[an error occurred while processing this directive]
en

The relationship between the polymorphism of immunity genes and both aging and age-related diseases

Expand
  • 1. Central Laboratory, Huadong Hospital, Shanghai Medical College, Fudan University, Shanghai 200040, China 2. Department of Aging, Antiaging and Cognitive Function, Shanghai Institute of Geriatrics and Gerontology, Shanghai Medical College, Fudan University, Shanghai 200040, China

Received date: 2013-01-22

  Revised date: 2013-03-26

  Online published: 2013-07-25

Abstract

Aging is acommon, progressive and irreversible state of multi-cell dysfunction. Immune aging mainly includes the declines of regenerative capacity and lymphoid lineage differentiation potential, the hyporesponsive to infection and vaccination, the hyperresponsive in the context of inflammatory pathology, and the increased risk of autoimmunity. The dysfunction of aged immune system accelerates the occurrence of aging and age-related diseases. The mutation of immunity genes that affect immune responses accelerates or slows aging process and age-related diseases. The frequencies of acquired immunity genes, such as immune protective HLA II DRB1*11 and DRB*16-associated haplotype, are increased in the longevity populations. The increased susceptibility of immune inflammatory response, morbidity and mortality in the elderly is often associated with decreased frequencies of anti-inflammatory factor IL-10 -1082G allele, TNF-β1 haplotype cnd10T/C, cnd25G/G, –988C/C, –800G/A, low proinflammatory fator TNFa level related extended TNF-A genotype –1031C/C, –863C/A, –857C/C, IL-6-174 CC and IFN-γ+874 T allele as well. The innate immunity genes, such as highly expressed anti-inflammatory +896 G KIR4 allele, CCR5Δ32 variant, –765 C Cox-2 allele, –1708 G and 21 C 5-Lox alleles are detected in centenarians. In age-related diseases, a higher CMV-specific IgG antibody level in elderly individuals is associated with a decreased frequency of KIR haplotypes KIR2DS5 and A1B10 and an increased frequency of MBL2 haplotypes LYPB, LYQC and HYPD that result in the absence of MBL2 protein. The increased frequencies of CRP ATG haplotypes and CFH 402 His allele indicate high mortality in the elderly. In the present study, we review the advances in the polymorphism and haplotype of innate and adoptive immunity genes, and their association with both aging and age-related diseases. To strengthen the analysis of extended haplotypes, epigenetic studies of immunity genes and genetic study of hematopoietic stem cell senescence will be helpful to understand the accurate basis of aging-related immune genetics better.

Cite this article

RUAN Qing-Wei YU Zhuo-Wei BAO Zhi-Jun MA Yong-Xing . The relationship between the polymorphism of immunity genes and both aging and age-related diseases[J]. Hereditas(Beijing), 2013 , 35(7) : 813 -822 . DOI: 10.3724/SP.J.1005.2013.00813

