New anti-infective approaches are much needed to control multi-drug-resistant (MDR) pathogens, such as methicillin-resistantStaphylococcusaureus (MRSA). Here, we found for the first time that a recombinantprotein derived from the cell wall binding domain (CBD) of the bacteriophage lysin PlyV12, designated as V12CBD, could attenuateS. aureusvirulence and enhance hostimmune defenses via multiple manners. After binding with V12CBD,S. aureus became less invasive to epithelial cells and more susceptible to macrophage killing. The expressions of multiple importantvirulence genes ofS. aureus were reduced 2.4- to 23.4-fold as response to V12CBD More significantly, V12CBD could activate macrophages through NF-κB pathway and enhance phagocytosis againstS. aureus As a result, good protections of the mice from MRSA infections were achieved in therapeutic and prophylactic models. These unique functions of V12CBD would render it a novel alternative molecule to control MDRS. aureus infections.
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