Normal telomere lengths in naive and memory CD4(+) T cells in HIV type 1 infection: A mathematical interpretation

Citation
Kc. Wolthers et al., Normal telomere lengths in naive and memory CD4(+) T cells in HIV type 1 infection: A mathematical interpretation, AIDS RES H, 15(12), 1999, pp. 1053-1062
Citations number
52
Categorie Soggetti
Immunology
Journal title
AIDS RESEARCH AND HUMAN RETROVIRUSES
ISSN journal
08892229 → ACNP
Volume
15
Issue
12
Year of publication
1999
Pages
1053 - 1062
Database
ISI
SICI code
0889-2229(19990810)15:12<1053:NTLINA>2.0.ZU;2-P
Abstract
To study CD4(+) T cell productivity during HIV-1 infection, CD4(+) T cell t elomere lengths were measured. Cross-sectional and longitudinal analysis of HIV-l-infected individuals with CD4(+) T cells counts >300 cells/mm(3) sho wed normal average telomeric restriction fragment (TRF) length and normal s hortening rates of CD45RA(+) naive and CD45RO(+) memory CD4(+) T cells. The se TRF data were interpreted in terms of CD4(+) T cell production by means of a mathematical model. This model resolves previous criticisms arguing th at the normal TRF length of CD4(+) T cells in HIV-1 clinical latency is due to the killing of dividing CD4(+) T cells by the virus, Only an increased priming rate of naive CD4(+) T cells to become memory cells may elongate th e average TRF length of memory CD4(+) T cells, and may therefore mask the s hortening effect of increased turnover in the CD4(+) memory T cell compartm ent. The data are more compatible with the notion that during HIV-1 clinica l latency the turnover of CD4(+) T cells is not markedly increased, however , and that HIV-related interference with renewal from progenitors plays a r ole in CD4(+) T cell depletion. In such a "limited renewal" scenario diseas e progression is no longer a consequence of markedly increased CD4(+) T cel l production.