Rapid, efficient and activation-neutral gene editing of polyclonal primary human resting CD4+ T cells allows complex functional analyses

Nat Methods. 2022 Jan;19(1):81-89. doi: 10.1038/s41592-021-01328-8. Epub 2021 Dec 23.

Abstract

CD4+ T cells are central mediators of adaptive and innate immune responses and constitute a major reservoir for human immunodeficiency virus (HIV) in vivo. Detailed investigations of resting human CD4+ T cells have been precluded by the absence of efficient approaches for genetic manipulation limiting our understanding of HIV replication and restricting efforts to find a cure. Here we report a method for rapid, efficient, activation-neutral gene editing of resting, polyclonal human CD4+ T cells using optimized cell cultivation and nucleofection conditions of Cas9-guide RNA ribonucleoprotein complexes. Up to six genes, including HIV dependency and restriction factors, were knocked out individually or simultaneously and functionally characterized. Moreover, we demonstrate the knock in of double-stranded DNA donor templates into different endogenous loci, enabling the study of the physiological interplay of cellular and viral components at single-cell resolution. Together, this technique allows improved molecular and functional characterizations of HIV biology and general immune functions in resting CD4+ T cells.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • CD4-Positive T-Lymphocytes / cytology
  • CD4-Positive T-Lymphocytes / physiology*
  • CD4-Positive T-Lymphocytes / virology
  • CRISPR-Associated Protein 9 / genetics
  • CRISPR-Cas Systems / genetics*
  • Cell Movement / genetics
  • Cells, Cultured
  • DNA
  • Gene Editing / methods*
  • Gene Knockout Techniques
  • HIV Infections / genetics*
  • HIV Infections / metabolism
  • Humans
  • Membrane Glycoproteins / genetics
  • Membrane Glycoproteins / metabolism
  • Myxovirus Resistance Proteins / genetics
  • Myxovirus Resistance Proteins / metabolism
  • RNA, Guide, CRISPR-Cas Systems
  • SAM Domain and HD Domain-Containing Protein 1 / genetics
  • Transgenes
  • mRNA Cleavage and Polyadenylation Factors / genetics
  • mRNA Cleavage and Polyadenylation Factors / metabolism

Substances

  • MX2 protein, human
  • Membrane Glycoproteins
  • Myxovirus Resistance Proteins
  • P-selectin ligand protein
  • cleavage factor Im, human
  • mRNA Cleavage and Polyadenylation Factors
  • DNA
  • CRISPR-Associated Protein 9
  • SAM Domain and HD Domain-Containing Protein 1
  • SAMHD1 protein, human