The interplay between noncoding RNAs and insulin in diabetes.

The interplay between noncoding RNAs and insulin in diabetes.
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糖尿病中非编码 RNA 和胰岛素之间的相互作用。

DOI:
10.1016/j.canlet.2018.01.038
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发表时间:
2018-04
期刊:
影响因子:
9.7
通讯作者:
Fu Xianghui
Fu Xianghui
中科院分区:
医学1区
文献类型:
--
作者:
Tian Yan;Xu Jia;Du Xiao;Fu Xianghui

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非编码RNA(Noncoding RNAs,ncRNA)包括microRNA、长链非编码RNA和环状RNA,它们调节多种生物学过程,参与人类疾病的发生和发展。胰岛素是胰腺β细胞分泌的主要激素,是通过多功能胰岛素信号传导调节全身代谢的重要因素。胰岛素的产生和作用受到严格控制。胰岛素产生和作用的失调可损害代谢稳态,并最终导致多种代谢疾病,特别是糖尿病的发展。越来越多的数据表明,ncRNA调节β细胞质量、胰岛素合成、分泌和信号传导,并且它们在糖尿病中的作用正在显著显现。这篇综述总结了我们目前对ncRNA作为胰岛素调节剂的认识,特别强调了这种相互作用在糖尿病发展中的意义。我们概述了ncRNA在胰腺β细胞质量和功能中的作用,这对胰岛素的产生和分泌至关重要。我们还强调了ncRNA参与外周组织(包括肝脏、肌肉和脂肪)的胰岛素信号传导,并讨论了糖尿病条件下ncRNA介导的器官间串扰。更深入地了解ncRNA和胰岛素之间的相互作用可能为治疗糖尿病以及其他人类疾病提供有价值的见解和新的治疗策略。
Noncoding RNAs (ncRNAs), including microRNAs, long noncoding RNAs and circular RNAs, regulate various biological processes and are involved in the initiation and progression of human diseases. Insulin, a predominant hormone secreted from pancreatic β cells, is an essential factor in regulation of systemic metabolism through multifunctional insulin signaling. Insulin production and action are tightly controlled. Dysregulations of insulin production and action can impair metabolic homeostasis, and eventually lead to the development of multiple metabolic diseases, especially diabetes. Accumulating data indicates that ncRNAs modulate β cell mass, insulin synthesis, secretion and signaling, and their role in diabetes is dramatically emerging. This review summarizes our current knowledge of ncRNAs as regulators of insulin, with particular emphasis on the implications of this interplay in the development of diabetes. We outline the role of ncRNAs in pancreatic β cell mass and function, which is critical for insulin production and secretion. We also highlight the involvement of ncRNAs in insulin signaling in peripheral tissues including liver, muscle and adipose, and discuss ncRNA-mediated inter-organ crosstalk under diabetic conditions. A more in-depth understanding of the interplay between ncRNAs and insulin may afford valuable insights and novel therapeutic strategies for treatment of diabetes, as well as other human diseases.
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