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Reprogramming of m<sup>6</sup>A epitranscriptome is crucial for shaping of transcriptome and proteome in response to hypoxia

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Taylor & Francis Group2024-02-15 更新2026-04-16 收录
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Hypoxia causes a series of responses supporting cells to survive in harsh environments. Substantial post-transcriptional and translational regulation during hypoxia has been observed. However, detailed regulatory mechanism in response to hypoxia is still far from complete. RNA m<sup>6</sup>A modification has been proven to govern the life cycle of RNAs. Here, we reported that total m<sup>6</sup>A level of mRNAs was decreased during hypoxia, which might be mediated by the induction of m<sup>6</sup>A eraser, ALKBH5. Meanwhile, expression levels of most YTH family members of m<sup>6</sup>A readers were systematically down-regulated. Transcriptome-wide analysis of m<sup>6</sup>A revealed a drastic reprogramming of m<sup>6</sup>A epitranscriptome during cellular hypoxia. Integration of m<sup>6</sup>A epitranscriptome with either RNA-seq based transcriptome analysis or <i>mass spectrometry</i> (LC-MS/MS) based proteome analysis of cells upon hypoxic stress revealed that reprogramming of m<sup>6</sup>A epitranscriptome reshaped the transcriptome and proteome, thereby supporting efficient generation of energy for adaption to hypoxia. Moreover, ATP production was blocked when silencing an m<sup>6</sup>A eraser, ALKBH5, under hypoxic condition, demonstrating that m<sup>6</sup>A pathway is an important regulator during hypoxic response. Collectively, our studies indicate that crosstalk between m<sup>6</sup>A and HIF1 pathway is essential for cellular response to hypoxia, providing insights into the underlying molecular mechanisms during hypoxia.

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2021-09-29
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