| Literature DB >> 25404323 |
Enrico Malito1, Marco Biancucci2, Agnese Faleri2, Ilaria Ferlenghi2, Maria Scarselli2, Giulietta Maruggi2, Paola Lo Surdo2, Daniele Veggi2, Alessia Liguori2, Laura Santini2, Isabella Bertoldi2, Roberto Petracca2, Sara Marchi2, Giacomo Romagnoli2, Elena Cartocci2, Irene Vercellino2, Silvana Savino2, Glen Spraggon3, Nathalie Norais2, Mariagrazia Pizza2, Rino Rappuoli1, Vega Masignani2, Matthew James Bottomley2.
Abstract
Serogroup B Neisseria meningitidis (MenB) is a major cause of severe sepsis and invasive meningococcal disease, which is associated with 5-15% mortality and devastating long-term sequelae. Neisserial adhesin A (NadA), a trimeric autotransporter adhesin (TAA) that acts in adhesion to and invasion of host epithelial cells, is one of the three antigens discovered by genome mining that are part of the MenB vaccine that recently was approved by the European Medicines Agency. Here we present the crystal structure of NadA variant 5 at 2 Å resolution and transmission electron microscopy data for NadA variant 3 that is present in the vaccine. The two variants show similar overall topology with a novel TAA fold predominantly composed of trimeric coiled-coils with three protruding wing-like structures that create an unusual N-terminal head domain. Detailed mapping of the binding site of a bactericidal antibody by hydrogen/deuterium exchange MS shows that a protective conformational epitope is located in the head of NadA. These results provide information that is important for elucidating the biological function and vaccine efficacy of NadA.Entities:
Keywords: coiled coil; hydrogen–deuterium exchange; meningitis; thermostability; trimeric autotransporter adhesin
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Year: 2014 PMID: 25404323 PMCID: PMC4260552 DOI: 10.1073/pnas.1419686111
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205