Suppr超能文献

心脏中的生物钟基因:特征及其在肥大过程中的减弱

Clock genes in the heart: characterization and attenuation with hypertrophy.

作者信息

Young M E, Razeghi P, Taegtmeyer H

机构信息

Department of Internal Medicine, Division of Cardiology, University of Texas-Houston Medical School, Houston, TX 77030, USA.

出版信息

Circ Res. 2001 Jun 8;88(11):1142-50. doi: 10.1161/hh1101.091190.

Abstract

We investigated whether the heart, like other mammalian organs, possesses internal clocks, and, if so, whether pressure overload-induced hypertrophy alters the clock mechanism. Clock genes are intrinsically maintained, as shown by rhythmic changes even in single cells. Clocks are believed to confer a selective advantage by priming the cell for the expected environmental stimulus. In this way, clocks allow anticipation, thereby synchronizing responsiveness of the cell with the timing of the stimulus. We have found that in rat heart all mammalian homologues of known Drosophila clock genes (bmal1, clock, cry1, cry2, per1, per2, per3, dbp, hlf, and tef) show circadian patterns of expression and that the induction of clock output genes (the PAR [rich in proline and acidic amino acid residues] transcription factors dbp, hlf, and tef) is attenuated in the pressure-overloaded hypertrophied heart. The results expose a new dynamic regulatory system in the heart, which is partially lost with hypertrophy. Although the target genes of these PAR transcription factors are not known in the heart, the results provide evidence for a diminished ability of the hypertrophied heart to anticipate and subsequently adapt to physiological alterations during the day.

摘要

我们研究了心脏是否像其他哺乳动物器官一样拥有内部时钟,如果是,压力超负荷诱导的肥大是否会改变时钟机制。时钟基因是内在维持的,即使在单细胞中也有节律性变化表明了这一点。时钟被认为通过使细胞为预期的环境刺激做好准备而赋予一种选择优势。通过这种方式,时钟允许预期,从而使细胞的反应性与刺激的时间同步。我们发现,在大鼠心脏中,已知果蝇时钟基因(bmal1、clock、cry1、cry2、per1、per2、per3、dbp、hlf和tef)的所有哺乳动物同源物都显示出昼夜节律表达模式,并且在压力超负荷肥大的心脏中,时钟输出基因(富含脯氨酸和酸性氨基酸残基的PAR转录因子dbp、hlf和tef)的诱导减弱。这些结果揭示了心脏中的一种新的动态调节系统,该系统在肥大过程中部分丧失。尽管这些PAR转录因子在心脏中的靶基因尚不清楚,但这些结果为肥大心脏预测并随后适应白天生理变化的能力减弱提供了证据。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验