Abstract
Most mechanisms of cell development, physiology, and signal transduction are controlled by protein-protein interactions. Immunoprecipitation of multiprotein complexes detected by flow cytometry (IP-FCM) is a means to quantitatively measure these interactions. The high sensitivity of this method makes it useful even when very little biomaterial is available for analysis, as in the case of rare primary cell subsets or patient samples. Detection of the T cell antigen receptor associated with the CD3 multiprotein complex from as few as 300 primary murine T cells is presented as an example. The method is compatible with quantitative flow cytometry techniques, making it possible to estimate the number of coimmunoprecipitated molecules. Both constitutive and inducible protein-protein interactions can be analyzed, as illustrated in related methodology using glutathione S-transferase-fusion protein pull-down experiments. IP-FCM represents a robust, quantitative, biochemical technique to assess native protein-protein interactions, without requiring genetic engineering or large sample sizes.
MeSH Terms
Animals
CD3 Complex/metabolism
Cells, Cultured
Flow Cytometry/instrumentation,methods
Glutathione Transferase/genetics,metabolism
Immunoprecipitation
Mice
Mice, Inbred BALB C
Models, Biological
Multiprotein Complexes/metabolism
Protein Binding
Proteins/metabolism
Receptors, Antigen, T-Cell/metabolism
Recombinant Fusion Proteins/genetics,metabolism
Reproducibility of Results
T-Lymphocytes/cytology,metabolism
Chemicals
CD3 Complex
Multiprotein Complexes
Proteins
Receptors, Antigen, T-Cell
Recombinant Fusion Proteins
Glutathione Transferase
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Schrum Adam G
Department of Research, University Hospital-Basel, Basel, Switzerland. Schrum.Adam@mayo.edu
Gil Diana
Dopfer Elaine P
Wiest David L
Turka Laurence A
Schamel Wolfgang W A
Palmer Ed
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