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Publication : Bilirubin gates the TRPM2 channel as a direct agonist to exacerbate ischemic brain damage.

First Author  Liu HW Year  2023
Journal  Neuron Volume  111
Issue  10 Pages  1609-1625.e6
PubMed ID  36921602 Mgi Jnum  J:342753
Mgi Id  MGI:7463884 Doi  10.1016/j.neuron.2023.02.022
Citation  Liu HW, et al. (2023) Bilirubin gates the TRPM2 channel as a direct agonist to exacerbate ischemic brain damage. Neuron
abstractText  Stroke prognosis is negatively associated with an elevation of serum bilirubin, but how bilirubin worsens outcomes remains mysterious. We report that post-, but not pre-, stroke bilirubin levels among inpatients scale with infarct volume. In mouse models, bilirubin increases neuronal excitability and ischemic infarct, whereas ischemic insults induce the release of endogenous bilirubin, all of which are attenuated by knockout of the TRPM2 channel or its antagonist A23. Independent of canonical TRPM2 intracellular agonists, bilirubin and its metabolic derivatives gate the channel opening, whereas A23 antagonizes it by binding to the same cavity. Knocking in a loss of binding point mutation for bilirubin, TRPM2-D1066A, effectively antagonizes ischemic neurotoxicity in mice. These findings suggest a vicious cycle of stroke injury in which initial ischemic insults trigger the release of endogenous bilirubin from injured cells, which potentially acts as a volume neurotransmitter to activate TRPM2 channels, aggravating Ca(2+)-dependent brain injury.
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