Staphylococcal complement evasion by various convertase-blocking molecules.

To combat the human immune response, bacteria should be able to divert the effectiveness of the complement system. We identify four potent complement inhibitors in Staphylococcus aureus that are part of a new immune evasion cluster. Two are homologues of the C3 convertase modulator staphylococcal co...

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Main Authors: Jongerius, I, Köhl, J, Pandey, M, Ruyken, M, Kessel, v, van Strijp, J, Rooijakkers, S
Format: Journal article
Language:English
Published: 2007
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author Jongerius, I
Köhl, J
Pandey, M
Ruyken, M
Kessel, v
van Strijp, J
Rooijakkers, S
author_facet Jongerius, I
Köhl, J
Pandey, M
Ruyken, M
Kessel, v
van Strijp, J
Rooijakkers, S
author_sort Jongerius, I
collection OXFORD
description To combat the human immune response, bacteria should be able to divert the effectiveness of the complement system. We identify four potent complement inhibitors in Staphylococcus aureus that are part of a new immune evasion cluster. Two are homologues of the C3 convertase modulator staphylococcal complement inhibitor (SCIN) and function in a similar way as SCIN. Extracellular fibrinogen-binding protein (Efb) and its homologue extracellular complement-binding protein (Ecb) are identified as potent complement evasion molecules, and their inhibitory mechanism was pinpointed to blocking C3b-containing convertases: the alternative pathway C3 convertase C3bBb and the C5 convertases C4b2aC3b and C3b2Bb. The potency of Efb and Ecb to block C5 convertase activity was demonstrated by their ability to block C5a generation and C5a-mediated neutrophil activation in vitro. Further, Ecb blocks C5a-dependent neutrophil recruitment into the peritoneal cavity in a mouse model of immune complex peritonitis. The strong antiinflammatory properties of these novel S. aureus-derived convertase inhibitors make these compounds interesting drug candidates for complement-mediated diseases.
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spelling oxford-uuid:7f3bb805-b562-469a-8ea5-1a686f9b61ce2022-03-26T21:15:31ZStaphylococcal complement evasion by various convertase-blocking molecules.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:7f3bb805-b562-469a-8ea5-1a686f9b61ceEnglishSymplectic Elements at Oxford2007Jongerius, IKöhl, JPandey, MRuyken, MKessel, vvan Strijp, JRooijakkers, STo combat the human immune response, bacteria should be able to divert the effectiveness of the complement system. We identify four potent complement inhibitors in Staphylococcus aureus that are part of a new immune evasion cluster. Two are homologues of the C3 convertase modulator staphylococcal complement inhibitor (SCIN) and function in a similar way as SCIN. Extracellular fibrinogen-binding protein (Efb) and its homologue extracellular complement-binding protein (Ecb) are identified as potent complement evasion molecules, and their inhibitory mechanism was pinpointed to blocking C3b-containing convertases: the alternative pathway C3 convertase C3bBb and the C5 convertases C4b2aC3b and C3b2Bb. The potency of Efb and Ecb to block C5 convertase activity was demonstrated by their ability to block C5a generation and C5a-mediated neutrophil activation in vitro. Further, Ecb blocks C5a-dependent neutrophil recruitment into the peritoneal cavity in a mouse model of immune complex peritonitis. The strong antiinflammatory properties of these novel S. aureus-derived convertase inhibitors make these compounds interesting drug candidates for complement-mediated diseases.
spellingShingle Jongerius, I
Köhl, J
Pandey, M
Ruyken, M
Kessel, v
van Strijp, J
Rooijakkers, S
Staphylococcal complement evasion by various convertase-blocking molecules.
title Staphylococcal complement evasion by various convertase-blocking molecules.
title_full Staphylococcal complement evasion by various convertase-blocking molecules.
title_fullStr Staphylococcal complement evasion by various convertase-blocking molecules.
title_full_unstemmed Staphylococcal complement evasion by various convertase-blocking molecules.
title_short Staphylococcal complement evasion by various convertase-blocking molecules.
title_sort staphylococcal complement evasion by various convertase blocking molecules
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