Follicular Regulatory T Cells Are Highly Permissive to R5-Tropic HIV-1

被引:34
作者
Miller, Shannon M. [1 ]
Miles, Brodie [1 ]
Guo, Kejun [1 ]
Folkvord, Joy [1 ]
Meditz, Amie L. [1 ]
McCarter, Martin D. [1 ]
Levy, David N. [1 ]
MaWhinney, Samantha [1 ]
Santiago, Mario L. [1 ]
Connick, Elizabeth [1 ,2 ]
机构
[1] Sch Med, Dept Immunol & Microbiol, Anschutz Med Campus, Aurora, CO 65523 USA
[2] Univ Colorado, Dept Med, Anschutz Med Campus, Aurora, CO 65523 USA
关键词
HIV pathogenesis; HIV replication; follicular helper T cell; follicular regulatory T cell; secondary lymphoid follicle; HELPER-CELLS; LYMPH-NODES; VIRUS-REPLICATION; CCR5; EXPRESSION; HTLV-III; PROLIFERATION; RECEPTOR; SITES; AIDS; PATHOGENESIS;
D O I
10.1128/JVI.00430-17
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Follicular regulatory T (TFR) cells are a subset of CD4(+) T cells in secondary lymphoid follicles. TFR cells were previously included in the follicular helper T (TFH) cell subset, which consists of cells that are highly permissive to HIV-1. The permissivity of TFR cells to HIV-1 is unknown. We find that TFR cells are more permissive than TFH cells to R5-tropic HIV-1 ex vivo. TFR cells expressed more CCR5 and CD4 and supported higher frequencies of viral fusion. Differences in Ki67 expression correlated with HIV-1 replication. Inhibiting cellular proliferation reduced Ki67 expression and HIV-1 replication. Lymph node cells from untreated HIV-infected individuals revealed that TFR cells harbored the highest concentrations of HIV-1 RNA and highest levels of Ki67 expression. These data demonstrate that TFR cells are highly permissive to R5-tropic HIV-1 both ex vivo and in vivo. This is likely related to elevated CCR5 levels combined with a heightened proliferative state and suggests that TFR cells contribute to persistent R5-tropic HIV-1 replication in vivo. IMPORTANCE In chronic, untreated HIV-1 infection, viral replication is concentrated in secondary lymphoid follicles. Within secondary lymphoid follicles, follicular helper T (TFH) cells have previously been shown to be highly permissive to HIV-1. Recently, another subset of T cells in secondary lymphoid follicles was described, follicular regulatory T (TFR) cells. These cells share some phenotypic characteristics with TFH cells, and studies that showed that TFH cells are highly permissive to HIV-1 included TFR cells in their definition of TFH cells. The permissivity of TFR cells to HIV-1 has not previously been described. Here, we show that TFR cells are highly permissive to HIV-1 both ex vivo and in vivo. The expression of Ki67, a marker of proliferative capacity, is predictive of expression of viral proteins, and downregulating Ki67 leads to concurrent decreases in expression of viral proteins. Our study provides new insight into HIV-1 replication and a potential new cell type to target for future treatment.
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页数:17
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共 51 条
  • [1] PD-1+ and follicular helper T cells are responsible for persistent HIV-1 transcription in treated aviremic individuals
    Banga, Riddhima
    Procopio, Francesco Andrea
    Noto, Alessandra
    Pollakis, Georgios
    Cavassini, Matthias
    Ohmiti, Khalid
    Corpataux, Jean-Marc
    de Leval, Laurence
    Pantaleo, Giuseppe
    Perreau, Matthieu
    [J]. NATURE MEDICINE, 2016, 22 (07) : 754 - 761
  • [2] BIBERFELD P, 1986, AM J PATHOL, V125, P436
  • [3] Regulatory and Helper Follicular T Cells and Antibody Avidity to Simian Immunodeficiency Virus Glycoprotein 120
    Blackburn, Matthew J.
    Zhong-Min, Ma
    Caccuri, Francesca
    McKinnon, Katherine
    Schifanella, Luca
    Guan, Yongjun
    Gorini, Giacomo
    Venzon, David
    Fenizia, Claudio
    Binello, Nicolo
    Gordon, Shari N.
