Stat3 Activation Links a C/EBPδ to Myostatin Pathway to Stimulate Loss of Muscle Mass

Catabolic conditions like chronic kidney disease (CKD) cause loss of muscle mass by unclear mechanisms. In muscle biopsies from CKD patients, we found activated Stat3 (p-Stat3) and hypothesized that p-Stat3 initiates muscle wasting. We created mice with muscle-specific knockout (KO) that prevents ac...

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Veröffentlicht in:Cell metabolism 2013-09, Vol.18 (3), p.368-379
Hauptverfasser: Zhang, Liping, Pan, Jenny, Dong, Yanjun, Tweardy, David J., Dong, Yanlan, Garibotto, Giacomo, Mitch, William E.
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Sprache:eng
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Zusammenfassung:Catabolic conditions like chronic kidney disease (CKD) cause loss of muscle mass by unclear mechanisms. In muscle biopsies from CKD patients, we found activated Stat3 (p-Stat3) and hypothesized that p-Stat3 initiates muscle wasting. We created mice with muscle-specific knockout (KO) that prevents activation of Stat3. In these mice, losses of body and muscle weights were suppressed in models with CKD or acute diabetes. A small-molecule that inhibits Stat3 activation produced similar responses, suggesting a potential for translation strategies. Using CCAAT/enhancer-binding protein δ (C/EBPδ) KO mice and C2C12 myotubes with knockdown of C/EBPδ or myostatin, we determined that p-Stat3 initiates muscle wasting via C/EBPδ, stimulating myostatin, a negative muscle growth regulator. C/EBPδ KO also improved survival of CKD mice. We verified that p-Stat3, C/EBPδ, and myostatin were increased in muscles of CKD patients. The pathway from p-Stat3 to C/EBPδ to myostatin and muscle wasting could identify therapeutic targets that prevent muscle wasting. [Display omitted] •Activated Stat3 proceeds to C/EBPδ then to myostatin and causes muscle wasting•A Stat3 inhibitor blocked muscle losses, suggesting a translational potential•Despite CKD, KO of Stat3 or C/EBPδ blocks myostatin expression and muscle losses•Components of this pathway were found in muscle biopsies from CKD patients
ISSN:1550-4131
1932-7420
DOI:10.1016/j.cmet.2013.07.012