Abstract
IdeS, a recently discovered cysteine proteinase secreted by the important human pathogen Streptococcus pyogenes, interferes with phagocytic killing by specifically cleaving the heavy chain of immunoglobulin G. The fact that the enzyme targets one of the key molecules of the adapted immune response raised the question of whether an antibody response against IdeS could inhibit, i.e., neutralize, enzyme activity. Paired acute- and convalescent-phase serum samples from patients with pharyngotonsillitis (n = 10), bacteremia (n = 7), and erysipelas (n = 4) were analyzed. Antibodies with the ability to neutralize IdeS enzymatic activity were already found in two-thirds of acute-phase sera. However, patients who seroconverted to IdeS, in particular patients with pharyngotonsillitis and erysipelas, developed specific antibodies during convalescence with an increased capability to efficiently neutralize the enzymatic activity of IdeS. Also, the presence of neutralizing antibodies decreased the ability of IdeS to mediate bacterial survival in human immune blood. In patients with bacteremia, several acute-phase sera contained neutralizing antibodies, but no correlation was found to severity or outcome of invasive infections. Still, the fact that the human immune response targets the enzymatic activity of IdeS supports the view that the enzyme plays an important role during streptococcal infection.
MeSH Terms
Amino Acid Sequence
Antibodies, Bacterial/biosynthesis,physiology
Antibody Specificity
Bacteremia/blood,enzymology,immunology
Bacterial Proteins/antagonists & inhibitors,immunology
Base Sequence
Blood Bactericidal Activity
Cysteine Proteinase Inhibitors/biosynthesis,physiology
Humans
Hydrolysis
Immunoglobulin G/biosynthesis,blood,physiology
Molecular Sequence Data
Streptococcal Infections/blood,enzymology,immunology
Streptococcus pyogenes/enzymology,immunology
Virulence
Chemicals
Antibodies, Bacterial
Bacterial Proteins
Cysteine Proteinase Inhibitors
Immunoglobulin G
Mac-1-like protein, Streptococcus
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Akesson Per
Department of Molecular Biology, Umeå University, 90187 Umeå, Sweden.
Moritz Linnea
Truedsson Mikael
Christensson Bertil
von Pawel-Rammingen Ulrich
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