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A Meta-Analysis Characterizing Stem-Like Gene Expression in the Suprachiasmatic Nucleus and Its Circadian Clock

机译:表征超视神经干及其昼夜节律的干基因样表达的Meta分析。

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摘要

Cells expressing proteins characteristic of stem cells and progenitor cells are present in the suprachiasmatic nucleus (SCN) of the adult mammalian hypothalamus. Any relationship between this distinctive feature and the master circadian clock of the SCN is unclear. Considering the lack of obvious neurogenesis in the adult SCN relative to the hippocampus and other structures that provide neurons and glia, it is possible that the SCN has partially differentiated cells that can provide neural circuit plasticity rather than ongoing neurogenesis. To test this possibility, available databases and publications were explored to identify highly expressed genes in the mouse SCN that also have known or suspected roles in cell differentiation, maintenance of stem-like states, or cell-cell interactions found in adult and embryonic stem cells and cancer stem cells. The SCN was found to have numerous genes associated with stem cell maintenance and increased motility from which we selected 25 of the most relevant genes. Over ninety percent of these stem-like genes were expressed at higher levels in the SCN than in other brain areas. Further analysis of this gene set could provide a greater understanding of how adjustments in cell contacts alter period and phase relationships of circadian rhythms. Circadian timing and its role in cancer, sleep, and metabolic disorders are likely influenced by genes selected in this study.
机译:表达干细胞和祖细胞特征蛋白的细胞存在于成年哺乳动物下丘脑的视交叉上核(SCN)中。目前尚不清楚此独特功能与SCN主生物钟之间的任何关系。考虑到相对于海马和其他提​​供神经元和神经胶质的结构,成年SCN中缺乏明显的神经发生,SCN可能具有部分分化的细胞,可以提供神经回路可塑性,而不是正在进行的神经发生。为了测试这种可能性,探索了可用的数据库和出版物以鉴定小鼠SCN中高表达的基因,这些基因在细胞分化,维持干样状态或在成体和胚胎干细胞中发现的细胞间相互作用中也具有已知或怀疑的作用和癌症干细胞。发现SCN具有许多与干细胞维持和运动能力增强相关的基因,我们从中选择了25个最相关的基因。这些干样基因中超过90%在SCN中的表达水平高于其他脑区域。对该基因集的进一步分析可以提供对细胞接触调节如何改变昼夜节律的周期和相位关系的更好理解。昼夜节律的时机及其在癌症,睡眠和代谢紊乱中的作用可能受本研究中所选基因的影响。

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