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Published on: June 13, 2014
Ultrastructure and function of dimeric, soluble intercellular adhesion molecule-1 (ICAM-1)
C D Jun1, C V Carman, S D Redick
1Center for Blood Research and the Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Insights
Intercellular adhesion molecule-1 (ICAM-1) can form different dimer structures, including at domain 1, affecting its binding to integrin alpha(L)beta(2). These ICAM-1 dimers show enhanced binding affinities compared to the monomeric form.
Area of Science:
- Cellular Biology
- Immunology
- Structural Biology
Background:
- Intercellular adhesion molecule-1 (ICAM-1) is known to dimerize on cell surfaces.
- Previous research suggested roles for the immunoglobulin superfamily domain 5 and transmembrane domain in ICAM-1 dimerization.
- Crystallographic data indicated potential dimerization mediated by domain 1.
Purpose of the Study:
- To investigate ICAM-1 dimerization at domain 1 and its impact on binding to integrin alpha(L)beta(2).
- To characterize different topological forms of ICAM-1 dimers.
- To compare the binding affinities of various ICAM-1 dimer topologies to the integrin alpha(L)beta(2) I domain.
Main Methods:
- Construction of soluble C-terminally dimerized ICAM-1 using an alpha-helical coiled coil.
- Introduction of cysteine mutations at the domain 1 dimer interface to create disulfide-bonded domain 1 dimers.
- Generation of combined domain 1/C-terminal dimers.
- Electron microscopy for structural analysis of dimer topologies.
- Surface plasmon resonance (SPR) to assess binding affinities.
Main Results:
- Soluble C-terminal dimers exhibited straight, bent, U-shaped, ring-like, and W-shaped tetramer forms.
- Mutations at the domain 1 interface successfully generated soluble disulfide-bonded ICAM-1 domain 1 dimers.
- Combining domain 1 and C-terminal dimerization yielded significant amounts of ring-like dimers and W-shaped tetramers.
- All tested ICAM-1 dimer forms (domain 1, C-terminal, and domain 1/C-terminal) bound to the integrin alpha(L)beta(2) I domain with 1.5-3 fold higher affinity than monomeric ICAM-1.
Conclusions:
- ICAM-1 can adopt at least three distinct dimeric topologies.
- Dimerization at domain 1 does not impede ICAM-1's binding to the integrin alpha(L)beta(2) I domain.
- ICAM-1 dimerization, particularly at domain 1, enhances binding affinity to its integrin ligand.
Abstract:
Previous studies have demonstrated dimerization of intercellular adhesion molecule-1 (ICAM-1) on the cell surface and suggested a role for immunoglobulin superfamily domain 5 and/or the transmembrane domain in mediating such dimerization. Crystallization studies suggest that domain 1 may also mediate dimerization. ICAM-1 binds through domain 1 to the I domain of the integrin alpha(L)beta(2) (lymphocyte function-associated antigen 1). Soluble C-terminally dimerized ICAM-1 was made by replacing the transmembrane and cytoplasmic domains with an alpha-helical coiled coil. Electron microscopy revealed C-terminal dimers that were straight, slightly bent, and sometimes U-shaped. A small number of apparently closed ring-like dimers and W-shaped tetramers were found. To capture ICAM-1 dimerized at the crystallographically defined dimer interface in domain 1, cysteines were introduced into this interface. Several of these mutations resulted in the formation of soluble disulfide-bonded ICAM-1 dimers (domain 1 dimers). Combining a domain 1 cysteine mutation with the C-terminal dimers (domain 1/C-terminal dimers) resulted in significant amounts of both closed ring-like dimers and W-shaped tetramers. Surface plasmon resonance studies showed that all of the dimeric forms of ICAM-1 (domain 1, C-terminal, and domain 1/C-terminal dimers) bound similarly to the integrin alpha(L)beta(2) I domain, with affinities approximately 1.5--3-fold greater than that of monomeric ICAM-1. These studies demonstrate that ICAM-1 can form at least three different topologies and that dimerization at domain 1 does not interfere with binding in domain 1 to alpha(L)beta(2).
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