>
Fa   |   Ar   |   En
   Glucose regulation of load-induced mTOR signaling and ER stress in mammalian heart  
   
نویسنده sen s. ,kundu b.k. ,wu h.c.-h. ,hashmi s.s. ,guthrie p. ,locke l.w. ,roy r.j. ,matherne g.p. ,berr s.s. ,terwelp m. ,scott b. ,carranza s. ,frazier o.h. ,glover d.k. ,dillmann w.h. ,gambello m.j. ,entman m.l. ,taegtmeyer h.
منبع journal of the american heart association - 2013 - دوره : 2 - شماره : 3
چکیده    Background-changes in energy substrate metabolism are first responders to hemodynamic stress in the heart. we have previously shown that hexose-6-phosphate levels regulate mammalian target of rapamycin (mtor) activation in response to insulin. we now tested the hypothesis that inotropic stimulation and increased afterload also regulate mtor activation via glucose 6-phosphate (g6p) accumulation. methods and results- we subjected the working rat heart ex vivo to a high workload in the presence of different energy-providing substrates including glucose,glucose analogues,and noncarbohydrate substrates. we observed an association between g6p accumulation,mtor activation,endoplasmic reticulum (er) stress,and impaired contractile function,all of which were prevented by pretreating animals with rapamycin (mtor inhibition) or metformin (ampk activation). the histone deacetylase inhibitor 4-phenylbutyrate,which relieves er stress,also improved contractile function. in contrast,adding the glucose analogue 2-deoxy-dglucose,which is phosphorylated but not further metabolized,to the perfusate resulted in mtor activation and contractile dysfunction. next we tested our hypothesis in vivo by transverse aortic constriction in mice. using a micro-pet system,we observed enhanced glucose tracer analog uptake and contractile dysfunction preceding dilatation of the left ventricle. in contrast,in hearts overexpressing serca2a,er stress was reduced and contractile function was preserved with hypertrophy. finally,we examined failing human hearts and found that mechanical unloading decreased g6p levels and er stress markers. conclusions-we propose that glucose metabolic changes precede and regulate functional (and possibly also structural) remodeling of the heart. we implicate a critical role for g6p in load-induced mtor activation and er stress. © 2013 the authors.
کلیدواژه ER stress; Glucose; Hypertrophy; Metabolism; mTOR
آدرس division of cardiology,department of internal medicine, United States, department of radiology and medical imaging,university of virginia,charlottesville,va, United States, division of cardiology,department of internal medicine, United States, department of pediatrics,pediatric research center, United States, division of cardiology,department of internal medicine, United States, department of biomedical engineering,university of virginia,charlottesville,va, United States, department of radiology and medical imaging,university of virginia,charlottesville,va, United States, department of pediatrics,university of virginia,charlottesville,va, United States, department of radiology and medical imaging,university of virginia,charlottesville,va,united states,department of biomedical engineering,university of virginia,charlottesville,va, United States, division of cardiology,department of internal medicine, United States, division of endocrinology and metabolism,department of medicine,university of california at san diego,la jolla,ca, United States, texas heart institute at st. luke's,episcopal hospital,houston,tx, United States, texas heart institute at st. luke's,episcopal hospital,houston,tx, United States, the university of texas medical school at houston,houston,tx,united states,cardiovascular division,department of medicine,university of virginia,charlottesville,va, United States, division of endocrinology and metabolism,department of medicine,university of california at san diego,la jolla,ca, United States, department of human genetics,emory university school of medicine,atlanta,ga, United States, department of medicine,baylor college of medicine,houston,tx, United States, division of cardiology,department of internal medicine, United States
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved