[HTML][HTML] The vestigial enzyme D-dopachrome tautomerase protects the heart against ischemic injury

D Qi, K Atsina, L Qu, X Hu, X Wu, B Xu… - The Journal of …, 2014 - Am Soc Clin Investig
D Qi, K Atsina, L Qu, X Hu, X Wu, B Xu, M Piecychna, L Leng, G Fingerle-Rowson, J Zhang…
The Journal of clinical investigation, 2014Am Soc Clin Investig
The cellular response to stress involves the recruitment and coordination of molecular
signaling pathways that prevent cell death. D-dopachrome tautomerase (DDT) is an enzyme
that lacks physiologic substrates in mammalian cells, but shares partial sequence and
structural homology with macrophage migration inhibitory factor (MIF). Here, we observed
that DDT is highly expressed in murine cardiomyocytes and secreted by the heart after
ischemic stress. Antibody-dependent neutralization of secreted DDT exacerbated both …
The cellular response to stress involves the recruitment and coordination of molecular signaling pathways that prevent cell death. D-dopachrome tautomerase (DDT) is an enzyme that lacks physiologic substrates in mammalian cells, but shares partial sequence and structural homology with macrophage migration inhibitory factor (MIF). Here, we observed that DDT is highly expressed in murine cardiomyocytes and secreted by the heart after ischemic stress. Antibody-dependent neutralization of secreted DDT exacerbated both ischemia-induced cardiac contractile dysfunction and necrosis. We generated cardiomyocyte-specific DDT knockout mice (Myh6-Cre Ddtfl/fl), which demonstrated normal baseline cardiac size and function, but had an impaired physiologic response to ischemia-reperfusion. Hearts from Myh6-Cre Ddtfl/fl mice exhibited more necrosis and LV contractile dysfunction than control hearts after coronary artery ligation and reperfusion. Furthermore, treatment with DDT protected isolated hearts against injury and contractile dysfunction after ischemia-reperfusion. The protective effect of DDT required activation of the metabolic stress enzyme AMP-activated protein kinase (AMPK), which was mediated by a CD74/CaMKK2-dependent mechanism. Together, our data indicate that cardiomyocyte secretion of DDT has important autocrine/paracrine effects during ischemia-reperfusion that protect the heart against injury.
The Journal of Clinical Investigation