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地塞米松暴露后小鼠和人骨髓间充质干细胞中的昼夜节律机制。

Circadian mechanisms in murine and human bone marrow mesenchymal stem cells following dexamethasone exposure.

作者信息

Wu Xiying, Yu Gang, Parks Helen, Hebert Teddi, Goh Brian C, Dietrich Marilyn A, Pelled Gadi, Izadpanah Reza, Gazit Dan, Bunnell Bruce A, Gimble Jeffrey M

机构信息

Stem Cell Laboratory, Pennington Biomedical Research Center, Baton Rouge, LA, USA.

出版信息

Bone. 2008 May;42(5):861-70. doi: 10.1016/j.bone.2007.12.226. Epub 2008 Jan 26.

DOI:10.1016/j.bone.2007.12.226
PMID:18302991
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2423188/
Abstract

A core group of regulatory factors control circadian rhythms in mammalian cells. While the suprachiasmatic nucleus in the brain serves as the central core circadian oscillator, circadian clocks also exist within peripheral tissues and cells. A growing body of evidence has demonstrated that >20% of expressed mRNAs in bone and adipose tissues oscillate in a circadian manner. The current manuscript reports evidence of the core circadian transcriptional apparatus within primary cultures of murine and human bone marrow-derived mesenchymal stem cells (BMSCs). Exposure of confluent, quiescent BMSCs to dexamethasone synchronized the oscillating expression of the mRNAs encoding the albumin D binding protein (dbp), brain-muscle arnt-like 1 (bmal1), period 3 (per3), rev-erb alpha (Rev A), and rev-erb beta (Rev B). The genes displayed a mean oscillatory period of 22.2 to 24.3 h. The acrophase or peak expression of mRNAs encoding "positive" (bmal1) and "negative" (per3) components of the circadian regulatory apparatus were out of phase with each other by approximately 8-12 h, consistent with in vivo observations. In vivo, phosphyrylation by glycogen synthase kinase 3beta (GSK3beta) is known to regulate the turnover of per3 and components of the core circadian regulatory apparatus. In vitro addition of lithium chloride, a GSK3beta inhibitor, significantly shifted the acrophase of all genes by 4.2-4.7 h oscillation in BMSCs; however, only the male murine BMSCs displayed a significant increase in the length of the period of oscillation. We conclude that human and murine BMSCs represent a valid in vitro model for the analysis of circadian mechanisms in bone metabolism and stem cell biology.

摘要

一组核心调节因子控制哺乳动物细胞的昼夜节律。虽然大脑中的视交叉上核是核心昼夜节律振荡器,但外周组织和细胞中也存在生物钟。越来越多的证据表明,骨骼和脂肪组织中超过20%的表达mRNA以昼夜节律的方式振荡。本手稿报告了小鼠和人骨髓间充质干细胞(BMSC)原代培养物中核心昼夜节律转录装置的证据。将汇合、静止的BMSC暴露于地塞米松可使编码白蛋白D结合蛋白(dbp)、脑肌肉芳香烃受体核转位因子样蛋白1(bmal1)、周期蛋白3(per3)、类视黄醛相关孤儿受体α(Rev A)和类视黄醛相关孤儿受体β(Rev B)的mRNA的振荡表达同步。这些基因的平均振荡周期为22.2至24.3小时。编码昼夜节律调节装置“正向”(bmal1)和“负向”(per3)成分的mRNA的峰相位或峰值表达彼此相差约8 - 12小时,这与体内观察结果一致。在体内,已知糖原合酶激酶3β(GSK3β)的磷酸化作用可调节per3和核心昼夜节律调节装置成分的周转。在体外添加GSK3β抑制剂氯化锂可使BMSC中所有基因的峰相位显著偏移4.2 - 4.7小时振荡;然而,只有雄性小鼠BMSC的振荡周期长度有显著增加。我们得出结论,人和小鼠BMSC是分析骨代谢和干细胞生物学中昼夜节律机制的有效体外模型。

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本文引用的文献

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Induction of circadian gene expression in human subcutaneous adipose-derived stem cells.人皮下脂肪来源干细胞中昼夜节律基因表达的诱导
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Food entrainment of circadian gene expression altered in PPARalpha-/- brown fat and heart.在PPARα基因敲除的棕色脂肪和心脏中,昼夜节律基因表达的食物诱导发生改变。
Biochem Biophys Res Commun. 2007 Sep 7;360(4):828-33. doi: 10.1016/j.bbrc.2007.06.136. Epub 2007 Jul 5.
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The clock gene Per2 links the circadian system to the estrogen receptor.生物钟基因Per2将昼夜节律系统与雌激素受体联系起来。
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Circadian variations in clock gene expression of human bone marrow CD34+ cells.人类骨髓CD34+细胞时钟基因表达的昼夜节律变化。
J Biol Rhythms. 2007 Apr;22(2):140-50. doi: 10.1177/0748730406299078.
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Circadian oscillation of gene expression in murine calvarial bone.小鼠颅骨中基因表达的昼夜节律振荡。
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Biologic properties of mesenchymal stem cells derived from bone marrow and adipose tissue.源自骨髓和脂肪组织的间充质干细胞的生物学特性。
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The circadian gene per1 plays an important role in cell growth and DNA damage control in human cancer cells.昼夜节律基因per1在人类癌细胞的细胞生长和DNA损伤控制中起重要作用。
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Nuclear receptor Rev-erbalpha is a critical lithium-sensitive component of the circadian clock.核受体Rev-erbalpha是生物钟中一个关键的锂敏感成分。
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