Flow Cytometry-Based Quantification of HIV-Induced T Cell Chemotactic Response

Yuntao Wu1

  • 1National Center for Biodefense and Infectious Diseases, School of System Biology, George Mason University, 10900 University Blvd., Manassas, VA, 20110, USA. ywu8@gmu.edu.

Insights

Human immunodeficiency virus (HIV) uses CD4 T cells and co-receptors to infect cells, triggering actin polymerization essential for viral migration and latency. This study quantifies HIV-induced actin dynamics and cofilin phosphorylation in T cells.

Area of Science:

  • Immunology
  • Virology
  • Cell Biology

Background:

  • Human immunodeficiency virus (HIV) infects CD4 T cells by binding to CD4 and chemokine co-receptors (CXCR4 or CCR5).
  • Viral binding initiates signaling pathways involving LIMK/cofilin and WAVE2/Arp2/3, promoting actin dynamics.
  • Actin dynamics are crucial for viral nuclear migration and establishing latent infection in resting CD4 T cells.

Purpose of the Study:

  • To describe methods for quantifying HIV-induced actin polymerization.
  • To detail methods for measuring cofilin phosphorylation in human T cells.
  • To provide a flow cytometry-based approach for analyzing HIV's impact on T cell actin dynamics.

Main Methods:

  • Utilizing flow cytometry for cellular analysis.
  • Quantifying actin polymerization in response to HIV infection.
  • Measuring the phosphorylation levels of cofilin, a key actin-regulatory protein.

Main Results:

  • The study outlines a flow cytometry protocol to measure HIV-induced changes in actin dynamics.
  • Methods are presented for quantifying cofilin phosphorylation, a downstream event of viral entry.
  • The described techniques allow for the assessment of molecular events supporting HIV latency.

Conclusions:

  • Flow cytometry provides a robust method for quantifying HIV-induced actin polymerization and cofilin phosphorylation.
  • Understanding these actin dynamics is key to deciphering mechanisms of HIV nuclear migration and latency.
  • This work offers valuable tools for researchers studying HIV-1 infection and T cell responses.