Combination of quadruplex qPCR and next-generation sequencing for qualitative and quantitative analysis of the HIV-1 latent reservoir
Author(s) -
Christian Gaebler,
Julio C. C. Lorenzi,
Thiago Y. Oliveira,
Lilian Nogueira,
Víctor Ramos,
Ching-Lan Lu,
Joy A. Pai,
Pilar Mendoza,
Mila Janković,
Marina Caskey,
Michel C. Nussenzweig
Publication year - 2019
Publication title -
the journal of experimental medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 8.483
H-Index - 448
eISSN - 1540-9538
pISSN - 0022-1007
DOI - 10.1084/jem.20190896
Subject(s) - multiplex , computational biology , biology , human immunodeficiency virus (hiv) , virology , monoclonal antibody , multiplex polymerase chain reaction , polymerase chain reaction , antibody , genetics , gene
HIV-1 infection requires lifelong therapy with antiretroviral drugs due to the existence of a latent reservoir of transcriptionally inactive integrated proviruses. The goal of HIV-1 cure research is to eliminate or functionally silence this reservoir. To this end, there are numerous ongoing studies to evaluate immunological approaches, including monoclonal antibody therapies. Evaluating the results of these studies requires sensitive and specific measures of the reservoir. Here, we describe a relatively high-throughput combined quantitative PCR (qPCR) and next-generation sequencing method. Four different qPCR probes covering the packaging signal (PS), group-specific antigen ( gag ), polymerase ( pol ), and envelope ( env ) are combined in a single multiplex reaction to detect the HIV-1 genome in limiting dilution samples followed by sequence verification of individual reactions that are positive for combinations of any two of the four probes (Q4PCR). This sensitive and specific approach allows for an unbiased characterization of the HIV-1 latent reservoir.
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