HLA-DR+ CD38+ CD4+ T lymphocytes have elevated CCR5 expression and produce the majority of R5-tropic HIV-1 RNA in vivo. 2011

Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
Department of Medicine, University of Colorado Denver, Aurora, CO 80045, USA.

Percentages of activated T cells correlate with HIV-1 disease progression, but the underlying mechanisms are not fully understood. We hypothesized that HLA-DR(+) CD38(+) (DR(+) 38(+)) CD4(+) T cells produce the majority of HIV-1 due to elevated expression of CCR5 and CXCR4. In phytohemagglutinin (PHA)-stimulated CD8-depleted peripheral blood mononuclear cells (PBMC) infected with HIV-1 green fluorescent protein (GFP) reporter viruses, DR(-) 38(+) T cells constituted the majority of CCR5 (R5)-tropic (median, 62%) and CXCR4 (X4)-tropic HIV-1-producing cells (median, 61%), although cell surface CCR5 and CXCR4 were not elevated in this subset of cells. In lymph nodes from untreated individuals infected with R5-tropic HIV-1, percentages of CCR5(+) cells were elevated in DR(+) 38(+) CD4(+) T cells (median, 36.4%) compared to other CD4(+) T-cell subsets (median values of 5.7% for DR(-) 38(-) cells, 19.4% for DR(+) 38(-) cells, and 7.6% for DR(-) 38(+) cells; n = 18; P < 0.001). In sorted CD8(-) lymph node T cells, median HIV-1 RNA copies/10(5) cells was higher for DR(+) 38(+) cells (1.8 × 10(6)) than for DR(-) 38(-) (0.007 × 10(6)), DR(-) 38(+) (0.064 × 10(6)), and DR(+) 38(-) (0.18 × 10(6)) subsets (n = 8; P < 0.001 for all). After adjusting for percentages of subsets, a median of 87% of viral RNA was harbored by DR(+) 38(+) cells. Percentages of CCR5(+) CD4(+) T cells and concentrations of CCR5 molecules among subsets predicted HIV-1 RNA levels among CD8(-) DR/38 subsets (P < 0.001 for both). Median HIV-1 DNA copies/10(5) cells was higher in DR(+) 38(+) cells (5,360) than in the DR(-) 38(-) (906), DR(-) 38(+) (814), and DR(+) 38(-) (1,984) subsets (n = 7; P ≤ 0.031). Thus, DR(+) 38(+) CD4(+) T cells in lymph nodes have elevated CCR5 expression, are highly susceptible to infection with R5-tropic virus, and produce the majority of R5-tropic HIV-1. PBMC assays failed to recapitulate in vivo findings, suggesting limited utility. Strategies to reduce numbers of DR(+) 38(+) CD4(+) T cells may substantially inhibit HIV-1 replication.

UI MeSH Term Description Entries
D008198 Lymph Nodes They are oval or bean shaped bodies (1 - 30 mm in diameter) located along the lymphatic system. Lymph Node,Node, Lymph,Nodes, Lymph
D008297 Male Males
D008562 Membrane Glycoproteins Glycoproteins found on the membrane or surface of cells. Cell Surface Glycoproteins,Surface Glycoproteins,Cell Surface Glycoprotein,Membrane Glycoprotein,Surface Glycoprotein,Glycoprotein, Cell Surface,Glycoprotein, Membrane,Glycoprotein, Surface,Glycoproteins, Cell Surface,Glycoproteins, Membrane,Glycoproteins, Surface,Surface Glycoprotein, Cell,Surface Glycoproteins, Cell
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D005260 Female Females
D006684 HLA-DR Antigens A subclass of HLA-D antigens that consist of alpha and beta chains. The inheritance of HLA-DR antigens differs from that of the HLA-DQ ANTIGENS and HLA-DP ANTIGENS. HLA-DR,Antigens, HLA-DR,HLA DR Antigens
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults
D012367 RNA, Viral Ribonucleic acid that makes up the genetic material of viruses. Viral RNA
D015497 HIV-1 The type species of LENTIVIRUS and the etiologic agent of AIDS. It is characterized by its cytopathic effect and affinity for the T4-lymphocyte. Human immunodeficiency virus 1,HIV-I,Human Immunodeficiency Virus Type 1,Immunodeficiency Virus Type 1, Human

Related Publications

Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
April 2014, Immunology,
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
March 1994, Clinical and experimental immunology,
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
November 2005, Journal of acquired immune deficiency syndromes (1999),
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
February 2000, Blood,
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
January 2018, Journal of virology,
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
November 2009, Virology,
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
May 2007, PloS one,
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
August 1992, AIDS (London, England),
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
January 2001, AIDS research and human retroviruses,
Amie L Meditz, and Michelle K Haas, and Joy M Folkvord, and Kelsey Melander, and Russ Young, and Martin McCarter, and Samantha Mawhinney, and Thomas B Campbell, and Yolanda Lie, and Eoin Coakley, and David N Levy, and Elizabeth Connick
May 2024, AIDS (London, England),
Copied contents to your clipboard!