References

[1] De la Fuente M, Miquel J. An update of the oxidation-inflammation theory of aging: The involvement of the immune system in oxi-inflamm-aging. Curr Pharm Des, 2009, 15(26): 3003-3026.
[2] Sebastiani1 P, Solovieff1 N, DeWan AT, Walsh KM, Puca A, Hartley SW, Melista E, Andersen S, Dworkis DA, Wilk JB, Myers RH, Steinberg MH, Montano M, Baldwin CT, Hoh J, Perls TT. Genetic signatures of exceptional lon-gevity in humans. PloS One, 2012, 7(1): e29848.
[3] Ruan QW, Liu F, Gao ZJ, Kong DQ, Hu XN, Shi DM, Bao ZJ, Yu ZW. The anti-inflammaging and hepatoprotective effects of huperzine A in D-galactose-treated rat. Mech Ageing Dev, 2013; 134(3-4): 89-97.
[4] Naumova E, Ivannova M, Pawelec G. Immunogenetics of ageing. Int J Immunogenet, 2011, 38(5): 373-381.
[5] 孔放, 张根发, 吕泽平, 孙亮, 郑陈光, 梁积英, 朱小泉, 杨泽. 人类长寿相关基因研究进展. 遗传, 2006, 28(7): 874-879.
[6] 俞卓伟, 保志军, 阮清伟, 马永兴. 氧化应激-炎症-衰老及其与ApoE基因相关性研究进展. 生理学报, 2013, 65(3): 338-346.
[7] Naumova E, Ivanova M, Pawelec G, Constantinescu I, Bogunia-Kubik K, Lange A, Oguz F, Ozdilli K, Franceschi C, Caruso C, Mishra M, Middleton D. 16th IHIW: Immunogenetics of aging. Int J Immunogenet, 2013, 40(1): 77-81.
[8] Fulop T, Larbi A, Kotb R, de Angelis F, Pawelec G. Aging, immunity, and cancer. Discov Med, 2011, 11(61): 537-550.
[9] Balistreri CR, Candore G, Accardi G, Bova M, Buffa S, Bulati M, Forte GI, Listì F, Martorana A, Palmeri M, Pel-licanò M, Vaccarino L, Scola L, Lio D, Colonna-Romano G. Genetics of longevity. data from the studies on Sicilian centenarians. Immun Ageing, 2012, 9(1): 8.
[10] Hurme M, Kivimaki M, Pertovaara M, Lehtimäki T, Karhunen PJ, Jylhä M, Hervonen A, Eklund C. CRP gene is involved in the regulation of human longevity: a follow-up study in finnish nonagenarians. Mech Ageing Dev, 2007, 128(10): 574-576.
[11] Laine M, Jarva H, Seitsonen S, Haapasalo K, Lehtinen MJ, Lindeman N, Anderson DH, Johnson PT, Jarvela I, Jokiranta TS, Hageman GS, Immonen I, Meri S. Y402H polymorphism of complement factor H affects binding af-finity to C-reactive protein. J Immunol, 2007, 178(6): 3831-3836.
[12] Jylhävä J, Eklund C, Jylhä M, Hervonen A, Lehtimäki T, Karhunen P, Hurme M. Complement factor H 402His variant confers an increased mortality risk in finnish nonagenarians: the vitality 90+ study. Exp Gerontol, 2009, 44(4): 297-299.
[13] Naumova E, Pawelec G, Ivanova M, Constantinescu I, Bogunia-Kubik K, Lange A, Qguz F, Carin M. 14th International HLA and Immunogenetics Workshop: report on the immunogenetics of aging. Tissue Antigens, 2007, 69(Suppl 1): 304-310.
[14] Becerril EV, Fern?ndez RG, Torres LP, Lacomba MS, Galera JMG. HLA B27 as predisposition factor to suffer age related macular degeneration. Cell Mol Immunol, 2009, 6(4): 303-307.
[15] Listì F, Caruso C, Colonna-Romano G, Lio D, Nuzzo D, Candore G. HLA and KIR frequencies in Sicilian Cente-narians. Rejuvenation Res, 2010, 13(2-3): 314-318.
[16] Iannitti T, Palmieri B. Inflammation and genetics: an in-sight in the centenarian model. Hum Biol, 2011, 83(4): 531-559.
[17] Jylhävä J, Hurme M. Gene variants as determinants of Longevity: focus on the inflammatory factors. Pflugers Arch, 2010, 459(2): 239-246.
[18] Naumova E, Ivanova M, Pawelec G, Constantinescu I, Bogunia-Kubik K, Lange A, Qguz F, Carin M, Franceschi C, Caruso C, Middleton D. ‘Immunogenetics of Aging’: report on the activities of the 15th international HLA and immunogenetics working group and 15th international HLA and immunogenetics workshop. Tissue Antigens, 2011, 77(3): 187-192.
[19] Scola L, Licastro F, Chiappelli M, Franceschi C, Grimaldi LM, Crivello A, Colonna-Romano G, Candore G, Lio D, Caruso C. Allele frequencies of +874T → A single nu-cleotide polymorphism at the first intron of IFN-gamma gene in Alzheimer's disease patients. Aging Clin Exp Res, 2003, 15(4): 292-295.
[20] Vaccarino L, Vitale S, Caruso M, Palmeri M, Scola
Outlines

/