Polymorphisms in the vitamin A receptor and innate immunity genes influence the antibody response to rubella vaccination
- PMID: 20001730
- PMCID: PMC2798005
- DOI: 10.1086/649588
Polymorphisms in the vitamin A receptor and innate immunity genes influence the antibody response to rubella vaccination
Abstract
Background: Genetic polymorphisms play an important role in rubella vaccine-induced immunity.
Methods: We genotyped 714 healthy children after 2 age-appropriate doses of rubella-containing vaccine for 142 potential single-nucleotide polymorphisms (SNPs).
Results: Specific polymorphisms in the vitamin A receptor, retinoic acid-inducible gene I (RIG-I), and tripartite motif 5 and 22 (TRIM5 and TRIM22) genes were significantly associated with rubella vaccine humoral immunity. The minor allele of the rs4416353 in the vitamin A receptor gene was associated with an allele dose-related decrease (P = .019) in rubella antibody response. The minor allele of rs6793694, in the vitamin A receptor gene, was associated with an allele dose-related antibody decrease (p = .039). The minor variant of nonsynonymous SNP rs10813831 (Arg7Cys) in the RIG-I gene was associated with an allele dose-related decrease in rubella antibody level from 37.4 to 28.0 IU/mL (P = .035), whereas increased representation of the minor allele of the 5'UTR SNP (rs3824949, P = .015) in the antiretroviral TRIM5 gene was associated with an allele dose-related increase in rubella antibody. It is of particular interest that the nonsynonymous SNP rs3740996 (His43Tyr) in the TRIM5 gene was associated with variations in rubella antibody response (P = .016) after having been previously found to play a significant functional role.
Conclusions: These findings further expand our immunogenetic understanding of mechanisms of rubella vaccine-induced immunity.
Conflict of interest statement
Conflict of Interest Statement
Dr. Poland is the chair of a Safety Evaluation Committee for novel non-rubella vaccines undergoing clinical studies by Merck Research Laboratories. Dr. Jacobson serves on a Safety Review Committee for a post-licensure study of Gardasil for Kaiser-Permanente.
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References
-
- Tan PL, Jacobson RM, Poland GA, Jacobsen SJ, Pankratz VS. Twin studies of immunogenicity - determining the genetic contribution to vaccine failure. Vaccine. 2001;19:2434–2439. - PubMed
-
- Kato S, Kimura M, Takakura I, Sakakibara T, Inouye H, Tsuji K. Possible associations between HLA antigens and the immune responsiveness to attenuated rubella vaccine. Tissue Antigens. 1978;11:475–478. - PubMed
-
- Ou D, Mitchell LA, Décarie D, Tingle AJ, Nepom GT. Promiscuous T-cell recognition of a rubella capsid protein epitope restricted by DRB1*0403 and DRB1*0901 molecules sharing an HLA DR supertype. Hum Immunol. 1998;59:149–157. - PubMed
-
- Ovsyannikova IG, Jacobson RM, Vierkant RA, Jacobsen SJ, Pankratz VS, Poland GA. The contribution of HLA class I antigens in immune status following two doses of rubella vaccination. Hum Immunol. 2004;65:1506–1515. - PubMed
-
- Ovsyannikova IG, Jacobson RM, Vierkant RA, Jacobsen SJ, Pankratz VS, Poland GA. Human leukocyte antigen class II alleles and rubella-specific humoral and cell-mediated immunity following measles-mumps-rubella-II vaccination. J Infect Dis. 2005;191:515–519. - PubMed
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