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Mac-1 promotes FcgammaRIIA-dependent cell spreading and migration on immune complexes
Ying Xiong1, Chunzhang Cao, Alexandra Makarova
1Center for Vascular and Inflammatory Diseases and Department of Physiology, University of Maryland School of Medicine, 800 W. Baltimore Street, Baltimore, Maryland 21201, USA.
Insights
Integrin Mac-1 directly binds FcgammaRIIA, enhancing immune cell adhesion, spreading, and migration crucial for antibody-dependent cellular cytotoxicity (ADCC). This interaction is key to effective immune responses.
Area of Science:
- Immunology
- Cell Biology
- Molecular Medicine
Background:
- Integrin Mac-1 is vital for Fc receptor (FcR)-mediated antibody-dependent cellular cytotoxicity (ADCC).
- The precise mechanism of Mac-1's role in FcgammaRIIA function remains unclear.
Purpose of the Study:
- To elucidate the mechanism by which Mac-1 enhances FcgammaRIIA-mediated functions.
- To identify the interaction interface between Mac-1 and FcgammaRIIA.
Main Methods:
- Co-immunoprecipitation assays to confirm protein interaction.
- Cell surface co-localization studies.
- Solid-phase binding assays using recombinant proteins.
- Mutational analysis of the alpha(M)I-domain.
Main Results:
- Mac-1 directly interacts with FcgammaRIIA, sustaining cell adhesion, enhancing spreading, and accelerating migration on immune complexes (ICs).
- Mac-1 binding positions FcgammaRIIA at the leading edge of actin polymerization, promoting cell motility.
- The alpha(M)I-domain of Mac-1, specifically the E(253)-R(261) sequence, is identified as the FcgammaRIIA binding interface.
- FcgammaRIIA recognizes Mac-1 via its alpha(M)I-domain, distinct from other FcRs.
Conclusions:
- Mac-1 binding to FcgammaRIIA is essential for prolonged cell adhesion, spreading, and migration on ICs.
- This interaction significantly contributes to effective cell killing via ADCC.
- The alpha(M)I-domain interaction represents a novel mechanism in FcR signaling and immune cell function.
Abstract:
The integrin Mac-1 plays a critical role in Fc receptor (FcR)-mediated antibody-dependent cellular cytotoxicity (ADCC). However, the mechanism by which Mac-1 facilitates the functions of FcgammaRIIA, a major FcR expressed on human leukocytes, is not fully understood. We report here that Mac-1 sustains cell adhesion, enhances cell spreading, and accelerates cell migration on preformed immune complexes (ICs) by directly interacting with FcgammaRIIA but not with the IC substrate. Coupling Mac-1 to FcgammaRIIA allows FcgammaRIIA to reside in the leading front of actin polymerization at the filopodial extension and thus could potentially enhance FcgammaRIIA-mediated cell spreading and migration. The direct interaction between Mac-1 and FcgammaRIIA is demonstrated by co-immunoprecipitation, by cell surface co-localization, and by solid-phase binding assays using recombinant alpha(M)I-domain and soluble FcgammaRIIA. Further mutational analysis identifies the E(253)-R(261) sequence within the alpha(M)I-domain as part of the FcgammaRIIA binding interface within Mac-1. Altogether, these results demonstrate that FcgammaRIIA recognizes Mac-1 via the alpha(M)I-domain but not the lectin domain, a distinct feature from other FcRs, and that Mac-1 binding confers FcgammaRIIA with the ability to prolong cell adhesion as well as to spread and migrate on the ICs, leading to effective cell killing by ADCC.
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