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   Mycobacterium tuberculosis eis regulates autophagy,inflammation,and cell death through redox-dependent signaling  
   
نویسنده shin d.-m. ,jeon b.-y. ,lee h.-m. ,jin h.s. ,yuk j.-m. ,song c.-h. ,lee s.-h. ,lee z.-w. ,cho s.-n. ,kim j.-m. ,friedman r.l. ,jo e.-k.
منبع plos pathogens - 2010 - دوره : 6 - شماره : 12
چکیده    The enhanced intracellular survival (eis) gene of mycobacterium tuberculosis (mtb) is involved in the intracellular survival of m. smegmatis. however,its exact effects on host cell function remain elusive. we herein report that mtb eis plays essential roles in modulating macrophage autophagy,inflammatory responses,and cell death via a reactive oxygen species (ros)- dependent pathway. macrophages infected with an mtb eis-deletion mutant h37rv (mtb-deis) displayed markedly increased accumulation of massive autophagic vacuoles and formation of autophagosomes in vitro and in vivo. infection of macrophages with mtb-deis increased the production of tumor necrosis factor-a and interleukin-6 over the levels produced by infection with wild-type or complemented strains. elevated ros generation in macrophages infected with mtb-deis (for which nadph oxidase and mitochondria were largely responsible) rendered the cells highly sensitive to autophagy activation and cytokine production. despite considerable activation of autophagy and proinflammatory responses,macrophages infected with mtb-deis underwent caspase-independent cell death. this cell death was significantly inhibited by blockade of autophagy and c-jun n-terminal kinase-ros signaling,suggesting that excessive autophagy and oxidative stress are detrimental to cell survival. finally,artificial over-expression of eis or pretreatment with recombinant eis abrogated production of both ros and proinflammatory cytokines,which depends on the n-acetyltransferase domain of the eis protein. collectively,these data indicate that mtb eis suppresses host innate immune defenses by modulating autophagy,inflammation,and cell death in a redox-dependent manner. © 2010 shin et al.
آدرس department of microbiology,college of medicine,chungnam national university,daejeon,south korea,infection signaling network research center,college of medicine,chungnam national university,daejeon, South Korea, department of microbiology and brain korea 21 project for medical sciences,yonsei university college of medicine,seoul, South Korea, department of microbiology,college of medicine,chungnam national university,daejeon,south korea,infection signaling network research center,college of medicine,chungnam national university,daejeon, South Korea, department of microbiology,college of medicine,chungnam national university,daejeon,south korea,infection signaling network research center,college of medicine,chungnam national university,daejeon, South Korea, department of microbiology,college of medicine,chungnam national university,daejeon,south korea,infection signaling network research center,college of medicine,chungnam national university,daejeon, South Korea, department of microbiology,college of medicine,chungnam national university,daejeon, South Korea, infection signaling network research center,college of medicine,chungnam national university,daejeon,south korea,department of pathology,college of medicine,chungnam national university,daejeon, South Korea, division of life science,korea basic science institute,daejeon, South Korea, department of microbiology and brain korea 21 project for medical sciences,yonsei university college of medicine,seoul, South Korea, infection signaling network research center,college of medicine,chungnam national university,daejeon,south korea,department of pathology,college of medicine,chungnam national university,daejeon, South Korea, department of immunobiology,university of arizona,tucson,az, United States, department of microbiology,college of medicine,chungnam national university,daejeon,south korea,infection signaling network research center,college of medicine,chungnam national university,daejeon, South Korea
 
     
   
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