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A novel CD4 knockout mouse strain with a spontaneous frameshift mutation in the CD4 locus
Mathangi Janakiraman1, Shin-Young Na1, Gurumoorthy Krishnamoorthy1
1Research group Neuroinflammation and Mucosal Immunology, Max Planck Institute of Biochemistry, Martinsried, Germany.
Plos One
|April 6, 2022
Summary
Researchers discovered a new CD4 gene mutation impairing T cell development. Correcting this mutation restored CD4 protein expression, creating a valuable mouse model for studying CD4+ T cells.
Area of Science:
- Immunology
- Cell Biology
- Genetics
Background:
- T cells utilize CD4 and CD8 co-receptors for antigen recognition via T cell receptors.
- CD4 expression on thymic hematopoietic cells is essential for T cell development and selection.
- Defects in CD4 expression can lead to impaired T cell function and development.
Purpose of the Study:
- To identify and characterize a novel spontaneous mutation affecting CD4 expression in mice.
- To investigate the functional consequences of the CD4 mutation on T cell development.
- To establish a corrected mouse model for studying CD4+ T cells.
Main Methods:
- Identification of a spontaneous frameshift mutation in the CD4 gene.
- Analysis of CD4 protein expression and localization in thymic cells.
- CRISPR-Cas9 mediated gene editing to correct the CD4 mutation.
- Adoptive transfer experiments to evaluate the corrected mouse model.
Main Results:
- A novel CD4 mutant allele with a frameshift mutation was identified.
- The mutation resulted in a truncated CD4 protein that did not reach the plasma membrane.
- Impaired development of CD4+ helper T cells was observed in mice with the mutation.
- CRISPR-mediated correction restored membrane CD4 expression and T cell development.
- The corrected mouse model proved suitable for adoptive transfer studies of CD4+ T cells.
Conclusions:
- Spontaneous mutations in CD4 can significantly disrupt T cell development.
- CRISPR gene editing is an effective tool for correcting CD4 mutations.
- This corrected mouse model serves as a valuable platform for immunological research involving CD4+ T cells.

