4.7 Article

Andrographolide inhibits murine embryonic neuronal development through PFKFB3-mediated glycolytic pathway

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EUROPEAN JOURNAL OF PHARMACOLOGY
卷 940, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.ejphar.2022.175474

关键词

Andrographolide; Glycolysis; PFKFB3; NeuN; TBR1; Embryonic neuronal development

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This study aimed to investigate whether and how andrographolide (ANP) regulates embryonic neuronal development. The results showed that ANP inhibits the maturation of embryonic neurons by suppressing proliferation and migration, and interfering with the interaction between PFKFB3, NeuN, and TBR1. This suggests that ANP suppresses the expression of PFKFB3 and interrupts the interaction between TRB1 and NeuN, thereby inhibiting murine embryonic neuronal development.
Dysregulation of neuronal development may cause neurodevelopmental disorders. However, how to regulate embryonic neuronal development and whether this regulation can be medical interrupted are largely unknown. This study aimed to investigate whether and how andrographolide (ANP) regulates embryonic neuronal devel-opment. The pregnant mice at embryonic day 10.5 (E10.5) were administrated with ANP, and the embryonic brains were harvested at E17.5 or E18.5. Immunofluorescence (IF), Immunohistochemistry (IHC) performed to determine whether ANP is critical in regulating neuronal development. Real-time quantitative PCR, western blotting, cell counting kit-8 assay, Flow Cytometry assay, Boyden Chamber Migration assay carried out to evaluate whether ANP regulates neuronal proliferation and migration. Protein-protein interaction, CO-immunoprecipitation and IF staining carried out to evaluate whether ANP regulates the interaction between PFKFB3, NeuN and TBR1. Knockdown or overexpression of PFKFB3 by adenovirus infection were used to determine whether ANP inhibits neuronal development through PFKFB3 mediated glycolytic pathway. Our data indicated that ANP inhibited the maturation of embryonic neurons characterized by suppressing neuronal pro-liferation and migration. ANP regulated the interaction between PFKFB3, NeuN, and TBR1. Knockdown of PFKFB3 aggravated ANP mediated inhibition of neuronal proliferation and migration, while overexpression of PFKFB3 attenuated ANP mediated neuronal developmental suppression. In summary, ANP suppressed the expression of PFKFB3, and interrupted the interaction between TRB1 and NeuN, resulting in suppressing neuronal proliferation, migration and maturation and eventually inhibiting murine embryonic neuronal development.

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