HLA-B*35-Px-mediated acceleration of HIV-1 infection by increased inhibitory immunoregulatory impulses

Jinghe Huang1, James J Goedert, Eric J Sundberg

  • 1The Ragon Institute of Massachusetts General Hospital, Massachusetts Institute of Technology and Harvard University, Boston, MA 02129. USA.

Insights

Certain HLA-B*35 alleles accelerate HIV-1 progression by interacting with ILT4 on dendritic cells. This interaction impairs immune cell function, offering new insights into HIV-1 disease and potential therapeutic targets.

Area of Science:

  • Immunogenetics
  • Virology
  • Cellular Immunology

Background:

  • The HLA-B*35 allele subset, specifically B*35-Px, is linked to faster HIV-1 disease progression, while B*35-PY subtypes have no impact.
  • The mechanism behind this differential disease progression is unclear, as both subtypes present identical HIV-1 epitopes.

Purpose of the Study:

  • To investigate the differential interaction of HLA-B*35 subtypes with immunoregulatory receptors on dendritic cells.
  • To explore the role of these interactions in HIV-1 disease progression and dendritic cell dysfunction.

Main Methods:

  • Compared the binding affinity of HLA-B*3503 (B*35-Px) and HLA-B*3501 (B*35-PY) to immunoglobulin-like transcript 4 (ILT4).
  • Assessed dendritic cell function in vitro using functional assays and ex vivo in HIV-1-infected individuals.

Main Results:

  • HLA-B*3503 exhibited higher binding affinity to ILT4 than HLA-B*3501, despite presenting identical HIV-1 epitopes.
  • This preferential binding correlated with enhanced dendritic cell dysfunction in vitro and impaired function ex vivo in HIV-1-infected B*3503 carriers.

Conclusions:

  • Differential interactions between HLA class I allele subtypes and ILT4 on dendritic cells contribute to HIV-1 disease progression.
  • Targeting these interactions may offer novel strategies for manipulating host immunity against HIV-1.

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