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Updated: Aug 8, 2026

Static Adhesion Assay for the Study of Integrin Activation in T Lymphocytes
Published on: June 13, 2014
Cell adhesion mediated by CD4 and MHC class II proteins requires active cellular processes
M S Kinch1, J L Strominger, C Doyle
1Department of Immunology, Duke University Medical Center, Durham, NC 27710.
Insights
Human CD4 molecules bind to MHC class II antigens on B lymphocytes, mediating cell adhesion. This interaction requires energy, ATP, and intact cytoskeletons, influencing T cell regulation.
Area of Science:
- Immunology
- Cell Biology
Background:
- CD4 is a cell surface accessory molecule on T lymphocytes.
- Previous work demonstrated CD4's role as an adhesion molecule binding to MHC class II on B lymphocytes.
Purpose of the Study:
- To confirm and further characterize the adhesion between human CD4 and human MHC class II molecules.
- To investigate the cellular and molecular requirements for CD4/MHC class II-mediated adhesion.
Main Methods:
- Utilized Chinese hamster ovary cells stably transfected with human CD4.
- Co-cultured these cells with human B lymphoblastoid cell lines expressing MHC class II.
- Assessed cell adhesion using microscopy and measured its dependence on temperature, ATP, and cytoskeletal integrity.
Main Results:
- Confirmed stable adhesion between CD4-transfected cells and B cells expressing MHC class II.
- Adhesion is an energy-dependent process, requiring 37°C and ATP.
- Cytoskeletal inhibitors (colchicine, cytochalasin-D, nocodazole) disrupt CD4/MHC class II adhesion.
- CD4 engagement with MHC class II induces B cell clustering, potentially via lymphocyte function-associated antigen-1 (LFA-1) activation.
Conclusions:
- CD4-MHC class II interaction is a significant adhesion mechanism between T and B lymphocytes.
- This adhesion is regulated by cellular energy and cytoskeletal dynamics.
- CD4/MHC class II engagement may influence T cell adhesion and activation through LFA-1.
Abstract:
Human CD4 is an accessory molecule found on the cell surface of a subset of T lymphocytes. We have previously shown by infection of simian fibroblasts with an SV40-CD4 recombinant virus that CD4 acts as an adhesion molecule by binding to human MHC class II Ag expressed on the surface of human B lymphocytes. This report confirms that human B lymphoblastoid cell lines expressing class II molecules at the cell surface can bind to Chinese hamster ovary cells that have been stably transfected with human CD4. This cellular adhesion is a late event, which is first detected after 2 h, but remains stable for up to 16 h. The association between CD4 and class II is energy dependent, as it is detected at 37 degrees C, but not at 4 degrees C or if either cell type is fixed with paraformaldehyde. ATP is required for the establishment and maintenance of stable CD4/class II-mediated cell conjugates. Cytoskeletal interactions also regulate CD4/class II adhesion as treatment with the microtubule and microfilament inhibitors colchicine, cytochalasin-D, and nocodazole rapidly dissociates even preformed cell conjugates. Our observations also indicate that the Ag-independent engagement of class II by CD4 induces homotypic clustering of human B cells. This effect is blocked by reagents directed against lymphocyte function-associated Ag-1 and may result from the induction of a high affinity phenotype of lymphocyte function-associated Ag-1 induced by class II signaling. Finally, we discuss the implications of CD4/class II-mediated adhesion and the role of CD4 in the regulation of T cell adhesion.
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