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Structure of the UspA1 protein fragment from Moraxella catarrhalis responsible for C3d binding
- Source :
- Journal of Structural Biology
- Publication Year :
- 2019
- Publisher :
- Elsevier, 2019.
-
Abstract
- Graphical abstract<br />Highlights • UspA1299–452 is a left-handed coiled-coil structure that follows TAA rules. • Structure of UspA1299–452 contains part of the long neck domain and of the stalk. • UspA1-C3d binding does not saturate at C3d physiological concentrations. • The binding constant as measured by thermophoresis is at least 140 μM. • Full-length proteins or other factors are important for UspA1-C3d interactions.<br />The gram-negative bacterium Moraxella catarrhalis infects humans exclusively, causing various respiratory tract diseases, including acute otitis media in children, septicaemia or meningitis in adults, and pneumonia in the elderly. To do so, M. catarrhalis expresses virulence factors facilitating its entry and survival in the host. Among them are the ubiquitous surface proteins (Usps): A1, A2, and A2H, which all belong to the trimeric autotransporter adhesin family. They bind extracellular matrix molecules and inhibit the classical and alternative pathways of the complement cascade by recruiting complement regulators C3d and C4b binding protein. Here, we report the 2.5 Å resolution X-ray structure of UspA1299–452, which previous work had suggested contained the canonical C3d binding site found in both UspA1 and UspA2. We show that this fragment of the passenger domain contains part of the long neck domain (residues 299–336) and a fragment of the stalk (residues 337–452). The coiled-coil stalk is left-handed, with 7 polar residues from each chain facing the core and coordinating chloride ions or water molecules. Despite the previous reports of tight binding in serum-based assays, we were not able to demonstrate binding between C3d and UspA1299–452 using ELISA or biolayer interferometry, and the two proteins run separately on size-exclusion chromatography. Microscale thermophoresis suggested that the dissociation constant was 140.5 ± 8.4 μM. We therefore suggest that full-length proteins or other additional factors are important in UspA1-C3d interactions. Other molecules on the bacterial surface or present in serum may enhance binding of those two molecules.
- Subjects :
- MECHANISM
UspA1
Crystallography, X-Ray
Protein Structure, Secondary
Moraxella catarrhalis
DOMAIN
Structural Biology
PROGRAM
CEACAM1, carcinoembryonic antigen-related cell adhesion molecule 1
Usps, ubiquitous surface proteins
Trimeric autotransporter adhesin
CRYSTAL-STRUCTURE
LB, Luria broth
NETWORK
A1
CV, column volume
0303 health sciences
biology
p, polar
C4b-binding protein
Chemistry
h, hydrophobic
030302 biochemistry & molecular biology
C3d protein
SAXS, small-angle X-ray scattering
EPITHELIAL-CELLS
3. Good health
Biochemistry
Complement C3d
Chromatography, Gel
Bacterial Outer Membrane Proteins
Protein Binding
TAA, trimeric autotransporter adhesin
FIBRONECTIN
Virulence
Article
03 medical and health sciences
PBS, phosphate buffered saline
TRIMERIC AUTOTRANSPORTER ADHESINS
Binding site
complement system
030304 developmental biology
ComputingMethodologies_COMPUTERGRAPHICS
Binding Sites
RECEPTOR
Microscale thermophoresis
biology.organism_classification
Complement system
TAAs
Protein Fragment
1182 Biochemistry, cell and molecular biology
Anisotropy
X-ray structure
IPTG, isopropyl β-d-1-thiogalactopyranoside
Subjects
Details
- Language :
- English
- ISSN :
- 10478477
- Database :
- OpenAIRE
- Journal :
- Journal of Structural Biology
- Accession number :
- edsair.doi.dedup.....19c4afb445d2ff62bb9a6b7e580c96c0