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PMID: 19625640 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

HIV-1 envelope induces memory B cell responses that correlate with plasma antibody levels after envelope gp120 protein vaccination or HIV-1 infection.

Journal of immunology (Baltimore, Md. : 1950) ·Vol. 183 ·No. 4 ·2009-08-15 ·Pages 2708-17

Bonsignori M, Moody MA, Parks RJ, Holl TM, Kelsoe G, Hicks CB, Vandergrift N, Tomaras GD, Haynes BF

Abstract

Successful vaccines (i.e., tetanus and diphtheria) can induce long-lived Ab levels that are maintained by bone marrow plasma cells and plasma Ab levels do not correlate with numbers of blood memory B cells. Destruction of CD4(+) T cells early in HIV-1 acute infection may result in insufficient induction of neutralizing Ab responses; thus, an HIV-1 vaccine should elicit high levels of durable Abs by long-lived plasma cells to be protective. We asked if HIV-1 envelope-specific memory responses were sustained by memory B cells in the settings of HIV-1 gp120 envelope vaccination and chronic HIV-1 infection. Levels of anti-HIV-1 envelope plasma Abs and memory B cells were found to correlate in both settings. Moreover, whereas the expected half-life of plasma Ab levels to protein vaccines was >10 years when maintained by long-lived plasma cells, anti-envelope Ab level half-lives were approximately 33-81 wk in plasma from antiretroviral drug-treated HIV-1(+) subjects. In contrast, anti-p55 Gag Ab level half-life was 648 wk, and Ab titers against influenza did not decay in-between yearly or biennial influenza vaccine boosts in the same patients. These data demonstrated that HIV-1 envelope induces predominantly short-lived memory B cell-dependent plasma Abs in the settings of envelope vaccination and HIV-1 infection. The inability to generate high titers of long-lived anti-envelope Abs is a major hurdle to overcome for the development of a successful HIV-1 vaccine.

