Structure of the extracellular portion of CD46 provides insights into its interactions with complement proteins and
B David Persson1, Nikolaus B Schmitz, César Santiago
1University of Tuebingen, Tuebingen, Germany.
Insights
The membrane cofactor protein (MCP, CD46) structure reveals a unique bend crucial for immune interactions. This finding advances understanding of CD46
Area of Science:
- Immunology
- Structural Biology
- Virology
Background:
- Membrane cofactor protein (MCP, CD46) is vital for innate immunity, protecting cells from complement C3b and C4b.
- CD46 also influences acquired immunity, autophagy, and serves as a receptor for pathogens like adenoviruses and measles virus.
Purpose of the Study:
- To determine the crystal structure of the extracellular region of CD46 in complex with human adenovirus type 11 fiber knob.
- To elucidate the structural basis for CD46's interactions with both immune ligands and viral pathogens.
Main Methods:
- X-ray crystallography was employed to determine the high-resolution structure of the CD46-adenovirus complex.
- Structural analysis focused on the arrangement of short consensus repeats (SCR1-SCR4) and identified key structural features.
Main Results:
- The extracellular CD46 region adopts an elongated, hockey-stick-like shape with a notable bend between SCR3 and SCR4.
- This bend is caused by a five-residue hydrophobic insertion in a SCR3 surface loop, impacting ligand interactions.
- The structure maps known binding sites, providing a framework for understanding CD46's diverse functional roles.
Conclusions:
- The identified structural bend in CD46 is critical for its function as a receptor for complement proteins and pathogens.
- This structural insight enhances our comprehension of CD46's multifaceted role in the immune system and host-pathogen interactions.
Abstract:
The human membrane cofactor protein (MCP, CD46) is a central component of the innate immune system. CD46 protects autologous cells from complement attack by binding to complement proteins C3b and C4b and serving as a cofactor for their cleavage. Recent data show that CD46 also plays a role in mediating acquired immune responses, and in triggering autophagy. In addition to these physiologic functions, a significant number of pathogens, including select adenoviruses, measles virus, human herpes virus 6 (HHV-6), Streptococci, and Neisseria, use CD46 as a cell attachment receptor. We have determined the crystal structure of the extracellular region of CD46 in complex with the human adenovirus type 11 fiber knob. Extracellular CD46 comprises four short consensus repeats (SCR1-SCR4) that form an elongated structure resembling a hockey stick, with a long shaft and a short blade. Domains SCR1, SCR2 and SCR3 are arranged in a nearly linear fashion. Unexpectedly, however, the structure reveals a profound bend between domains SCR3 and SCR4, which has implications for the interactions with ligands as well as the orientation of the protein at the cell surface. This bend can be attributed to an insertion of five hydrophobic residues in a SCR3 surface loop. Residues in this loop have been implicated in interactions with complement, indicating that the bend participates in binding to C3b and C4b. The structure provides an accurate framework for mapping all known ligand binding sites onto the surface of CD46, thereby advancing an understanding of how CD46 acts as a receptor for pathogens and physiologic ligands of the immune system.
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