Noshiro Mitsuhide, Usui Emiko, Kawamoto Takeshi, Kubo Hiroshi, Fujimoto Katsumi, Furukawa Masae, Honma Sato, Makishima Makoto, Honma Ken-ichi, Kato Yukio
Department of Dental and Medical Biochemistry, Hiroshima University Graduate School of Biomedical Sciences, Hiroshima, Japan.
J Biol Rhythms. 2007 Aug;22(4):299-311. doi: 10.1177/0748730407302461.
Cholesterol 7alpha-hydroxylase (CYP7A) and sterol 12alpha-hydroxylase (CYP8B) in bile acid biosynthesis and 3-hydroxyl-3-methylglutaryl CoA reductase (HMGCR) in cholesterol biosynthesis are the key enzymes in hepatic metabolic pathways, and their transcripts exhibit circadian expression profiles in rodent liver. The authors determined transcript levels of these enzymes and the regulatory factors for Cyp7a--including Dbp, Dec2, E4bp4, Hnf4alpha, Pparalpha, Lxralpha, Rev-erbalpha, and Rev-erbbeta--in the liver of wild-type and homozygous Clock mutant mice (Clock/Clock) and examined the effects of these transcription factors on the transcription activities of Cyp7a. The expression profile of the Cyp7a transcript in wild-type mice showed a strong circadian rhythm in both the 12L:12D light-dark cycle and constant darkness, and that in Clock/Clock also exhibited a circadian rhythm at an enhanced level with a lower amplitude, although its protein level became arrhythmic at a high level. The expression profile of Cyp8b mRNA in wild-type mice showed a shifted circadian rhythm from that of Cyp7a, becoming arrhythmic in Clock/Clock at an expression level comparable to that of wild-type mice. The expression profile of Hmgcr mRNA also lost its strong circadian rhythm in Clock/Clock , showing an expression level comparable to that of wild-type mice. The expressions of Dbp, Dec2, Rev-erbalpha, and Rev-erb beta--potent regulators for Cyp7a expression--were abolished or became arrhythmic in Clock/Clock, while other regulators for Cyp7a-Lxralpha, Hnf4alpha, Pparalpha, and E4bp4--had either less affected or enhanced expression in Clock/Clock. In luciferase reporter assays, REV-ERBalpha/beta, DBP, LXRalpha, and HNF4alpha increased the promoter activity of Cyp7a, whereas DEC2 abolished the transcription from the Cyp7a promoter: E4BP4 and PPARalpha were moderate negative regulators. Furthermore, knockdown of REV-ERBalpha/beta with siRNA suppressed Cyp7a transcript levels, and in the electrophoretic mobility shift assay, REV-ERBalpha/beta bound to the promoter of Cyp7a . These observations suggest that (1) active CLOCK is essential for the robust circadian expression of hepatic metabolic enzymes (Cyp7a, Cyp8b, and Hmgcr); (2) clock-controlled genes--DBP, DEC2, and REV-ERBalpha/beta--are direct regulators required for the robust circadian rhythm of Cyp7a; and (3) the circadian rhythm of Cyp7a is regulated by multiple transcription factors, including DBP, REV-ERBalpha/beta, LXRalpha, HNF4alpha DEC2, E4BP4, and PPARalpha.
胆固醇7α-羟化酶(CYP7A)和胆汁酸生物合成中的固醇12α-羟化酶(CYP8B)以及胆固醇生物合成中的3-羟基-3-甲基戊二酰辅酶A还原酶(HMGCR)是肝脏代谢途径中的关键酶,它们的转录本在啮齿动物肝脏中呈现昼夜节律性表达模式。作者测定了野生型和纯合Clock突变小鼠(Clock/Clock)肝脏中这些酶以及Cyp7a的调控因子(包括Dbp、Dec2、E4bp4、Hnf4alpha、Pparalpha、Lxralpha、Rev-erbalpha和Rev-erbbeta)的转录水平,并研究了这些转录因子对Cyp7a转录活性的影响。野生型小鼠中Cyp7a转录本的表达谱在12L:12D明暗循环和持续黑暗条件下均表现出强烈的昼夜节律,而Clock/Clock小鼠中的Cyp7a转录本也呈现昼夜节律,但水平升高且幅度较小,尽管其蛋白质水平在高水平时变得无节律。野生型小鼠中Cyp8b mRNA的表达谱显示其昼夜节律与Cyp7a不同,在Clock/Clock小鼠中表达水平与野生型小鼠相当但变得无节律。Hmgcr mRNA的表达谱在Clock/Clock小鼠中也失去了强烈的昼夜节律,表达水平与野生型小鼠相当。Dbp、Dec2、Rev-erbalpha和Rev-erb beta(Cyp7a表达的强效调节因子)的表达在Clock/Clock小鼠中被消除或变得无节律,而Cyp7a的其他调节因子(Lxralpha、Hnf4alpha、Pparalpha和E4bp4)在Clock/Clock小鼠中要么受影响较小要么表达增强。在荧光素酶报告基因测定中,REV-ERBalpha/beta、DBP、LXRalpha和HNF4alpha增加了Cyp7a的启动子活性,而DEC2消除了Cyp7a启动子的转录:E4BP4和PPARalpha是中度负调节因子。此外,用小干扰RNA敲低REV-ERBalpha/beta可抑制Cyp7a转录本水平,并且在电泳迁移率变动分析中,REV-ERBalpha/beta与Cyp7a的启动子结合。这些观察结果表明:(1)活性CLOCK对于肝脏代谢酶(Cyp7a、Cyp8b和Hmgcr)的强劲昼夜节律表达至关重要;(2)生物钟控制基因(Dbp、Dec2和REV-ERBalpha/beta)是Cyp7a强劲昼夜节律所需的直接调节因子;(3)Cyp7a的昼夜节律受多种转录因子调节,包括DBP、REV-ERBalpha/beta、LXRalpha、HNF4alpha、DEC2、E4BP4和PPARalpha。