长非编码 RNA LncCplx2 调节葡萄糖稳态和胰腺 β 细胞功能。

Long non-coding RNA LncCplx2 regulates glucose homeostasis and pancreatic β cell function.

机构信息

Guangzhou National Laboratory, Guangzhou, China; National Laboratory of Biomacromolecules, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.

Guangzhou National Laboratory, Guangzhou, China.

出版信息

Mol Metab. 2024 Feb;80:101878. doi: 10.1016/j.molmet.2024.101878. Epub 2024 Jan 11.

Abstract

OBJECTIVE

Numerous studies have highlighted the role of clock genes in diabetes disease and pancreatic β cell functions. However, whether rhythmic long non-coding RNAs involve in this process is unknown.

METHODS

RNA-seq and 3' rapid amplification of cDNA ends (RACE)-PCR were used to identify the rat LncCplx2 in pancreatic β cells. The subcellular analysis with qRT-PCR and RNA-Scope were used to assess the localization of LncCplx2. The effects of LncCplx2 overexpression or knockout (KO) on the regulation of pancreatic β cell functions were assessed in vitro and in vivo. RNA-seq, immunoblotting (IB), Immunoprecipitation (IP), RNA pull-down, and chromatin immunoprecipitation (ChIP)-PCR assays were employed to explore the regulatory mechanisms through LncRNA-protein interaction. Metabolism cage was used to measure the circadian behaviors.

RESULTS

We first demonstrate that LncCplx2 is a conserved nuclear long non-coding RNA and enriched in pancreatic islets, which is driven by core clock transcription factor BMAL1. LncCplx2 is downregulated in the diabetic islets and repressed by high glucose, which regulates the insulin secretion in vitro and ex vivo. Furthermore, LncCplx2 KO mice exhibit diabetic phenotypes, such as high blood glucose and impaired glucose tolerance. Notably, LncCplx2 deficiency has significant effects on circadian behavior, including prolonged period duration, decreased locomotor activity, and reduced metabolic rates. Mechanistically, LncCplx2 recruits EZH2, a core subunit of polycomb repression complex 2 (PRC2), to the promoter of target genes, thereby silencing circadian gene expression, which leads to phase shifts and amplitude changes in insulin secretion and cell cycle genes.

CONCLUSIONS

Our results propose LncCplx2 as an unanticipated transcriptional regulator in a circadian system and suggest a more integral mechanism for the coordination of circadian rhythms and glucose homeostasis.

摘要

目的

许多研究强调了时钟基因在糖尿病疾病和胰腺β细胞功能中的作用。然而,节律性长非编码 RNA 是否参与这一过程尚不清楚。

方法

使用 RNA-seq 和 3'快速扩增 cDNA 末端(RACE)-PCR 鉴定胰腺β细胞中的大鼠 LncCplx2。使用 qRT-PCR 和 RNA-Scope 进行亚细胞分析,以评估 LncCplx2 的定位。体外和体内评估 LncCplx2 过表达或敲除(KO)对胰腺β细胞功能调节的影响。使用 RNA-seq、免疫印迹(IB)、免疫沉淀(IP)、RNA 下拉和染色质免疫沉淀(ChIP)-PCR 测定来探索通过 LncRNA-蛋白相互作用的调节机制。代谢笼用于测量昼夜节律行为。

结果

我们首先证明 LncCplx2 是一种保守的核长非编码 RNA,在胰岛中丰富,由核心时钟转录因子 BMAL1 驱动。糖尿病胰岛中 LncCplx2 下调,高糖抑制,体外和体内调节胰岛素分泌。此外,LncCplx2 KO 小鼠表现出糖尿病表型,如高血糖和糖耐量受损。值得注意的是,LncCplx2 缺乏对昼夜节律行为有显著影响,包括周期延长、运动活性降低和代谢率降低。机制上,LncCplx2 将 EZH2(多梳抑制复合物 2(PRC2)的核心亚基)募集到靶基因的启动子,从而沉默昼夜节律基因表达,导致胰岛素分泌和细胞周期基因的相位偏移和振幅变化。

结论

我们的研究结果提出 LncCplx2 作为昼夜节律系统中未预料到的转录调节剂,并为昼夜节律和葡萄糖稳态的协调提供了更完整的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b1e/10832480/c5a7daaacdbe/gr1.jpg

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