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Published on: August 2, 2021
Structural basis for CD97 recognition of the decay-accelerating factor CD55 suggests mechanosensitive activation of
Minghui Niu1, Shengzhao Xu1, Jie Yang2
1Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University, Shanghai, China.
Insights
The CD55-CD97 complex structure reveals an antiparallel binding mode, explaining how this interaction withstands force. This finding offers insights into adhesion G protein-coupled receptor activation mechanisms.
Area of Science:
- Structural Biology
- Immunology
- Biochemistry
Background:
- The adhesion G protein-coupled receptor CD97 and its ligand CD55 are crucial in the immune system.
- Dysfunction in CD97-CD55 binding is implicated in autoimmune diseases and cancer.
- The precise interaction mechanism, particularly CD55's affinity for CD97's shortest isoform, was previously unclear.
Purpose of the Study:
- To elucidate the structural basis of the CD55-CD97 interaction.
- To understand the molecular determinants of CD55 binding specificity to CD97 isoforms.
- To investigate the mechanical properties of the CD55-CD97 complex.
Main Methods:
- Designed a chimeric construct of CD97's EGF1,2,5 domains and CD55's SCR1-4 domains.
- Determined the complex structure using X-ray crystallography.
- Performed mutagenesis studies to confirm key interaction sites.
Main Results:
- Revealed an antiparallel binding mode between CD97's EGF domains and CD55's SCR1-3 domains.
- Identified EGF5 of CD97 as critical for interaction and specificity.
- Demonstrated that the complex architecture suggests a force-resisting geometry.
Conclusions:
- The CD55-CD97 complex exhibits a unique binding architecture enabling resistance to tensile forces.
- This structural and mechanical insight provides a foundation for understanding adhesion G protein-coupled receptor mechanosensing.
- The findings clarify the molecular basis of CD55-CD97 interactions in physiological and pathological contexts.
Abstract:
The adhesion G protein-coupled receptor CD97 and its ligand complement decay-accelerating factor CD55 are important binding partners in the human immune system. Dysfunction in this binding has been linked to immune disorders such as multiple sclerosis and rheumatoid arthritis, as well as various cancers. Previous literatures have indicated that the CD97 includes 3 to 5 epidermal growth factor (EGF) domains at its N terminus and these EGF domains can bind to the N-terminal short consensus repeat (SCR) domains of CD55. However, the details of this interaction remain elusive, especially why the CD55 binds with the highest affinity to the shortest isoform of CD97 (EGF1,2,5). Herein, we designed a chimeric expression construct with the EGF1,2,5 domains of CD97 and the SCR1-4 domains of CD55 connected by a flexible linker and determined the complex structure by crystallography. Our data reveal that the two proteins adopt an overall antiparallel binding mode involving the SCR1-3 domains of CD55 and all three EGF domains of CD97. Mutagenesis data confirmed the importance of EGF5 in the interaction and explained the binding specificity between CD55 and CD97. The architecture of CD55-CD97 binding mode together with kinetics suggests a force-resisting shearing stretch geometry when forces applied to the C termini of both proteins in the circulating environment. The potential of the CD55-CD97 complex to withstand tensile force may provide a basis for the mechanosensing mechanism for activation of adhesion G protein-coupled receptors.
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