脯氨酸通过斑旁依赖性mRNA保留加剧肝脏糖异生

IF 18.9 1区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Yurong Zhao, Xinxin Chai, Junxuan Peng, Yi Zhu, Rong Dong, Junwei He, Linghao Xia, Sishuo Liu, Jingzhou Chen, Zhengping Xu, Chi Luo, Jinghao Sheng
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引用次数: 0

摘要

2型糖尿病(T2D)是一种以血糖水平异常为特征的全球性健康问题,通常与肝脏糖异生过度相关。在T2D患者中,循环非必需氨基酸(NEAAs)持续增加;然而,每种氨基酸对T2D发病机制的具体贡献仍然知之甚少。在这里,我们报道了NEAA脯氨酸通过调节旁斑(一种由长链非编码RNA Neat1支撑的核结构)在协调肝脏葡萄糖代谢中的意想不到的作用。从机制上讲,脯氨酸减少了肝细胞中的副斑,将保留的mRNA释放到细胞质中进行翻译,包括Ppargc1a和Foxo1 mRNA,从而促进糖异生和高血糖。我们进一步证明,脯氨酸-斑旁- mrna保留轴存在于糖尿病肝脏样本中,通过斑旁恢复干预该轴可显著减轻雌性和雄性糖尿病小鼠模型中的高血糖。总的来说,我们的研究结果不仅描述了一种以前未被认识到的由脯氨酸引发的、依赖于旁斑蛋白的mrna保留机制调节糖异生,而且还强调了脯氨酸和旁斑蛋白是控制高血糖的潜在靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Proline exacerbates hepatic gluconeogenesis via paraspeckle-dependent mRNA retention

Proline exacerbates hepatic gluconeogenesis via paraspeckle-dependent mRNA retention

Type 2 diabetes (T2D) is a global health issue characterized by abnormal blood glucose levels and is often associated with excessive hepatic gluconeogenesis. Increased circulating non-essential amino acids (NEAAs) are consistently observed in individuals with T2D; however, the specific contribution of each amino acid to T2D pathogenesis remains less understood. Here, we report an unexpected role of the NEAA proline in coordinating hepatic glucose metabolism by modulating paraspeckle, a nuclear structure scaffolded by the long non-coding RNA Neat1. Mechanistically, proline diminished paraspeckles in hepatocytes, liberating the retained mRNA species into cytoplasm for translation, including the mRNAs of Ppargc1a and Foxo1, contributing to enhanced gluconeogenesis and hyperglycaemia. We further demonstrated that the proline–paraspeckle–mRNA retention axis existed in diabetic liver samples, and intervening in this axis via paraspeckle restoration substantially alleviated hyperglycaemia in both female and male diabetic mouse models. Collectively, our results not only delineated a previously unappreciated proline-instigated, paraspeckle-dependent mRNA-retention mechanism regulating gluconeogenesis, but also spotlighted proline and paraspeckle as potential targets for managing hyperglycaemia.

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来源期刊
Nature metabolism
Nature metabolism ENDOCRINOLOGY & METABOLISM-
CiteScore
27.50
自引率
2.40%
发文量
170
期刊介绍: Nature Metabolism is a peer-reviewed scientific journal that covers a broad range of topics in metabolism research. It aims to advance the understanding of metabolic and homeostatic processes at a cellular and physiological level. The journal publishes research from various fields, including fundamental cell biology, basic biomedical and translational research, and integrative physiology. It focuses on how cellular metabolism affects cellular function, the physiology and homeostasis of organs and tissues, and the regulation of organismal energy homeostasis. It also investigates the molecular pathophysiology of metabolic diseases such as diabetes and obesity, as well as their treatment. Nature Metabolism follows the standards of other Nature-branded journals, with a dedicated team of professional editors, rigorous peer-review process, high standards of copy-editing and production, swift publication, and editorial independence. The journal has a high impact factor, has a certain influence in the international area, and is deeply concerned and cited by the majority of scholars.
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