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Molecular Basis for Bordetella pertussis Interference with Complement, Coagulation, Fibrinolytic, and Contact Activation Systems: the Cryo-EM Structure of the Vag8-C1 Inhibitor Complex

Authors :
Arun Dhillon
Dorina Roem
Susan M. Lea
Emily Furlong
Ilse Jongerius
Justin C. Deme
Steven D. Johnson
Landsteiner Laboratory
Paediatric Infectious Diseases / Rheumatology / Immunology
AII - Inflammatory diseases
Source :
mBio, Vol 12, Iss 2 (2021), mBio, mBio, 12(2):e02823-20. American Society for Microbiology
Publication Year :
2021
Publisher :
American Society for Microbiology, 2021.

Abstract

The structure of a 10-kDa protein complex is one of the smallest to be determined using cryo-electron microscopy at high resolution. The structure reveals that C1-INH is sequestered in an inactivated state by burial of the reactive center loop in Vag8.<br />Complement, contact activation, coagulation, and fibrinolysis are serum protein cascades that need strict regulation to maintain human health. Serum glycoprotein, a C1 inhibitor (C1-INH), is a key regulator (inhibitor) of serine proteases of all the above-mentioned pathways. Recently, an autotransporter protein, virulence-associated gene 8 (Vag8), produced by the whooping cough pathogen, Bordetella pertussis, was shown to bind to C1-INH and interfere with its function. Here, we present the structure of the Vag8–C1-INH complex determined using cryo-electron microscopy at a 3.6-Å resolution. The structure shows a unique mechanism of C1-INH inhibition not employed by other pathogens, where Vag8 sequesters the reactive center loop of C1-INH, preventing its interaction with the target proteases.

Details

ISSN :
21507511 and 21612129
Volume :
12
Database :
OpenAIRE
Journal :
mBio
Accession number :
edsair.doi.dedup.....2d54dd1b9e034adddb1a195381a2560d
Full Text :
https://doi.org/10.1128/mbio.02823-20