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The Streptococcus pyogenes Rgg2/Rgg3 quorum sensing system causes global suppression of macrophage inflammatory programs via an intranuclear mechanism
The Streptococcus pyogenes Rgg2/Rgg3 quorum sensing system causes global suppression of macrophage inflammatory programs via an intranuclear mechanism
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The Streptococcus pyogenes Rgg2/Rgg3 quorum sensing system causes global suppression of macrophage inflammatory programs via an intranuclear mechanism
The Streptococcus pyogenes Rgg2/Rgg3 quorum sensing system causes global suppression of macrophage inflammatory programs via an intranuclear mechanism

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The Streptococcus pyogenes Rgg2/Rgg3 quorum sensing system causes global suppression of macrophage inflammatory programs via an intranuclear mechanism
The Streptococcus pyogenes Rgg2/Rgg3 quorum sensing system causes global suppression of macrophage inflammatory programs via an intranuclear mechanism
Journal Article

The Streptococcus pyogenes Rgg2/Rgg3 quorum sensing system causes global suppression of macrophage inflammatory programs via an intranuclear mechanism

2025
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Overview
Streptococcus pyogenes is a ubiquitous pathogen that causes over 600 million infections every year and 500,000 to 1 million fatalities. While in developed countries, it is generally known to cause mild conditions such as pharyngitis, it can also manifest as severe infections, such as necrotizing fasciitis and septic arthritis, and lead to post-infectious sequelae including rheumatic heart disease and glomerulonephritis. Elucidating new mechanisms of virulence in this organism, including how it evades and suppresses immune responses, is critical in understanding its pathogenicity and epidemiology, as well as identifying novel treatment avenues in this era of multidrug-resistant bacteria. In this study, we characterize the broad spectrum by which GAS modulates the host innate immune response and begin to uncover host pathways that the bacteria can use or inhibit for its survival.