MeSH Terms
AIDS Vaccines/administration & dosage,immunology Adult Amino Acid Sequence B-Lymphocyte Subsets/immunology,metabolism,virology Cells, Cultured Chronic Disease Female HIV Antibodies/biosynthesis,blood HIV Envelope Protein gp120/administration & dosage,immunology HIV Infections/immunology,prevention & control,virology HIV-1/immunology Humans Immunologic Memory Male Middle Aged Molecular Sequence Data
Chemicals
AIDS Vaccines HIV Antibodies HIV Envelope Protein gp120
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Bonsignori Mattia
Duke Human Vaccine Institute, Duke University Medical Center, Durham, NC 27710, USA. mattia.bonsignori@duke.edu
Moody M Anthony
Parks Robert J
Holl T Matt
Kelsoe Garnett
Hicks Charles B
Vandergrift Nathan
Tomaras Georgia D
Haynes Barton F
References (57)
57 references, click to expand
  1. Early establishment of a pool of latently infected, resting CD4(+) T cells during primary HIV-1 infection.
    Proc Natl Acad Sci U S A. 1998 Jul 21;95(15):8869-73 PMID: 9671771
  2. Cutting edge: long-term B cell memory in humans after smallpox vaccination.
    J Immunol. 2003 Nov 15;171(10):4969-73 PMID: 14607890
  3. Immunologic and pharmacologic concepts of monoclonal antibodies.
    Semin Nucl Med. 1989 Jul;19(3):166-86 PMID: 2669128
  4. Compromised B cell responses to influenza vaccination in HIV-infected individuals.
    J Infect Dis. 2005 May 1;191(9):1442-50 PMID: 15809902
  5. Induction of HIVMN neutralizing antibodies in primates using a prime-boost regimen of hybrid synthetic gp120 envelope peptides.
    J Immunol. 1993 Aug 1;151(3):1646-53 PMID: 8335949
  6. Toward an AIDS vaccine.
    Science. 2008 May 9;320(5877):760-4 PMID: 18467582
  7. Neutralizing antibodies associated with viremia control in a subset of individuals after treatment of acute human immunodeficiency virus type 1 infection.
    J Virol. 2001 Nov;75(21):10200-7 PMID: 11581388
  8. Severe CD4+ T-cell depletion in gut lymphoid tissue during primary human immunodeficiency virus type 1 infection and substantial delay in restoration following highly active antiretroviral therapy.
    J Virol. 2003 Nov;77(21):11708-17 PMID: 14557656
  9. Evidence for HIV-associated B cell exhaustion in a dysfunctional memory B cell compartment in HIV-infected viremic individuals.
    J Exp Med. 2008 Aug 4;205(8):1797-805 PMID: 18625747
  10. Durable HIV-1 antibody and T-cell responses elicited by an adjuvanted multi-protein recombinant vaccine in uninfected human volunteers.
    Vaccine. 2007 Jan 5;25(3):510-8 PMID: 17049679
  11. HIV vaccine research: the way forward.
    Science. 2008 Jul 25;321(5888):530-2 PMID: 18653883
  12. An HIV vaccine--evolving concepts.
    N Engl J Med. 2007 May 17;356(20):2073-81 PMID: 17507706
  13. Long-term control of HIV by CCR5 Delta32/Delta32 stem-cell transplantation.
    N Engl J Med. 2009 Feb 12;360(7):692-8 PMID: 19213682
  14. HIV-1 antigen-specific and -nonspecific B cell responses are sensitive to combination antiretroviral therapy.
    J Exp Med. 1998 Jul 20;188(2):233-45 PMID: 9670036
  15. Correlation analysis between frequencies of circulating antigen-specific IgG-bearing memory B cells and serum titers of antigen-specific IgG.
    Eur J Immunol. 1999 Apr;29(4):1406-17 PMID: 10229109
  16. Localization of B-cell stimulatory activity of HIV-1 to the carboxyl terminus of gp41.
    AIDS Res Hum Retroviruses. 1990 Mar;6(3):299-305 PMID: 2187499
  17. HIV-1 envelope triggers polyclonal Ig class switch recombination through a CD40-independent mechanism involving BAFF and C-type lectin receptors.
    J Immunol. 2006 Apr 1;176(7):3931-41 PMID: 16547227
  18. Initial B-cell responses to transmitted human immunodeficiency virus type 1: virion-binding immunoglobulin M (IgM) and IgG antibodies followed by plasma anti-gp41 antibodies with ineffective control of initial viremia.
    J Virol. 2008 Dec;82(24):12449-63 PMID: 18842730
  19. Rapid cloning of high-affinity human monoclonal antibodies against influenza virus.
    Nature. 2008 May 29;453(7195):667-71 PMID: 18449194
  20. Human immunodeficiency virus type 1 gp41 antibodies that mask membrane proximal region epitopes: antibody binding kinetics, induction, and potential for regulation in acute infection.
    J Virol. 2008 Jan;82(1):115-25 PMID: 17942537
  21. An HIV vaccine--challenges and prospects.
    N Engl J Med. 2008 Aug 28;359(9):888-90 PMID: 18753644
  22. Frequency analysis of HBsAg-specific B lymphocytes in high-responder individuals to recombinant hepatitis B vaccine: comparison of LDA and ELISPOT assays.
    Scand J Immunol. 2006 Nov;64(5):536-43 PMID: 17032247
  23. Identification of an antigen-specific B cell population.
    J Immunol Methods. 2003 Jan 15;272(1-2):177-87 PMID: 12505722
  24. Competence and competition: the challenge of becoming a long-lived plasma cell.
    Nat Rev Immunol. 2006 Oct;6(10):741-50 PMID: 16977339
  25. A simple method to reduce the background and improve well-to-well reproducibility of staining in ELISPOT assays.
    J Immunol Methods. 2001 Nov 1;257(1-2):93-7 PMID: 11687242
  26. Epitope mapping of two immunodominant domains of gp41, the transmembrane protein of human immunodeficiency virus type 1, using ten human monoclonal antibodies.
    J Virol. 1991 Sep;65(9):4832-8 PMID: 1714520
  27. Polyclonal B cell differentiation and loss of gastrointestinal tract germinal centers in the earliest stages of HIV-1 infection.
    PLoS Med. 2009 Jul 7;6(7):e1000107 PMID: 19582166
  28. Changes in immunoglobulin isotypes and immunoglobulin G (IgG) subclasses during highly active antiretroviral therapy: anti-p24 IgG1 closely parallels the biphasic decline in plasma viremia.
