EPO activates PI3K-IKKα-CDK1 signaling pathway to promote the proliferation of Glial Cells under hypoxia environment



Título del documento: EPO activates PI3K-IKKα-CDK1 signaling pathway to promote the proliferation of Glial Cells under hypoxia environment
Revista: Genetics and molecular biology
Base de datos: PERIÓDICA
Número de sistema: 000459234
ISSN: 1415-4757
Autores: 1
2
3
Instituciones: 1Beijing University of Chinese Medicine, School of Traditional Chinese Medicine, Beijing. China
2Inner Mongolia University, School of Life Sciences, Hohhot, Inner Mongolia. China
3Inner Mongolia Medical University, School of Traditional Chinese Medicine, Hohhot, Inner Mongolia. China
Año:
Volumen: 45
Número: 1
País: Brasil
Idioma: Inglés
Tipo de documento: Artículo
Enfoque: Experimental, analítico
Resumen en inglés Erythropoietin (EPO), supports the function and survival of neurons through astrocytes and has a protective role in neonatal asphyxia brain injury; yet, its mechanism of action remains unclear. As a neuroprotective factor, EPO is also used in the treatment of various diseases, such as neurodegenerative diseases, Parkinson’s disease, traumatic brain injury, by decreasing inflammatory reaction, resisting apoptosis, and lowering oxidative stress. The aim of this study was to examine the effect and mechanism of EPO on promoting human brain glial cell proliferation under hypoxia in vitro. Under CoC12-induced hypoxia, after adding EPO, high-throughput sequencing was used to screen out meaningful up-regulated and significant differentially expressed genes PI3K, IKKα CDK1 related to proliferation, and make further verification by qPCR and western blotting. Under hypoxia, EPO promoted cell proliferation and the expression of PI3K while this effect was inhibited (along with a decrease of downstream genes IKKα and CDK1 decreased) after adding PI3K inhibitor to cell culture. EPO can promote cell proliferation and CDK1 expression, while after inhibiting CDK1 expression, the promotion of EPO on cell proliferation was eliminated. These data proved that EPO promotes the proliferation of U251 cells by activating the PI3K-IKKα-CDK1 signaling pathway under CoC12-induced hypoxia
Disciplinas: Medicina
Palabras clave: Neurología,
Eritropoyetina,
PI3K-IKKα-CDK1,
Células gliales,
Hipoxia,
Neuroprotección
Keyword: Neurology,
Erythropoietin,
Glial cells,
Hypoxia,
PI3K-IKKα-CDK1,
Neuroprotection
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