Visualizing ATP Dynamics in Live Mice
Koitabashi, N.; Ogasawara, R.; Yasui, R.; Sugiura, Y.; Matsuda, H.; Nonaka, S.; Izumi, T.; Kurabayashi, M.; Suematsu, M.; Yanagita, M.; Imamura, H.; Yamamoto, M.
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ABSTRACTAnalysis of the dynamics of adenosine triphosphate (ATP) is vital to quantitatively define the actual roles of ATP in biological activities. Here, we applied a genetically encoded Förster resonance energy transfer biosensor “GO-ATeam” and created a transgenic mouse model that allows systemic ATP levels to be quantitatively, sensitively, noninvasively, and spatiotemporally measured under physiological and pathological conditions. We used this model to readily conduct intravital imaging of ATP dynamics under three different conditions: during exercise, in all organs and cells; during myocardial infarction progression; and in response to the application of cardiotoxic drugs. These findings provide compelling evidence that the GO-ATeam mouse model is a powerful tool to investigate the multifarious functions of cellular ATP in vivo with unprecedented spatiotemporal resolution in real-time. This will inform predictions of molecular and morphological responses to perturbations of ATP levels, as well as the elucidation of physiological mechanisms that control ATP homeostasis.One Sentence Summary Intravital real-time imaging of ATP dynamics in multiple organs using GO-ATeam mice, can be used to quantitatively, sensitively, noninvasively, and spatiotemporally measure systemic ATP levels and provide a platform for preclinical pharmacological studies.Competing Interest StatementM.Yamamoto is involved in a pending patent related to GO-ATeam mice. H.I. holds a patent for ATeam probe. All other authors declare no competing interests.View Full Text
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