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Vertical T cell immunodominance and epitope entropy determine HIV-1 escape
Michael K.P. Liu, … , Andrew McMichael, Nilu Goonetilleke
Michael K.P. Liu, … , Andrew McMichael, Nilu Goonetilleke
Published December 10, 2012
Citation Information: J Clin Invest. 2013;123(1):380-393. https://doi.org/10.1172/JCI65330.
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Research Article AIDS/HIV Article has an altmetric score of 12

Vertical T cell immunodominance and epitope entropy determine HIV-1 escape

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Abstract

HIV-1 accumulates mutations in and around reactive epitopes to escape recognition and killing by CD8+ T cells. Measurements of HIV-1 time to escape should therefore provide information on which parameters are most important for T cell–mediated in vivo control of HIV-1. Primary HIV-1–specific T cell responses were fully mapped in 17 individuals, and the time to virus escape, which ranged from days to years, was measured for each epitope. While higher magnitude of an individual T cell response was associated with more rapid escape, the most significant T cell measure was its relative immunodominance measured in acute infection. This identified subject-level or “vertical” immunodominance as the primary determinant of in vivo CD8+ T cell pressure in HIV-1 infection. Conversely, escape was slowed significantly by lower population variability, or entropy, of the epitope targeted. Immunodominance and epitope entropy combined to explain half of all the variability in time to escape. These data explain how CD8+ T cells can exert significant and sustained HIV-1 pressure even when escape is very slow and that within an individual, the impacts of other T cell factors on HIV-1 escape should be considered in the context of immunodominance.

Authors

Michael K.P. Liu, Natalie Hawkins, Adam J. Ritchie, Vitaly V. Ganusov, Victoria Whale, Simon Brackenridge, Hui Li, Jeffrey W. Pavlicek, Fangping Cai, Melissa Rose-Abrahams, Florette Treurnicht, Peter Hraber, Catherine Riou, Clive Gray, Guido Ferrari, Rachel Tanner, Li-Hua Ping, Jeffrey A. Anderson, Ronald Swanstrom, Myron Cohen, Salim S. Abdool Karim, Barton Haynes, Persephone Borrow, Alan S. Perelson, George M. Shaw, Beatrice H. Hahn, Carolyn Williamson, Bette T. Korber, Feng Gao, Steve Self, Andrew McMichael, Nilu Goonetilleke

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%M and epitope entropy combine to explain nearly half of the of the vari...

%M and epitope entropy combine to explain nearly half of the of the variation in time to escape of epitopesA


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ISSN: 0021-9738 (print), 1558-8238 (online)

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