Circulating CXCR5+CXCR3+PD-1lo Tfh-like cells in HIV-1 controllers with neutralizing antibody breadth

Enrique Martín‐Gayo(Ragon Institute of MGH, MIT and Harvard), Jacqueline Cronin(Ragon Institute of MGH, MIT and Harvard), Taylor Hickman(Ragon Institute of MGH, MIT and Harvard), Zhengyu Ouyang(Ragon Institute of MGH, MIT and Harvard), Madelene Lindqvist(International AIDS Vaccine Initiative), Kellie E. Kolb(Ragon Institute of MGH, MIT and Harvard), Julian Schulze zur Wiesch(Universität Hamburg), Rafael Cubas(Vaccine & Gene Therapy Institute of Florida), Filippos Porichis(Ragon Institute of MGH, MIT and Harvard), Alex K. Shalek(Ragon Institute of MGH, MIT and Harvard), Jan van Lunzen(Universität Hamburg), Elias K. Haddad(Drexel University), Bruce D. Walker(International AIDS Vaccine Initiative), Daniel E. Kaufmann(International AIDS Vaccine Initiative), Mathias Lichterfeld(Brigham and Women's Hospital), Xu G. Yu(Ragon Institute of MGH, MIT and Harvard)
JCI Insight
January 25, 2017
Cited by 63Open Access
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Abstract

HIV-1–specific broadly neutralizing antibodies (bnAbs) typically develop in individuals with continuous high-level viral replication and increased immune activation, conditions that cannot be reproduced during prophylactic immunization. Understanding mechanisms supporting bnAb development in the absence of high-level viremia may be important for designing bnAb-inducing immunogens. Here, we show that the breadth of neutralizing antibody responses in HIV-1 controllers was associated with a relative enrichment of circulating CXCR5 + CXCR3 + PD-1 lo CD4 + T cells. These CXCR3 + PD-1 lo Tfh-like cells were preferentially induced in vitro by functionally superior dendritic cells from controller neutralizers, and able to secrete IL-21 and support B cells. In addition, these CXCR3 + PD-1 lo Tfh-like cells contained higher proportions of stem cell–like memory T cells, and upon antigenic stimulation differentiated into PD-1 hi Tfh-like cells in a Notch-dependent manner. Together, these data suggest that CXCR5 + CXCR3 + PD-1 lo cells represent a dendritic cell–primed precursor cell population for PD-1 hi Tfh-like cells that may contribute to the generation of bnAbs in the absence of high-level viremia.


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