Ataxin-2 in the hypothalamus at the crossroads between metabolism and clock genes.

IF 3.6 4区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Sara Carmo-Silva, Marisa Ferreira-Marques, Clévio Nóbrega, Mariana Botelho, Daniela Costa, Célia A Aveleira, Stefan M Pulst, Luís Pereira de Almeida, Claudia Cavadas
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引用次数: 1

Abstract

ATXN2 gene, encoding for ataxin-2, is located in a trait locus for obesity. Atxn2 knockout (KO) mice are obese and insulin resistant; however, the cause for this phenotype is still unknown. Moreover, several findings suggest ataxin-2 as a metabolic regulator, but the role of this protein in the hypothalamus was never studied before. The aim of this work was to understand if ataxin-2 modulation in the hypothalamus could play a role in metabolic regulation. Ataxin-2 was overexpressed/re-established in the hypothalamus of C57Bl6/Atxn2 KO mice fed either a chow or a high-fat diet (HFD). This delivery was achieved through stereotaxic injection of lentiviral vectors encoding for ataxin-2. We show, for the first time, that HFD decreases ataxin-2 levels in mouse hypothalamus and liver. Specific hypothalamic ataxin-2 overexpression prevents HFD-induced obesity and insulin resistance. Ataxin-2 re-establishment in Atxn2 KO mice improved metabolic dysfunction without changing body weight. Furthermore, we observed altered clock gene expression in Atxn2 KO that might be causative of metabolic dysfunction. Interestingly, ataxin-2 hypothalamic re-establishment rescued these circadian alterations. Thus, ataxin-2 in the hypothalamus is a determinant for weight, insulin sensitivity and clock gene expression. Ataxin-2's potential role in the circadian clock, through the regulation of clock genes, might be a relevant mechanism to regulate metabolism. Overall, this work shows hypothalamic ataxin-2 as a new player in metabolism regulation, which might contribute to the development of new strategies for metabolic disorders.

下丘脑中的Ataxin-2在代谢和时钟基因的十字路口。
ATXN2基因编码ataxin-2,位于肥胖性状位点。Atxn2敲除(KO)小鼠肥胖和胰岛素抵抗;然而,这种表型的原因仍然未知。此外,一些研究结果表明,ataxin-2是一种代谢调节剂,但这种蛋白质在下丘脑中的作用从未被研究过。这项工作的目的是了解下丘脑中的ataxin-2调节是否可以在代谢调节中发挥作用。Ataxin-2在C57Bl6/Atxn2 KO小鼠的下丘脑过度表达/重建,无论是喂食食物还是高脂肪饮食(HFD)。这种递送是通过立体定向注射编码ataxin-2的慢病毒载体实现的。我们首次发现,HFD降低了小鼠下丘脑和肝脏中的ataxin-2水平。下丘脑特异性ataxin-2过表达可预防hfd诱导的肥胖和胰岛素抵抗。Atxn2 KO小鼠的Ataxin-2重建改善了代谢功能障碍,而体重没有改变。此外,我们观察到Atxn2 KO中时钟基因表达的改变可能是导致代谢功能障碍的原因。有趣的是,ataxin-2下丘脑的重建挽救了这些昼夜节律的改变。因此,下丘脑中的ataxin-2是体重、胰岛素敏感性和生物钟基因表达的决定因素。Ataxin-2在生物钟中的潜在作用,通过调节生物钟基因,可能是调节新陈代谢的相关机制。总之,这项工作表明下丘脑ataxin-2在代谢调节中是一个新的参与者,这可能有助于开发新的代谢紊乱策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of molecular endocrinology
Journal of molecular endocrinology 医学-内分泌学与代谢
CiteScore
6.90
自引率
0.00%
发文量
96
审稿时长
1 months
期刊介绍: The Journal of Molecular Endocrinology is an official journal of the Society for Endocrinology and is endorsed by the European Society of Endocrinology and the Endocrine Society of Australia. Journal of Molecular Endocrinology is a leading global journal that publishes original research articles and reviews. The journal focuses on molecular and cellular mechanisms in endocrinology, including: gene regulation, cell biology, signalling, mutations, transgenics, hormone-dependant cancers, nuclear receptors, and omics. Basic and pathophysiological studies at the molecule and cell level are considered, as well as human sample studies where this is the experimental model of choice. Technique studies including CRISPR or gene editing are also encouraged.
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