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Updated: Aug 9, 2026

Generation of Induced Regulatory T Cells from Primary Human Naïve and Memory T Cells
Published on: April 16, 2012
Down-regulation of cell surface CD4 molecule expression induced by anti-CD4 antibodies in human T lymphocytes
P Morel1, C Vincent, J Wijdenes
1Immunology Laboratory, INSERM U80, CNRS URA 1177, Lyon, France.
Insights
Antigenic modulation down-regulates CD4 surface expression in lymphocytes using anti-CD4 antibodies. This process involves CD4 internalization and reduced synthesis, influenced by temperature and cell interactions.
Area of Science:
- Immunology
- Cell Biology
Background:
- Antigenic modulation is the antibody-induced downregulation of cell surface antigens.
- CD4 is a critical surface protein on human peripheral blood lymphocytes.
Purpose of the Study:
- To investigate the modulation of CD4 surface expression in human lymphocytes induced by anti-CD4 monoclonal antibodies (mAbs).
Main Methods:
- Incubation of human peripheral blood lymphocytes with various anti-CD4 mAbs at different temperatures (37°C vs. 4°C).
- Assessing modulation using dose-dependency, reversibility, and effects of monocytes or antibody cross-linking.
- Analyzing modulation with solid-phase mAbs versus soluble F(ab')2 fragments.
- Investigating effects on other surface markers (CD2, CD3, CD8, HLA class I) and mRNA levels (CD4, beta-actin, beta 2-microglobulin).
Main Results:
- CD4 modulation occurred at 37°C but not 4°C, was dose-dependent, reversible, and enhanced by monocytes or cross-linking.
- Modulation was induced by solid-phase mAbs, not soluble F(ab')2 fragments, and affected all CD4+ lymphocytes equally.
- Associated with moderate downregulation of CD2 and CD3, but not CD8 or HLA class I.
- Internalization of antibody-bound CD4, transient replacement from an intracellular pool, and a moderate decrease in CD4 mRNA were observed.
Conclusions:
- Anti-CD4 mAb-induced CD4 downregulation involves partial molecule modulation and decreased synthesis.
- The delay in maximal modulation suggests exhaustion of the intracellular CD4 recycling pool.
Abstract:
Antigenic modulation was defined as the down-regulation of a cell surface antigen expression induced by exposure to specific antibody. We investigated the modulation of CD4 surface expression in human peripheral blood lymphocytes incubated in vitro with anti-CD4 monoclonal antibodies (mAbs). Modulation of surface CD4 was achieved at 37 degrees C, but not at 4 degrees C, with five different murine anti-CD4 mAbs of IgG1 and IgG2a subclasses, with different epitope specificities. Modulation was dose dependent with a maximum at nonsaturating mAb concentration. It was reversible upon culture in mAb-free medium. It was accelerated and amplified in the presence of monocytes or after cross-linking of anti-CD4 mAbs. It could be induced with solid phase anti-CD4 mAbs, but not with soluble F(ab')2 fragments. Its magnitude was identical on all CD4+ lymphocytes. It was associated with a moderate down-regulation of CD2 and CD3 but not of CD8 and HLA class I surface expression. Modulation was slightly augmented by addition of inhibitors of the endosome/lysosome pathway but not by protein synthesis inhibitors. The anti-CD4 mAb initially bound to cell surface was no longer detectable after 24 hr of culture. Most of surface CD4 proteins complexed with antibody were rapidly internalized and transiently replaced by CD4 from an intracytoplasmic pool and then no longer were expressed. CD4 mRNA was moderately decreased in cells incubated with anti-CD4 mAb while beta-actin and beta 2-microglobulin mRNAs remained at stable levels. It was concluded that down-regulation of CD4 surface expression induced by anti-CD4 mAb concerned only a part of CD4 molecules and was associated with a decreased synthesis. The delay required to achieve maximal modulation is likely to reflect exhaustion of the intracytoplasmic recycling pool of CD4 molecules.
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