Department of Psychology and Program in Neuroscience, Smith College, Clark Science Center, 44 College Lane, Northampton, MA 01063, USA.
Neuroscience. 2009 Dec 1;164(2):832-41. doi: 10.1016/j.neuroscience.2009.08.022. Epub 2009 Aug 19.
The hypothalamic suprachiasmatic nucleus (SCN), which in mammals serves as the master circadian pacemaker by synchronizing autonomous clocks in peripheral tissues, is composed of coupled single-cell oscillators that are driven by interlocking positive/negative transcriptional/translational feedback loops. Several studies have suggested that heme, a common prosthetic group that is synthesized and degraded in a circadian manner in the SCN, may modulate the function of several feedback loop components, including the REV-ERB nuclear receptors and PERIOD2 (PER2). We found that ferric heme (hemin, 3-100 microM) dose-dependently and reversibly damped luminescence rhythms in SCN explants from mice expressing a PER2::LUCIFERASE (PER2::LUC) fusion protein. Inhibitors of heme oxygenases (HOs, which degrade heme to biliverdin, carbon monoxide, and iron) mimicked heme's effects on PER2 rhythms. In contrast, heme and HO inhibition did not damp luminescence rhythms in thymus and esophagus explants and had only a small effect on PER2::LUC damping in spleen explants, suggesting that heme's effects are tissue-specific. Analysis of the effects of heme's degradation products on SCN PER2::LUC rhythms indicated that they probably were not responsible for heme's effects on rhythms. The heme synthesis inhibitor N-methylprotoporphyrinIX (NMP) lengthened the circadian period of SCN PER2::LUC rhythms by about an hour. These data are consistent with an important role for heme in the circadian system.
下丘脑视交叉上核(SCN)在哺乳动物中作为主生物钟,通过使外周组织中的自主时钟同步来发挥作用,它由耦合的单细胞振荡器组成,这些振荡器由相互锁定的正/负转录/翻译反馈环驱动。几项研究表明,血红素是一种常见的辅基,它在 SCN 中以昼夜节律的方式合成和降解,可能调节几个反馈环组件的功能,包括 REV-ERB 核受体和 PERIOD2(PER2)。我们发现,铁血红素(胆绿素,3-100μM)剂量依赖性地、可逆地减弱了表达 PER2::LUCIFERASE(PER2::LUC)融合蛋白的 SCN 外植体的发光节律。血红素加氧酶(HOs)的抑制剂(降解血红素为胆绿素、一氧化碳和铁)模拟了血红素对 PER2 节律的作用。相比之下,血红素和 HO 抑制作用不会减弱胸腺和食管外植体的发光节律,对脾外植体中 PER2::LUC 的抑制作用也很小,表明血红素的作用具有组织特异性。对血红素降解产物对 SCN PER2::LUC 节律的影响分析表明,它们可能不是血红素对节律影响的原因。血红素合成抑制剂 N-甲基原卟啉 IX(NMP)使 SCN PER2::LUC 节律的昼夜周期延长了约一个小时。这些数据与血红素在生物钟系统中具有重要作用是一致的。