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Identification of a human CD4-CDR3-like surface involved in CD4+ T cell function
T M Friedman1, A P Reddy, R Wassell
1Kimmel Cancer Institute, Jefferson Medical College, Philadelphia, Pennsylvania 19107, USA.
The Journal of Biological Chemistry
|September 13, 1996
Summary
Researchers synthesized peptide analogs of the CD4 molecule to inhibit T cell proliferation. Key residues were identified, revealing a contiguous active site crucial for inhibitory function in mixed lymphocyte reactions.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- The CD4 molecule, found on helper T cells, comprises four immunoglobulin-like domains, a transmembrane segment, and a cytoplasmic tail.
- Understanding CD4's structure-function relationship is vital for modulating T cell responses.
Purpose of the Study:
- To design and synthesize peptide analogs mimicking the CD4 molecule's CDR3-like region.
- To investigate the inhibitory effects of these analogs on human T cell proliferation.
- To identify critical amino acid residues within the peptide analog responsible for its function.
Main Methods:
- Molecular modeling was employed to design peptide analogs of the CD4 CDR3-like region.
- A cyclized peptide analog, hPGP, was synthesized and tested for its inhibitory activity.
- Alanine scanning mutagenesis was performed on a modified analog, hPGP(N), to probe residue importance.
- Human mixed lymphocyte reactions were used to assess the peptides' impact on T cell proliferation.
Main Results:
- The synthesized peptide analog hPGP demonstrated inhibitory effects on T cell proliferation.
- A modified analog, hPGP(N), exhibited enhanced activity.
- Alanine substitutions at positions 2, 5, and 9 of hPGP(N) significantly reduced inhibitory activity.
- Substitutions at positions 4 and 6 increased inhibitory effects, while positions 3, 7, and 8 had minimal impact.
Conclusions:
- Specific amino acid residues within the peptide analog are critical for its T cell proliferation inhibitory function.
- Molecular modeling and alanine scanning identified residues 2, 5, and 9 as forming a contiguous active site.
- These findings provide insights into the structural basis of CD4-mediated T cell regulation and potential therapeutic targets.