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Published on: August 10, 2017
[Expression changes of RNA m6A regulators in mouse cerebellum affected by hypobaric hypoxia stimulation]
1Department of Pathology, Institute of Basic Medical Science Chinese Academy of Medical Science, School of Basic Medicine Peking Union Medical College, Beijing 100005, China.
Abstract:
Objective: To investigate the role of RNA m6A methylation in mediating cerebellar dysplasia through analyzing the phenotypes of the mouse cerebella and the expression of several key m6A regulators upon hypobaric hypoxia treatment. Methods: Five-day old C57/BL6 mice were exposed to hypobaric hypoxia for 9 days. The status of mouse cerebellar development was analyzed by comparing the body weights, brain weights and histological features. Immunostaining of cell-type-specific markers was performed to analyze the cerebellar morphology. Real-time PCR, Western blot and immunohistochemical staining were performed to detect the expression of key m6A regulators in the mouse cerebella. Results: Compared with the control, the body weights, brain weights and cerebellar volumes of hypobaric hypoxic mice were significantly reduced (P<0.01). The expression of specific markers in different cells, including NeuN (mature neuron), Calbindin-D28K (Purkinje cell) and GFAP (astrocyte), was decreased in hypobaric hypoxic mouse cerebella (P<0.01), accompanied with disorganized cellular structure. The expression of methyltransferase METTL3 was significantly down-regulated in the cerebella of hypobaric hypoxic mice (P<0.05). Conclusions: Hypobaric hypoxia stimulation causes mouse cerebellar dysplasia, with structural abnormalities in mature granular neurons, Purkinje cells and astrocytes. Expression of METTL3 is decreased in hypobaric hypoxic mice cerebellum compared with that of normobaric normoxic mice, suggesting that its mediated RNA m6A methylation may play an important role in hypobaric hypoxia-induced mouse cerebellar dysplasia.
Insights
Hypobaric hypoxia causes cerebellar dysplasia in mice, affecting neurons and astrocytes. Reduced METTL3 expression suggests RNA m6A methylation’s role in this condition.
Area of Science:
- Neuroscience
- Molecular Biology
- Developmental Biology
Context:
- Cerebellar development is crucial for motor control.
- Hypobaric hypoxia is a condition that can affect development.
- RNA m6A methylation is an important epigenetic modification.
Purpose:
- To investigate the role of RNA m6A methylation in hypobaric hypoxia-induced cerebellar dysplasia.
- To analyze the effects of hypobaric hypoxia on mouse cerebellar development and m6A regulators.
Summary:
- Hypobaric hypoxia significantly reduced body weight, brain weight, and cerebellar volume in mice.
- Cerebellar dysplasia was observed, with disorganized cellular structures and decreased expression of neuronal and glial markers.
- The expression of the m6A methyltransferase METTL3 was significantly downregulated in hypobaric hypoxic mouse cerebella.
Impact:
- This study reveals that hypobaric hypoxia induces cerebellar dysplasia.
- Decreased METTL3 expression indicates a potential role for RNA m6A methylation in this process.
- Findings suggest METTL3 as a potential therapeutic target for hypoxia-related cerebellar disorders.

