights derived from GWAS in one population may not translate to all affected populations.
Insights
This study investigated leprosy genetics in African populations, identifying a new susceptibility locus at 10q24 and confirming known risk genes. Findings highlight the need for diverse population studies in genetic research for infectious diseases.
Area of Science:
- Genetics
- Infectious Diseases
- Human Evolution
Background:
- Leprosy, a chronic infection by Mycobacterium leprae, causes significant global disability.
- Over 30 leprosy susceptibility loci have been identified in Asian populations.
- The generalizability of these genetic findings to African populations, which bear a substantial leprosy burden, is unknown.
Purpose of the Study:
- To conduct a genome-wide association study (GWAS) for leprosy in Malawian and Malian populations.
- To determine if previously identified leprosy risk loci are relevant in African populations.
- To identify novel genetic loci associated with leprosy susceptibility in Africa.
Main Methods:
- Genome-wide association study (GWAS) in Malawian (327 cases, 436 controls) and Malian (247 cases, 368 controls) individuals.
- Replication analysis of known leprosy risk loci.
- Characterization of regulatory activity and evolutionary selection at novel loci using public data.
Main Results:
- Replication of four known leprosy risk loci: MHC Class I and II, LACC1, and SLC29A3.
- Identification of a novel leprosy susceptibility locus at 10q24 (rs2015583) with genome-wide significance.
- The novel locus shows evidence of positive selection and pleiotropy with inflammatory bowel disease and childhood-onset asthma risk loci.
Conclusions:
- Genetic findings for leprosy susceptibility are not universally generalizable across diverse populations.
- The novel 10q24 locus, with ACTR1A as a potential mediator, contributes to leprosy risk in African populations.
- Leprosy may have influenced the evolution of autoimmune and atopic diseases through shared genetic pathways.

