Xie Zhongwen, Su Wen, Liu Shu, Zhao Guogang, Esser Karyn, Schroder Elizabeth A, Lefta Mellani, Stauss Harald M, Guo Zhenheng, Gong Ming Cui
J Clin Invest. 2015 Jan;125(1):324-36. doi: 10.1172/JCI76881. Epub 2014 Dec 8.
As the central pacemaker, the suprachiasmatic nucleus (SCN) has long been considered the primary regulator of blood pressure circadian rhythm; however, this dogma has been challenged by the discovery that each of the clock genes present in the SCN is also expressed and functions in peripheral tissues. The involvement and contribution of these peripheral clock genes in the circadian rhythm of blood pressure remains uncertain. Here, we demonstrate that selective deletion of the circadian clock transcriptional activator aryl hydrocarbon receptor nuclear translocator-like (Bmal1) from smooth muscle, but not from cardiomyocytes, compromised blood pressure circadian rhythm and decreased blood pressure without affecting SCN-controlled locomotor activity in murine models. In mesenteric arteries, BMAL1 bound to the promoter of and activated the transcription of Rho-kinase 2 (Rock2), and Bmal1 deletion abolished the time-of-day variations in response to agonist-induced vasoconstriction, myosin phosphorylation, and ROCK2 activation. Together, these data indicate that peripheral inputs contribute to the daily control of vasoconstriction and blood pressure and suggest that clock gene expression outside of the SCN should be further evaluated to elucidate pathogenic mechanisms of diseases involving blood pressure circadian rhythm disruption.
作为中枢起搏器,视交叉上核(SCN)长期以来一直被认为是血压昼夜节律的主要调节者;然而,这一教条受到了挑战,因为发现SCN中存在的每个时钟基因也在外周组织中表达并发挥作用。这些外周时钟基因在血压昼夜节律中的参与和贡献仍不确定。在此,我们证明,在小鼠模型中,从平滑肌而非心肌细胞中选择性删除昼夜节律时钟转录激活因子芳烃受体核转运体样蛋白(Bmal1),会损害血压昼夜节律并降低血压,而不影响SCN控制的运动活动。在肠系膜动脉中,BMAL1与Rho激酶2(Rock2)的启动子结合并激活其转录,Bmal1缺失消除了对激动剂诱导的血管收缩、肌球蛋白磷酸化和ROCK2激活的昼夜变化。总之,这些数据表明外周输入有助于日常血管收缩和血压控制,并表明应进一步评估SCN以外的时钟基因表达,以阐明涉及血压昼夜节律紊乱的疾病的致病机制。