正常饮食和高脂肪饮食改变CK1ε零和tau突变小鼠的体重调节

Q3 Biochemistry, Genetics and Molecular Biology
Genetics Research International Pub Date : 2016-01-01 Epub Date: 2016-04-06 DOI:10.1155/2016/4973242
Lili Zhou, Keith C Summa, Christopher Olker, Martha H Vitaterna, Fred W Turek
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引用次数: 6

摘要

昼夜节律紊乱会导致代谢功能紊乱。酪蛋白激酶1ε (CK1ε)是一个典型的生物钟基因。CK1ε的Null和tau突变对昼夜节律有明显的影响。为了研究CK1ε在正常饮食(RC)和高脂肪饮食(HF)条件下的体重调节中的作用,我们在标准的24小时光暗(LD)周期中检测了CK1ε(-/-)和CK1ε (tau/tau)小鼠在RC和HF饮食条件下的体重。考虑到在24小时LD周期中CK1ε (tau/tau)小鼠的异常携带,在20小时LD周期中对另一组CK1ε (tau/tau)小鼠进行了两种饮食条件下的测试,这与它们的内源性周期长度更接近。在RC饮食中,CK1ε(-/-)和CK1ε (tau/tau)突变体在24小时LD周期和CK1ε (tau/tau)突变体在20小时LD周期小鼠表现出显著降低的体重,尽管总体食物摄入量和活动水平相似。在HF饮食中,CK1ε (tau/tau)小鼠在20小时LD周期中免受HF饮食诱导的过度体重增加的影响。这些结果提供了额外的证据,支持昼夜节律和遗传水平上的能量调节之间的联系,特别强调了CK1ε参与昼夜节律生物学和代谢生理学的整合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Altered Body Weight Regulation in CK1ε Null and tau Mutant Mice on Regular Chow and High Fat Diets.

Altered Body Weight Regulation in CK1ε Null and tau Mutant Mice on Regular Chow and High Fat Diets.

Altered Body Weight Regulation in CK1ε Null and tau Mutant Mice on Regular Chow and High Fat Diets.

Altered Body Weight Regulation in CK1ε Null and tau Mutant Mice on Regular Chow and High Fat Diets.

Disruption of circadian rhythms results in metabolic dysfunction. Casein kinase 1 epsilon (CK1ε) is a canonical circadian clock gene. Null and tau mutations in CK1ε show distinct effects on circadian period. To investigate the role of CK1ε in body weight regulation under both regular chow (RC) and high fat (HF) diet conditions, we examined body weight on both RC and HF diets in CK1ε (-/-) and CK1ε (tau/tau) mice on a standard 24 hr light-dark (LD) cycle. Given the abnormal entrainment of CK1ε (tau/tau) mice on a 24 hr LD cycle, a separate set of CK1ε (tau/tau) mice were tested under both diet conditions on a 20 hr LD cycle, which more closely matches their endogenous period length. On the RC diet, both CK1ε (-/-) and CK1ε (tau/tau) mutants on a 24 hr LD cycle and CK1ε (tau/tau) mice on a 20 hr LD cycle exhibited significantly lower body weights, despite similar overall food intake and activity levels. On the HF diet, CK1ε (tau/tau) mice on a 20 hr LD cycle were protected against the development of HF diet-induced excess weight gain. These results provide additional evidence supporting a link between circadian rhythms and energy regulation at the genetic level, particularly highlighting CK1ε involved in the integration of circadian biology and metabolic physiology.

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来源期刊
Genetics Research International
Genetics Research International Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
2.90
自引率
0.00%
发文量
0
期刊介绍: Genetics Research International is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of genetics and genomics. The journal focuses on articles bearing on heredity, biochemistry, and molecular biology, as well as clinical findings.
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