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Published on: November 17, 2018
Long noncoding RNA MALAT1 regulates generation of reactive oxygen species and the insulin responses in male mice
Jingshu Chen1, Sui Ke2, Lei Zhong3
1State Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, China.
Abstract:
The metastasis-associated lung adenocarcinoma transcript 1 (MALAT1) is a long noncoding RNA and its overexpression is associated with the development of many types of malignancy. MALAT1 null mice show no overt phenotype. However, in transcriptome analysis of MALAT1 null mice we found significant upregulation of nuclear factor-erythroid 2 p45-related factor 2 (Nrf2) regulated antioxidant genes including Nqo1 and Cat with significant reduction in reactive oxygen species (ROS) and greatly reduced ROS-generated protein carbonylation in hepatocyte and islets. We performed lncRNA pulldown assay using biotinylated antisense oligonucleotides against MALAT1 and found MALAT1 interacted with Nrf2, suggesting Nrf2 is transcriptionally regulated by MALAT1. Exposure to excessive ROS has been shown to cause insulin resistance through activation of c-Jun N-terminal kinase (JNK) which leads to inhibition of insulin receptor substrate 1 (IRS-1) and insulin-induced phosphorylation of serine/threonine kinase Akt. We found MALAT1 ablation suppressed JNK activity with concomitant insulin-induced activation of IRS-1 and phosphorylation of Akt suggesting MALAT1 regulated insulin responses. MALAT1 null mice exhibited sensitized insulin-signaling response to fast-refeeding and glucose/insulin challenges and significantly increased insulin secretion in response to glucose challenge in isolated MALAT1 null islets, suggesting an increased insulin sensitivity. In summary, we demonstrate that MALAT1 plays an important role in regulating insulin sensitivity and has the potential as a therapeutic target for the treatment of diabetes as well as other diseases caused by excessive exposure to ROS.
Insights
The long noncoding RNA MALAT1 regulates insulin sensitivity by interacting with Nrf2 and reducing oxidative stress. Its absence improves insulin signaling and secretion, suggesting MALAT1 as a therapeutic target for diabetes.
Area of Science:
- Molecular Biology
- Genetics
- Endocrinology
Background:
- Metastasis-associated lung adenocarcinoma transcript 1 (MALAT1) is a long noncoding RNA linked to various cancers.
- Overexpression of MALAT1 is implicated in malignancy development.
- MALAT1 null mice exhibit no obvious phenotype, prompting further investigation into its molecular functions.
Purpose of the Study:
- To investigate the role of MALAT1 in regulating oxidative stress and insulin sensitivity.
- To identify molecular mechanisms underlying MALAT1's function.
- To explore MALAT1 as a potential therapeutic target for metabolic diseases.
Main Methods:
- Transcriptome analysis of MALAT1 null mice.
- lncRNA pulldown assay to identify MALAT1 interacting proteins.
- Assessment of reactive oxygen species (ROS) levels and protein carbonylation.
- Evaluation of insulin signaling pathways (JNK, IRS-1, Akt).
- Insulin tolerance tests and glucose/insulin challenge studies in vivo and in isolated islets.
Main Results:
- MALAT1 null mice showed upregulated antioxidant genes (Nqo1, Cat) and reduced ROS levels.
- MALAT1 was found to interact with Nrf2, suggesting transcriptional regulation.
- MALAT1 ablation suppressed JNK activity and enhanced insulin-induced IRS-1 and Akt phosphorylation.
- MALAT1 null mice exhibited improved insulin sensitivity and increased insulin secretion.
Conclusions:
- MALAT1 plays a significant role in regulating cellular oxidative stress and insulin sensitivity.
- The interaction between MALAT1 and Nrf2 is crucial for antioxidant gene expression.
- MALAT1 ablation confers protection against insulin resistance.
- MALAT1 represents a promising therapeutic target for diabetes and ROS-related diseases.
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