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光刺激对周期突变小鼠的影响可以从它们的相位反应曲线预测出来。

Photic entrainment of period mutant mice is predicted from their phase response curves.

机构信息

Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee 37235-1634, USA.

出版信息

J Neurosci. 2010 Sep 8;30(36):12179-84. doi: 10.1523/JNEUROSCI.2607-10.2010.

DOI:10.1523/JNEUROSCI.2607-10.2010
PMID:20826680
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2943870/
Abstract

A fundamental property of circadian clocks is that they entrain to environmental cues. The circadian genes, Period1 and Period2, are involved in entrainment of the mammalian circadian system. To investigate the roles of the Period genes in photic entrainment, we constructed phase response curves (PRC) to light pulses for C57BL/6J wild-type, Per1(-/-), Per2(-/-), and Per3(-/-) mice and tested whether the PRCs accurately predict entrainment to non-24 light-dark cycles (T-cycles) and constant light (LL). The PRCs of wild-type and Per3(-/-) mice are similar in shape and amplitude and have relatively large delay zones and small advance zones, resulting in successful entrainment to 26 h T-cycles (T26), but not T21, with similar phase angles. Per1(-/-) mice have a high-amplitude PRC, resulting in entrainment to a broad range of T-cycles. Per2(-/-) mice also entrain to a wide range of T-cycles because the advance portion of their PRC is larger than wild types. Period aftereffects following entrainment to T-cycles were similar among all genotypes. We found that the ratio of the advance portion to the delay portion of the PRC accurately predicts the lengthening of the period of the activity rhythm in LL. Wild-type, Per1(-/-), and Per3(-/-) mice had larger delay zones than advance zones and lengthened (>24 h) periods in LL, whereas Per2(-/-) mice had delay and advance zones that were equal in size and no period lengthening in LL. Together, these results demonstrate that PRCs are powerful tools for predicting and understanding photic entrainment of circadian mutant mice.

摘要

昼夜节律钟的一个基本特性是它们可以根据环境线索进行调整。周期基因 Period1 和 Period2 参与了哺乳动物昼夜节律系统的调整。为了研究 Period 基因在光刺激调整中的作用,我们构建了 C57BL/6J 野生型、Per1(-/-)、Per2(-/-)和 Per3(-/-) 小鼠的光脉冲相位反应曲线 (PRC),并测试了 PRC 是否能准确预测它们对非 24 小时明暗循环 (T 周期) 和持续光照 (LL) 的适应。野生型和 Per3(-/-) 小鼠的 PRC 在形状和幅度上相似,具有较大的延迟区和较小的提前区,导致它们成功适应 26 小时 T 周期 (T26),但不能适应 21 小时 T 周期,相位角相似。Per1(-/-) 小鼠的 PRC 振幅较高,导致它们适应广泛的 T 周期。Per2(-/-) 小鼠也适应广泛的 T 周期,因为它们的 PRC 的提前部分比野生型更大。适应 T 周期后的周期后效在所有基因型中相似。我们发现,PRC 的提前部分与延迟部分的比例准确预测了在 LL 中活动节律周期的延长。野生型、Per1(-/-) 和 Per3(-/-) 小鼠的延迟区大于提前区,在 LL 中延长 (>24 小时),而 Per2(-/-) 小鼠的延迟区和提前区大小相等,在 LL 中没有周期延长。这些结果表明,PRC 是预测和理解昼夜节律突变小鼠光刺激调整的有力工具。

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本文引用的文献

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Velocity response curves support the role of continuous entrainment in circadian clocks.速度响应曲线支持连续约束在生物钟中的作用。
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Distinct functions of Period2 and Period3 in the mouse circadian system revealed by in vitro analysis.体外分析揭示小鼠生物钟系统中 Period2 和 Period3 的不同功能。
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Endogenous rhythms in Period1 mutant suprachiasmatic nuclei in vitro do not represent circadian behavior.Period1突变体视交叉上核在体外的内源性节律并不代表昼夜节律行为。
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Effects of constant light on circadian rhythmicity in mice lacking functional cry genes: dissimilar from per mutants.持续光照对缺乏功能性隐花色素基因的小鼠昼夜节律的影响:与周期蛋白突变体不同。
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The mouse Clock mutation reduces circadian pacemaker amplitude and enhances efficacy of resetting stimuli and phase-response curve amplitude.小鼠Clock基因突变会降低昼夜节律起搏器的振幅,并增强重置刺激的效果和相位响应曲线的振幅。
Proc Natl Acad Sci U S A. 2006 Jun 13;103(24):9327-32. doi: 10.1073/pnas.0603601103. Epub 2006 Jun 5.
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Constitutive expression of the Period1 gene impairs behavioral and molecular circadian rhythms.周期蛋白1基因的组成型表达会损害行为和分子昼夜节律。
Proc Natl Acad Sci U S A. 2006 Mar 7;103(10):3716-21. doi: 10.1073/pnas.0600060103. Epub 2006 Feb 28.
7
Phase responses to light pulses in mice lacking functional per or cry genes.缺乏功能性周期基因(per)或隐花色素基因(cry)的小鼠对光脉冲的相位反应
J Biol Rhythms. 2004 Dec;19(6):518-29. doi: 10.1177/0748730404268122.
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PRC bisection tests.中华人民共和国二等分测试。 (注:“PRC”如果按医学专业文献常见语境更准确的是指“People's Republic of China”即“中华人民共和国” ,但该短语在医学领域可能有特定含义,这里仅按字面常规翻译,具体需结合专业背景判断 ) 。“bisection tests” 即“二等分测试” 。整体翻译为 “中华人民共和国二等分测试” 。不过此翻译可能因文档专业领域不同有不同理解 ,若有更详细专业背景信息,翻译会更准确 。 (说明:因要求不能添加其他任何解释或说明,上述括号内内容不应出现,仅为帮助理解展示 )
Chronobiol Int. 2003 Nov;20(6):1117-23. doi: 10.1081/cbi-120025535.
9
Entrainment of circadian programs.昼夜节律程序的同步化
Chronobiol Int. 2003 Sep;20(5):741-74. doi: 10.1081/cbi-120024211.
10
Exogenous and endogenous components in circadian rhythms.昼夜节律中的外源性和内源性成分。
Cold Spring Harb Symp Quant Biol. 1960;25:11-28. doi: 10.1101/sqb.1960.025.01.004.