Telomere diminution as a cause of immune failure in old age: an unfashionable demurral

被引:15
作者
Miller, RA [1 ]
机构
[1] Univ Michigan, Dept Pathol, Inst Gerontol, Ann Arbor, MI 48109 USA
[2] Univ Michigan, Geriatr Ctr, Ann Arbor, MI 48109 USA
[3] Vet Adm Med Ctr, Ann Arbor, MI 48109 USA
关键词
aging; cell proliferation; immunity; senescence; T lymphocytes;
D O I
10.1042/bst0280241
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The hypothesis that cellular proliferation leads to telomere shortening, which in turn leads to replicative failure, which in turn leads to a failure of immune function in aged individuals, is here evaluated against the published evidence about the nature and pace of immune decline in animals and humans. Although the evidence is strong that telomere shortening in late-passage human lymphocyte and non-lymphocytic cell lines induces a state in which the cells can no longer divide, there is no compelling evidence to suggest that replicative senescence of this kind is an important contributor to immune deficiency in old age. On the contrary, the accelerated pace of immune decline in mice and rats, whose telomeres are much longer than those of humans, argues strongly that the factors that pace age-dependent immune decline do not include telomere shortening. In addition, three subsidiary arguments - (a) the decline with age in naive T cell proliferation despite their relatively long telomeres; (b) the preservation of T cell proliferation in Werner's syndrome patients despite their cell lines' proclivity to replicative senescence in vitro; and (c) the ability of PMA and ionomycin to stimulate proliferation in T cells from old donors, but not in late-passage T cell lines - all support the conclusion that aging of the immune system in living animals is not a consequence of the kind of replicative senescence typically caused by short telomeres in vitro.
引用
收藏
页码:241 / 245
页数:5
相关论文
共 34 条
  • [1] LONG-TERM CULTURE OF MONOCLONAL HUMAN T-LYMPHOCYTES - MODELS FOR IMMUNOSENESCENCE
    ADIBZADEH, M
    POHLA, H
    REHBEIN, A
    PAWELEC, G
    [J]. MECHANISMS OF AGEING AND DEVELOPMENT, 1995, 83 (03) : 171 - 183
  • [2] TELOMERE LENGTH PREDICTS REPLICATIVE CAPACITY OF HUMAN FIBROBLASTS
    ALLSOPP, RC
    VAZIRI, H
    PATTERSON, C
    GOLDSTEIN, S
    YOUNGLAI, EV
    FUTCHER, AB
    GREIDER, CW
    HARLEY, CB
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (21) : 10114 - 10118
  • [3] [Anonymous], 1999, FUNDAMENTAL IMMUNOLO
  • [4] AGE-RELATED-CHANGES IN THE ACTIVATION REQUIREMENTS OF HUMAN CD4+ T-CELL SUBSETS
    BECKMAN, I
    DIMOPOULOS, K
    XU, XN
    AHERN, M
    BRADLEY, J
    [J]. CELLULAR IMMUNOLOGY, 1991, 132 (01) : 17 - 25
  • [5] Extension of life-span by introduction of telomerase into normal human cells
    Bodnar, AG
    Ouellette, M
    Frolkis, M
    Holt, SE
    Chiu, CP
    Morin, GB
    Harley, CB
    Shay, JW
    Lichtsteiner, S
    Wright, WE
    [J]. SCIENCE, 1998, 279 (5349) : 349 - 352
  • [6] INTERLEUKIN-2, INTERLEUKIN-2 RECEPTOR, AND INTERFERON-GAMMA SYNTHESIS AND MESSENGER-RNA EXPRESSION IN PHORBOL-MYRISTATE ACETATE AND CALCIUM IONOPHORE A23187-STIMULATED T-CELLS FROM ELDERLY HUMANS
    CHOPRA, RK
    HOLBROOK, NJ
    POWERS, DC
    MCCOY, MT
    ADLER, WH
    NAGEL, JE
    [J]. CLINICAL IMMUNOLOGY AND IMMUNOPATHOLOGY, 1989, 53 (02): : 297 - 308
  • [7] Replicative senescence of T cells: does the Hayflick Limit lead to immune exhaustion?
    Effros, RB
    Pawelec, G
    [J]. IMMUNOLOGY TODAY, 1997, 18 (09): : 450 - 454
  • [8] ENGWERDA CR, 1994, J IMMUNOL, V152, P3740
  • [9] Telomere dynamics in HIV-1 infected and uninfected chimpanzees measured by an improved method based on high-resolution two-dimensional calibration of DNA sizes
    Feng, YR
    Norwood, D
    Shibata, R
    Gee, D
    Xiao, X
    Martin, M
    Zeichner, SL
    Dimitrov, DS
    [J]. JOURNAL OF MEDICAL PRIMATOLOGY, 1998, 27 (05) : 258 - 265
  • [10] GOODWIN JS, 1982, CLIN EXP IMMUNOL, V48, P403