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Published on: March 8, 2012
A region of the third variable loop of HIV-1 gp120 is recognized by HLA-B7-restricted CTLs from two acute
J T Safrit1, A Y Lee, C A Andrews
1Aaron Diamond AIDS Research Center and the Department of Medicine and Microbiology, New York University, School of Medicine, New York 10016.
Insights
Cytotoxic T lymphocytes (CTLs) recognize a specific Human Immunodeficiency Virus type 1 (HIV-1) epitope in the gp120 V3 loop. This finding is crucial for developing V3 loop-based HIV vaccines.
Area of Science:
- Immunology
- Virology
- Vaccinology
Background:
- Cytotoxic T lymphocytes (CTLs) play a critical role in controlling viral infections, including Human Immunodeficiency Virus type 1 (HIV-1).
- The HIV-1 envelope glycoprotein gp120, particularly its third variable (V3) loop, is a target for immune responses and a focus for vaccine development.
Observation:
- CTL clones isolated from HIV-1 seroconverting patients recognized a specific 30-amino acid epitope (RPNNNTRKSI) within the gp120 V3 loop.
- This epitope is presented by the HLA-B7 molecule and shows conservation among various HIV-1 clades, particularly at residues critical for HLA binding.
- Autologous viruses were recognized by these CTL clones, with no escape variants detected during the acute infection phase.
Findings:
- A single amino acid change (Serine to Arginine) within the epitope abrogated recognition by CTLs in one patient.
- This specific mutation is associated with a shift in HIV-1 phenotype from non-syncytium-inducing to syncytium-inducing.
- The study demonstrates that human CTLs can be generated against conserved epitopes within the HIV-1 gp120 V3 loop.
Implications:
- The identified V3 loop epitope can be utilized to assess the efficacy of HIV-1 vaccines designed to elicit CTL responses.
- Understanding CTL escape mechanisms linked to viral phenotype changes is vital for effective HIV vaccine strategies.
- This research provides a defined epitope for evaluating vaccine-induced CTL responses in individuals expressing HLA-B7.
Abstract:
HIV-1 envelope-specific CTL clones were isolated from the peripheral blood of two patients from within weeks of seroconversion. These clones were CD8+ and restricted by the HLA-B7 molecule. The minimum epitope recognized by the clones was determined to be the 30-amino acid (aa) sequence RPNNNTRKSI within the third variable (V3) loop of the envelope glycoprotein gp120. The aa sequence of this epitope is consistent with the motif found in naturally processed peptides eluted from HLA-B7 molecules. This region of the V3 loop is reasonably well conserved among clade B and some nonclade B isolates of HIV-1, especially at the anchor residues that determine binding to the HLA-B7 molecule. Using peptides based upon virus sequences present within each patient, we determined that autologous viruses were recognized by the clones, and we detected no escape variants from the initial clonal response during the acute phase of infection. Interestingly, a serine to arginine change at position 9 of the epitope abrogated clone recognition in one of the patients. This aa change is one factor that has been associated with a change from a nonsyncytium-inducing to a syncytium-inducing phenotype of HIV-1, raising the possibility that in HLA-B7-expressing patients, escape from this clonal CTL response and a change in viral phenotype may be linked. This study demonstrates that human CTL can be generated against sequences within the third variable loop of HIV-1 gp120. Because multiple vaccine strategies are based upon the V3 loop of HIV-1 gp120, this defined epitope can be exploited in determining the ability of certain vaccines to stimulate a CTL response in a select population of individuals.
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