TOR haploinsufficiency in heterozygous zebrafish improved cardiac function, prevented pathological remodeling, and reduced mortality in adult fish models of cardiomyopathy.
Does target of rapamycin (TOR) signaling inhibition attenuate cardiomyopathy in adult zebrafish models?
Genetic reduction of TOR signaling provides long-term cardioprotection against cardiomyopathies of distinct etiologies in adult zebrafish models.
RATIONALE: Although a cardioprotective function of target of rapamycin (TOR) signaling inhibition has been suggested by pharmacological studies using rapamycin, genetic evidences are still lacking. We explored adult zebrafish as a novel vertebrate model for dissecting signaling pathways in cardiomyopathy. OBJECTIVE: We generated the second adult zebrafish cardiomyopathy model induced by doxorubicin. By genetically analyzing both the doxorubicin and our previous established anemia-induced cardiomyopathy models, we decipher the functions of TOR signaling in cardiomyopathies of different etiology. METHODS AND RESULTS: Along the progression of both cardiomyopathy models, we detected dynamic TOR activity at different stages of pathogenesis as well as distinct effects of TOR signaling inhibition. Nevertheless, cardiac enlargement in both models can be effectively attenuated by inhibition of TOR signaling through short-term rapamycin treatment. To assess the long-term effects of TOR reduction, we used a zebrafish target of rapamycin (ztor) mutant identified from an insertional mutagenesis screen. We show that TOR haploinsufficiency in the ztor heterozygous fish improved cardiac function, prevented pathological remodeling events, and ultimately reduced mortality in both adult fish models of cardiomyopathy. Mechanistically, these cardioprotective effects are conveyed by the antihypertrophy, antiapoptosis, and proautophagy function of TOR signaling inhibition. CONCLUSIONS: Our results prove adult zebrafish as a conserved novel vertebrate model for human cardiomyopathies. Moreover, we provide the first genetic evidence to demonstrate a long-term cardioprotective effect of TOR signaling inhibition on at least 2 cardiomyopathies of distinct etiology, despite dynamic TOR activities during their pathogenesis.
Ding et al. (Fri,) conducted a other in Cardiomyopathy. TOR haploinsufficiency (ztor heterozygous mutant) and rapamycin vs. Wild-type or untreated controls was evaluated on Cardiac function, pathological remodeling, and mortality. TOR haploinsufficiency in heterozygous zebrafish improved cardiac function, prevented pathological remodeling, and reduced mortality in adult fish models of cardiomyopathy.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: