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NF90-NF45 通过抑制 p53 信号通路对肥胖诱导的代谢应激下的β细胞补偿至关重要。

NF90-NF45 is essential for β cell compensation under obesity-inducing metabolic stress through suppression of p53 signaling pathway.

机构信息

Laboratory of Molecular Biology, Science Research Center, Kochi Medical School, Kochi University, Oko-cho, Kohasu, Nankoku, Kochi, 783-8505, Japan.

Division of Laboratory Animal Science, Science Research Center, Kochi Medical School, Kochi, Japan.

出版信息

Sci Rep. 2022 May 25;12(1):8837. doi: 10.1038/s41598-022-12600-y.

Abstract

The Nuclear Factor 90 (NF90)-NF45 complex has been known to regulate the progression of transcription, mRNA stability, translational inhibition, RNA export and microRNA biogenesis. However, the physiological functions of the NF90-NF45 complex remain unclear. We newly discovered that the NF90-NF45 complex was expressed in primary β cells and established cell lines. Therefore, in this study, we focused on the function of the endogenous NF90-NF45 complex in the β cells. To investigate this issue, we generated β-cell-specific NF90-NF45 deficient mice. These mice exhibited hyperglycaemia and lower plasma insulin levels under a high fat diet together with decreased islet mass. To uncover this mechanism, we performed a whole-genome expression microarray of the total RNA prepared from β cell lines treated with siRNAs targeting both NF90 and NF45. In this result, we found an activation of p53 signaling in the NF90-NF45-knockdown cells. This activation was supported by elevation of luciferase activity derived from a reporter plasmid harboring p53 binding sites in the NF90-NF45-knockdown cells. Furthermore, the knockdown of NF90-NF45 resulted in a significant retardation of the β cell line growth rates. Importantly, a dominant negative form of p53 rescues the growth retardation in BTC6 cells depleted of NF90-NF45, suggesting that NF90-NF45 would be positively involved in β cell proliferation through suppression of p53 signal pathway. Taken together, NF90-NF45 is essential for β cell compensation under obesity-inducing metabolic stress via repression of p53 signaling.

摘要

核因子 90(NF90)-NF45 复合物已被证实可调节转录、mRNA 稳定性、翻译抑制、RNA 输出和 microRNA 生物发生的进展。然而,NF90-NF45 复合物的生理功能仍不清楚。我们新发现 NF90-NF45 复合物在原代β细胞和建立的细胞系中表达。因此,在这项研究中,我们专注于内源性 NF90-NF45 复合物在β细胞中的功能。为了研究这个问题,我们生成了β细胞特异性 NF90-NF45 缺失小鼠。这些小鼠在高脂肪饮食下表现出高血糖和低血浆胰岛素水平,并伴有胰岛质量下降。为了揭示这一机制,我们对用靶向 NF90 和 NF45 的 siRNA 处理的β细胞系的总 RNA 进行了全基因组表达微阵列分析。在这个结果中,我们发现 NF90-NF45 敲低细胞中 p53 信号通路被激活。NF90-NF45 敲低细胞中 luciferase 活性来源于含有 p53 结合位点的报告质粒,这一激活得到了支持。此外,NF90-NF45 的敲低导致β细胞系生长速率显著减慢。重要的是,在 BTC6 细胞中,NF90-NF45 的显性负形式挽救了 NF90-NF45 缺失导致的生长迟缓,这表明 NF90-NF45 通过抑制 p53 信号通路正向参与β细胞增殖。总之,NF90-NF45 对于肥胖诱导的代谢应激下的β细胞代偿是必不可少的,这是通过抑制 p53 信号通路实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25d5/9132887/223a979cb998/41598_2022_12600_Fig1_HTML.jpg

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