volume 60 issue 2

Amorfrutin B Protects Mouse Brain Neurons from Hypoxia/Ischemia by Inhibiting Apoptosis and Autophagy Processes Through Gene Methylation- and miRNA-Dependent Regulation

Publication typeJournal Article
Publication date2022-11-03
scimago Q1
wos Q1
SJR1.397
CiteScore8.4
Impact factor4.3
ISSN08937648, 15591182
Neurology
Cellular and Molecular Neuroscience
Neuroscience (miscellaneous)
Abstract
Amorfrutin B is a selective modulator of the PPARγ receptor, which has recently been identified as an effective neuroprotective compound that protects brain neurons from hypoxic and ischemic damage. Our study demonstrated for the first time that a 6-h delayed post-treatment with amorfrutin B prevented hypoxia/ischemia-induced neuronal apoptosis in terms of the loss of mitochondrial membrane potential, heterochromatin foci formation, and expression of specific genes and proteins. The expression of all studied apoptosis-related factors was decreased in response to amorfrutin B, both during hypoxia and ischemia, except for the expression of anti-apoptotic BCL2, which was increased. After post-treatment with amorfrutin B, the methylation rate of the pro-apoptotic Bax gene was inversely correlated with the protein level, which explained the decrease in the BAX/BCL2 ratio as a result of Bax hypermethylation. The mechanisms of the protective action of amorfrutin B also involved the inhibition of autophagy, as evidenced by diminished autophagolysosome formation and the loss of neuroprotective properties of amorfrutin B after the silencing of Becn1 and/or Atg7. Although post-treatment with amorfrutin B reduced the expression levels of Becn1, Nup62, and Ambra1 during hypoxia, it stimulated Atg5 and the protein levels of MAP1LC3B and AMBRA1 during ischemia, supporting the ambiguous role of autophagy in the development of brain pathologies. Furthermore, amorfrutin B affected the expression levels of apoptosis-focused and autophagy-related miRNAs, and many of these miRNAs were oppositely regulated by amorfrutin B and hypoxia/ischemia. The results strongly support the position of amorfrutin B among the most promising anti-stroke and wide-window therapeutics.
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Przepiórska K. et al. Amorfrutin B Protects Mouse Brain Neurons from Hypoxia/Ischemia by Inhibiting Apoptosis and Autophagy Processes Through Gene Methylation- and miRNA-Dependent Regulation // Molecular Neurobiology. 2022. Vol. 60. No. 2.
GOST all authors (up to 50) Copy
Przepiórska K., Wnuk A., Beyer C., Kajta M. Amorfrutin B Protects Mouse Brain Neurons from Hypoxia/Ischemia by Inhibiting Apoptosis and Autophagy Processes Through Gene Methylation- and miRNA-Dependent Regulation // Molecular Neurobiology. 2022. Vol. 60. No. 2.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1007/s12035-022-03087-9
UR - https://doi.org/10.1007/s12035-022-03087-9
TI - Amorfrutin B Protects Mouse Brain Neurons from Hypoxia/Ischemia by Inhibiting Apoptosis and Autophagy Processes Through Gene Methylation- and miRNA-Dependent Regulation
T2 - Molecular Neurobiology
AU - Przepiórska, Karolina
AU - Wnuk, Agnieszka
AU - Beyer, Cordian
AU - Kajta, Małgorzata
PY - 2022
DA - 2022/11/03
PB - Springer Nature
IS - 2
VL - 60
PMID - 36324052
SN - 0893-7648
SN - 1559-1182
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2022_Przepiórska,
author = {Karolina Przepiórska and Agnieszka Wnuk and Cordian Beyer and Małgorzata Kajta},
title = {Amorfrutin B Protects Mouse Brain Neurons from Hypoxia/Ischemia by Inhibiting Apoptosis and Autophagy Processes Through Gene Methylation- and miRNA-Dependent Regulation},
journal = {Molecular Neurobiology},
year = {2022},
volume = {60},
publisher = {Springer Nature},
month = {nov},
url = {https://doi.org/10.1007/s12035-022-03087-9},
number = {2},
doi = {10.1007/s12035-022-03087-9}
}