Inhibition of histone deacetylase 3 by MiR-494 alleviates neuronal loss and improves neurological recovery in experimental stroke

J Cereb Blood Flow Metab. 2019 Dec;39(12):2392-2405. doi: 10.1177/0271678X19875201. Epub 2019 Sep 11.

Abstract

HDAC3 is an essential negative regulator of neuronal plasticity and memory formation. Although a chemical inhibitor has been invented, little is known about its endogenous modulators. We explored whether miR-494 affects HDAC3-mediated neuronal injury following acute ischemic stroke. A substantial increase in plasma miR-494 was detected in AIS patients and was positively associated with the mRS at one year after symptom onset. The miR-494 levels were transiently increased in the infarcted brain tissue of mice. In contrast, miR-494 levels were reduced in neurons but increased in the medium after OGD. Intracerebroventricular injection of miR-494 agomir reduced neuronal apoptosis and infarct volume at the acute stage of MCAO, promoted axonal plasticity and long-term outcomes at the recovery stage, suppressed neuronal ataxin-3 and HDAC3 expression and increased acetyl-H3K9 levels in the ipsilateral hemisphere. In vitro studies confirmed that miR-494 posttranslationally inhibited HDAC3 in neurons and prevented OGD-induced neuronal axonal injury. The HDAC3 inhibitor increased acetyl-H3K9 levels and reversed miR-494 antagomir-aggravated acute cerebral ischemic injury, as well as brain atrophy and long-term functional recovery. These results suggest that miR-494 may serve as a predictive biomarker of functional outcomes in AIS patients and a potential therapeutic target for the treatment of ischemic stroke.

Keywords: HDAC3; Ischemic stroke; miR-494; neuron.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Ataxin-3 / metabolism
  • Brain Ischemia / metabolism*
  • Brain Ischemia / pathology
  • Brain Ischemia / physiopathology
  • Disease Models, Animal
  • Female
  • Gene Expression Regulation, Enzymologic*
  • Histone Deacetylase Inhibitors / pharmacology
  • Histone Deacetylases / biosynthesis*
  • Humans
  • Male
  • Mice
  • MicroRNAs / metabolism*
  • Neuronal Plasticity*
  • Neurons / metabolism*
  • Neurons / pathology
  • Stroke / metabolism*
  • Stroke / pathology
  • Stroke / physiopathology

Substances

  • Histone Deacetylase Inhibitors
  • MicroRNAs
  • Mirn494 microRNA, mouse
  • Ataxin-3
  • Atxn3 protein, mouse
  • Histone Deacetylases
  • histone deacetylase 3