    J Acquir Immune Defic Syndr. 2003 Dec 1;34(4):358-67 PMID: 14615653
  29. Synthetic peptides containing T and B cell epitopes from human immunodeficiency virus envelope gp120 induce anti-HIV proliferative responses and high titers of neutralizing antibodies in rhesus monkeys.
    J Immunol. 1990 Oct 15;145(8):2677-85 PMID: 1698859
  30. Interleukin-15 enhances HIV-1-driven polyclonal B-cell response in vitro.
    Exp Clin Immunogenet. 1999;16(3):162-72 PMID: 10394054
  31. HIV-1 gp120 mannoses induce immunosuppressive responses from dendritic cells.
    PLoS Pathog. 2007 Nov;3(11):e169 PMID: 17983270
  32. Loss of memory B cells impairs maintenance of long-term serologic memory during HIV-1 infection.
    Blood. 2006 Sep 1;108(5):1580-7 PMID: 16645169
  33. HIV-1 GP120-mediated immune suppression and lymphocyte destruction in the absence of viral infection.
    J Immunol. 1989 May 1;142(9):3091-7 PMID: 2468713
  34. B cell immunopathology during HIV-1 infection: lessons to learn for HIV-1 vaccine design.
    Vaccine. 2008 Jun 6;26(24):3016-25 PMID: 18164520
  35. Detection of memory B lymphocytes specific to hepatitis B virus (HBV) surface antigen (HBsAg) from HBsAg-vaccinated or HBV-immunized subjects by ELISPOT assay.
    J Immunol Methods. 2006 Aug 31;315(1-2):144-52 PMID: 16959261
  36. Maintenance of serological memory by polyclonal activation of human memory B cells.
    Science. 2002 Dec 13;298(5601):2199-202 PMID: 12481138
  37. The effect of commencing combination antiretroviral therapy soon after human immunodeficiency virus type 1 infection on viral replication and antiviral immune responses.
    J Infect Dis. 1999 Mar;179(3):527-37 PMID: 9952358
  38. Aiming to induce broadly reactive neutralizing antibody responses with HIV-1 vaccine candidates.
    Expert Rev Vaccines. 2006 Aug;5(4):579-95 PMID: 16989638
  39. CD4+ T cell depletion during all stages of HIV disease occurs predominantly in the gastrointestinal tract.
    J Exp Med. 2004 Sep 20;200(6):749-59 PMID: 15365096
  40. Evaluation of the response to a booster dose of hepatitis B vaccine in previously immunized healthcare workers.
    Vaccine. 2001 Jul 16;19(28-29):4081-5 PMID: 11427285
  41. The TLR9 ligand CpG promotes the acquisition of Plasmodium falciparum-specific memory B cells in malaria-naive individuals.
    J Immunol. 2009 Mar 1;182(5):3318-26 PMID: 19234231
  42. Antibodies and B cell memory in viral immunity.
    Immunity. 2007 Sep;27(3):384-92 PMID: 17892847
  43. The membrane-proximal external region of the human immunodeficiency virus type 1 envelope: dominant site of antibody neutralization and target for vaccine design.
    Microbiol Mol Biol Rev. 2008 Mar;72(1):54-84, table of contents PMID: 18322034
  44. Induction of plasma (TRAIL), TNFR-2, Fas ligand, and plasma microparticles after human immunodeficiency virus type 1 (HIV-1) transmission: implications for HIV-1 vaccine design.
    J Virol. 2008 Aug;82(15):7700-10 PMID: 18508902
  45. The mucosal immune system: primary target for HIV infection and AIDS.
    Trends Immunol. 2001 Nov;22(11):626-33 PMID: 11698224
  46. Tracking human antigen-specific memory B cells: a sensitive and generalized ELISPOT system.
    J Immunol Methods. 2004 Mar;286(1-2):111-22 PMID: 15087226
  47. Correlation between immunologic responses to a recombinant glycoprotein 120 vaccine and incidence of HIV-1 infection in a phase 3 HIV-1 preventive vaccine trial.
    J Infect Dis. 2005 Mar 1;191(5):666-77 PMID: 15688279
  48. Duration of humoral immunity to common viral and vaccine antigens.
    N Engl J Med. 2007 Nov 8;357(19):1903-15 PMID: 17989383
  49. Acute and long-term effects of booster immunisation on frequencies of antigen-specific memory B-lymphocytes.
    Vaccine. 2001 Nov 12;20(3-4):498-504 PMID: 11672915
  50. Long-lived plasma cells: a mechanism for maintaining persistent antibody production.
    Curr Opin Immunol. 1998 Jun;10(3):252-8 PMID: 9638360
  51. Impact of highly active antiretroviral therapy on the maturation of anti-HIV-1 antibodies during primary HIV-1 infection.
    HIV Med. 2006 Nov;7(8):514-9 PMID: 17105510
  52. Effect of dose and immunization schedule on immune response of baboons to recombinant glycoprotein 120 of HIV-1.
    J Infect Dis. 1989 Dec;160(6):960-9 PMID: 2555423
  53. Early appearance of germinal center-derived memory B cells and plasma cells in blood after primary immunization.
    J Exp Med. 2005 Feb 21;201(4):545-54 PMID: 15710653
  54. Survival of long-lived plasma cells is independent of antigen.
    Int Immunol. 1998 Nov;10(11):1703-11 PMID: 9846699
  55. Estimation of HIV incidence in the United States.
    JAMA. 2008 Aug 6;300(5):520-9 PMID: 18677024
  56. A group M consensus envelope glycoprotein induces antibodies that neutralize subsets of subtype B and C HIV-1 primary viruses.
    Virology. 2006 Sep 30;353(2):268-82 PMID: 17039602
  57. Primary HIV-1 infection is associated with preferential depletion of CD4+ T lymphocytes from effector sites in the gastrointestinal tract.
    J Exp Med. 2004 Sep 20;200(6):761-70 PMID: 15365095
Article Info
Journal
Journal of immunology (Baltimore, Md. : 1950)
Abbr.
J Immunol
ISSN
1550-6606
Published
2009-08-15
Epub
2009-00-22
Pages
2708-17
Language
English
Region
United States
NLM ID
2985117R
PMCID
PMC3089979
Subset
IM
Grants
NIAID NIH HHS · T32 AI007392 · United States
NIAID NIH HHS · U19 AI067854 · United States
NIAID NIH HHS · U19 AI067854-06 · United States
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