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Measuring TCR-pMHC Binding In Situ using a FRET-based Microscopy Assay
Published on: October 30, 2015
Quantitative analysis of T cell receptor complex interaction sites using genetically encoded photo-cross-linkers
Wenjuan Wang1, Tianqi Li, Klara Felsovalyi
1Department of Pathology, ‡Laura and Isaac Perlmutter Cancer Center, and §Department of Biochemistry and Molecular Pharmacology New York University School of Medicine , New York, United States.
Abstract:
The T cell receptor (TCR)-cluster of differentiation 3 (CD3) signaling complex plays an important role in initiation of adaptive immune responses, but weak interactions have obstructed delineation of the individual TCR-CD3 subunit interactions during T cell signaling. Here, we demonstrate that unnatural amino acids (UAA) can be used to photo-cross-link subunits of TCR-CD3 on the cell surface. Incorporating UAA in mammalian cells is usually a low efficiency process. In addition, TCR-CD3 is composed of eight subunits and both TCR and CD3 chains are required for expression on the cell surface. Photo-cross-linking of UAAs for studying protein complexes such as TCR-CD3 is challenging due to the difficulty of transfecting and expressing multisubunit protein complexes in cells combined with the low efficiency of UAA incorporation. Here, we demonstrate that by systematic optimization, we can incorporate UAA in TCR-CD3 with high efficiency. Accordingly, the incorporated UAA can be used for site-specific photo-cross-linking experiments to pinpoint protein interaction sites, as well as to confirm interaction sites identified by X-ray crystallography. We systemically compared two different photo-cross-linkers--p-azido-phenylalanine (pAzpa) and H-p-Bz-Phe-OH (pBpa)--for their ability to map protein subunit interactions in the 2B4 TCR. pAzpa was found to have higher cross-linking efficiency, indicating that optimization of the selection of the most optimal cross-linker is important for correct identification of protein-protein interactions. This method is therefore suitable for studying interaction sites of large, dynamic heteromeric protein complexes associated with various cellular membrane systems.
Insights
Unnatural amino acids (UAAs) enable efficient photo-cross-linking of the T cell receptor (TCR)-CD3 complex, revealing subunit interactions crucial for adaptive immunity. This optimized method precisely maps protein sites in dynamic complexes.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- The T cell receptor (TCR)-cluster of differentiation 3 (CD3) complex is vital for initiating adaptive immune responses.
- Studying individual TCR-CD3 subunit interactions is challenging due to weak signaling and complex subunit composition.
Purpose of the Study:
- To develop and optimize a method for efficient unnatural amino acid (UAA) incorporation and photo-cross-linking of the TCR-CD3 complex.
- To pinpoint protein interaction sites within the TCR-CD3 complex using site-specific photo-cross-linking.
Main Methods:
- Incorporation of UAAs into the TCR-CD3 complex in mammalian cells.
- Systematic optimization of UAA incorporation efficiency.
- Site-specific photo-cross-linking using different cross-linkers (pAzpa and pBpa).
- Comparison of cross-linking efficiency between pAzpa and pBpa.
Main Results:
- Achieved high efficiency of UAA incorporation in the TCR-CD3 complex.
- Demonstrated successful site-specific photo-cross-linking to map protein-protein interactions.
- Identified pAzpa as having higher cross-linking efficiency compared to pBpa for the 2B4 TCR.
- Validated interaction sites identified by X-ray crystallography.
Conclusions:
- Optimized UAA incorporation and photo-cross-linking is a powerful tool for studying large, dynamic protein complexes like TCR-CD3.
- The choice of photo-cross-linker significantly impacts the accuracy of mapping protein interactions.
- This methodology is applicable to various cellular membrane systems and protein complexes.

