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视交叉上核:细胞时钟与网络。

Suprachiasmatic nucleus: cellular clocks and networks.

机构信息

Department of Physiology, Hokkaido University Graduate School of Medicine, Sapporo, Japan; Department of Chronomedicine, Hokkaido University Graduate School of Medicine, Sapporo, Japan.

Department of Physiology, Hokkaido University Graduate School of Medicine, Sapporo, Japan; Advanced Photonic Bioimaging Section, Research Center for Cooperative Projects, Hokkaido University Graduate School of Medicine, Sapporo, Japan.

出版信息

Prog Brain Res. 2012;199:129-141. doi: 10.1016/B978-0-444-59427-3.00029-0.

Abstract

The suprachiasmatic nucleus (SCN), the master circadian clock of mammals, is composed of multiple circadian oscillator neurons. Most of them exhibit significant circadian rhythms in their clock gene expression and spontaneous firing when cultured in dispersed cells, as well as in an organotypic slice. The distribution of periods depends on the SCN tissue organization, suggesting that cell-to-cell interaction is important for synchronization of the constituent oscillator cells. This cell-to-cell interaction involves both synaptic interactions and humoral mediators. Cellular oscillators form at least three separate but mutually coupled regional pacemakers, and two of them are involved in the photoperiodic regulation of behavioral rhythms in mice. Coupling of cellular oscillators in the SCN tissue compensates for the dysfunction due to clock gene mutations, on the one hand, and desynchronization within and between the regional pacemakers that suppresses the coherent rhythm expression from the SCN, on the other hand. The multioscillator pacemaker structure of the SCN is advantageous for responding to a wide range of environmental challenges without losing coherent rhythm outputs.

摘要

视交叉上核(SCN)是哺乳动物的主生物钟,由多个生物钟神经元组成。当它们在分散的细胞中培养时,以及在器官型切片中,大多数都会表现出时钟基因表达和自发放电的显著昼夜节律。周期的分布取决于 SCN 组织的结构,这表明细胞间的相互作用对于组成振荡器细胞的同步化很重要。这种细胞间的相互作用涉及突触相互作用和体液介质。细胞振荡器至少形成三个独立但相互耦合的区域起搏器,其中两个参与了小鼠行为节律的光周期调节。SCN 组织中细胞振荡器的耦合一方面补偿了时钟基因突变引起的功能障碍,另一方面补偿了区域起搏器内和之间的去同步化,从而抑制了来自 SCN 的相干节律表达。SCN 的多振荡器起搏器结构有利于应对广泛的环境挑战,而不会失去相干的节律输出。

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