4.6 Article

Genetic and functional analysis of common MRC1 exon 7 polymorphisms in leprosy susceptibility

Journal

HUMAN GENETICS
Volume 127, Issue 3, Pages 337-348

Publisher

SPRINGER
DOI: 10.1007/s00439-009-0775-x

Keywords

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Funding

  1. American Leprosy Missions
  2. Canadian Institutes of Health Research (CIHR)
  3. MAGRALEPRE from l'Ordre de Malte
  4. Rockefeller University Center for Clinical and Translational Science [5UL1RR024143-03]
  5. Rockefeller University
  6. Natural Science and Engineering Research Council of Canada (NSERC)
  7. Assistance Publique-Hopitaux de Paris
  8. Programme de Recherche Fondamentale en Microbiologie Maladies Infectieuses et Parasitaires (PRFMMIP)
  9. Agence Nationale de la Recherche (ANR) of the Ministere Francais de l'Education Nationale de la Recherche et de la Technologie

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The chromosomal region 10p13 has been linked to paucibacillary leprosy in two independent studies. The MRC1 gene, encoding the human mannose receptor (MR), is located in the 10p13 region and non-synonymous SNPs in exon 7 of the gene have been suggested as leprosy susceptibility factors. We determined that G396S is the only non-synonymous exon 7-encoded polymorphism in 396 unrelated Vietnamese subjects. This SNP was genotyped in 490 simplex and 90 multiplex leprosy families comprising 704 patients (47% paucibacillary; 53% multibacillary). We observed significant under-transmission of the serine allele of the G396S polymorphism with leprosy per se (P = 0.036) and multibacillary leprosy (P = 0.034). In a sample of 384 Brazilian leprosy cases (51% paucibacillary; 49% multibacillary) and 399 healthy controls, we observed significant association of the glycine allele of the G396S polymorphism with leprosy per se (P = 0.016) and multibacillary leprosy (P = 0.023). In addition, we observed a significant association of exon 7 encoded amino acid haplotypes with leprosy per se (P = 0.012) and multibacillary leprosy (P = 0.004). Next, we tested HEK293 cells over-expressing MR constructs (293-MR) with three exon 7 haplotypes of MRC1 for their ability to bind and internalize ovalbumin and zymosan, two classical MR ligands. No difference in uptake was measured between the variants. In addition, 293-MR failed to bind and internalize viable Mycobacterium leprae and BCG. We propose that the MR-M. leprae interaction is modulated by an accessory host molecule of unknown identity.

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