    Miller, Christopher J.
    Franchini, Genoveffa
    Vaccari, Monica
    [J]. JOURNAL OF IMMUNOLOGY, 2015, 195 (07) : 3227 - 3236
  • [4] Cavrois Marielle, 2004, Methods Mol Biol, V263, P333
  • [5] HIV reservoir size and persistence are driven by T cell survival and homeostatic proliferation
    Chomont, Nicolas
    El-Far, Mohamed
    Ancuta, Petronela
    Trautmann, Lydie
    Procopio, Francesco A.
    Yassine-Diab, Bader
    Boucher, Genevieve
    Boulassel, Mohamed-Rachid
    Ghattas, Georges
    Brenchley, Jason M.
    Schacker, Timothy W.
    Hill, Brenna J.
    Douek, Daniel C.
    Routy, Jean-Pierre
    Haddad, Elias K.
    Sekaly, Rafick-Pierre
    [J]. NATURE MEDICINE, 2009, 15 (08) : 893 - U92
  • [6] T follicular helper cells express a distinctive transcriptional profile, reflecting their role as non-Th1/Th2 effector cells that provide help for B cells
    Chtanova, T
    Tangye, SG
    Newton, R
    Frank, N
    Hodge, MR
    Rolph, MS
    Mackay, CR
    [J]. JOURNAL OF IMMUNOLOGY, 2004, 173 (01) : 68 - 78
  • [7] Follicular regulatory T cells expressing Foxp3 and Bcl-6 suppress germinal center reactions
    Chung, Yeonseok
    Tanaka, Shinya
    Chu, Fuliang
    Nurieva, Roza I.
    Martinez, Gustavo J.
    Rawal, Seema
    Wang, Yi-Hong
    Lim, Hoyong
    Reynolds, Joseph M.
    Zhou, Xiao-hui
    Fan, Hui-min
    Liu, Zhong-ming
    Neelapu, Sattva S.
    Dong, Chen
    [J]. NATURE MEDICINE, 2011, 17 (08) : 983 - U102
  • [8] Improved Single-Copy Assays for Quantification of Persistent HIV-1 Viremia in Patients on Suppressive Antiretroviral Therapy
    Cillo, Anthony R.
    Vagratian, David
    Bedison, Margaret A.
    Anderson, Elizabeth M.
    Kearney, Mary F.
    Fyne, Elizabeth
    Koontz, Dianna
    Coffin, John M.
    Piatak, Michael, Jr.
    Mellors, John W.
    [J]. JOURNAL OF CLINICAL MICROBIOLOGY, 2014, 52 (11) : 3944 - 3951
  • [9] HIV-Infected Spleens Present Altered Follicular Helper T Cell (Tfh) Subsets and Skewed B Cell Maturation
    Colineau, Lucie
    Rouers, Angeline
    Yamamoto, Takuya
    Xu, Yin
    Urrutia, Alejandra
    Hang-Phuong Pham
    Cardinaud, Sylvain
    Samri, Assia
    Dorgham, Karim
    Coulon, Pierre-Gregoire
    Cheynier, Remi
    Hosmalin, Anne
    Oksenhendler, Eric
    Six, Adrien
    Kelleher, Anthony D.
    Zaunders, John
    Koup, Richard A.
    Autran, Brigitte
    Moris, Arnaud
    Graff-Dubois, Stephanie
    [J]. PLOS ONE, 2015, 10 (10):
  • [10] CTL fail to accumulate at sites of HIV-1 replication in lymphoid tissue
    Connick, Elizabeth
    Mattila, Teresa
    Folkvord, Joy M.
    Schlichtemeier, Rick
    Meditz, Amie L.
    Ray, M. Graham
    McCarter, Martin D.
    MaWhinney, Samantha
    Hage, Aaron
    White, Cara
    Skinner, Pamela J.
    [J]. JOURNAL OF IMMUNOLOGY, 2007, 178 (11) : 6975 - 6983