PDF
Abstract
Aim: The circadian clock is a molecular network that controls the body physiological rhythms. In blood vessels, the circadian clock components modulate vascular remodeling, blood pressure, and signaling. The goal in this study was to determine the pattern of expression of circadian clock proteins in the endothelium, smooth muscle, and adventitia of the vasculature of human and mouse tissues.
Methods: Immunohistochemistry was performed in frozen sections of mouse aorta, common carotid artery, femoral artery, lung, and heart at 12 AM and 12 PM for Bmal1, Clock, Npas2, Per and other clock components. Studies of expression were also assessed in human saphenous vein both by immunoblotting and immunohistochemistry.
Results: In this study, we identified the expression of Bmal1, Clock, Npas, Per1, Cry1, and accessory clock components by immunohistochemical staining in the endothelium, smooth muscle and adventitia of the mouse vasculature with differing temporal and cellular profiles depending on vasculature and tissue analyzed. The human saphenous vein also exhibited expression of clock genes that exhibited an oscillatory pattern in Bmal1 and Cry by immunoblotting.
Conclusion: These studies show that circadian clock components display differences in expression and localization throughout the cardiovascular system, which may confer nuances of circadian clock signaling in a cell-specific manner.
Keywords
Circadian blood vessel
/
vascular endothelium
/
smooth muscle
/
Clock
/
Bmal1
/
aorta
/
human
/
mouse
/
Per
/
Cry
Cite this article
Download citation ▾
Ciprian B. Anea, Ana M. Merloiu, David J. R. Fulton, Vijay Patel, R. Dan Rudic.
Immunohistochemistry of the circadian clock in mouse and human vascular tissues.
Vessel Plus, 2018, 2(1): 16 DOI:10.20517/2574-1209.2018.46
| [1] |
Davidson AJ,Block GD.Cardiovascular tissues contain independent circadian clocks.Clin Exp Hypertens2005;27:307-11
|
| [2] |
McNamara P,Rudic RD,Chakravarti D.Regulation of CLOCK and MOP4 by nuclear hormone receptors in the vasculature: a humoral mechanism to reset a peripheral clock.Cell2001;105:877-89
|
| [3] |
Rudic RD,Reilly D,Curtis AM,Panda S,FitzGerald GA.Bioinformatic analysis of circadian gene oscillation in mouse aorta.Circulation2005;112:2716-24
|
| [4] |
Anea CB,Stepp DW,Reed G,Rudic RD.Vascular disease in mice with a dysfunctional circadian clock.Circulation2009;119:1510-7 PMCID:PMC2761686
|
| [5] |
Viswambharan H,Antic V,Jud C,Ming XF,Albrecht U.Mutation of the circadian clock gene Per2 alters vascular endothelial function.Circulation2007;115:2188-95
|
| [6] |
Somanath PR,Chen J,Marchant K,Byzova TV.Deficiency in core circadian protein Bmal1 is associated with a prothrombotic and vascular phenotype.J Cell Physiol2011;226:132-40 PMCID:PMC2982145
|
| [7] |
Curtis AM,Kapoor S,Price TS.Circadian variation of blood pressure and the vascular response to asynchronous stress.Proc Natl Acad Sci U S A2007;104:3450-5 PMCID:PMC1802007
|
| [8] |
Wang CY,Wang HW,Li Y,Lin FC.Increased vascular senescence and impaired endothelial progenitor cell function mediated by mutation of circadian gene Per2.Circulation2008;118:2166-73 PMCID:PMC2656770
|
| [9] |
Pan X,Hussain MM.Impaired cholesterol metabolism and enhanced atherosclerosis in clock mutant mice.Circulation2013;128:1758-69 PMCID:PMC3897228
|
| [10] |
Hogenesch JB.Intracellular and intercellular processes determine robustness of the circadian clock.FEBS Lett2011;585:1427-34 PMCID:PMC3117285
|
| [11] |
Liu AC,Ko CH,Zhang EE,Buhr ED,Meeker K,Doyle Iii FJ,Kay SA.Intercellular coupling confers robustness against mutations in the SCN circadian clock network.Cell2007;129:605-16 PMCID:PMC3749832
|
| [12] |
Qin B.Overexpression of circadian clock protein cryptochrome (CRY) 1 alleviates sleep deprivation-induced vascular inflammation in a mouse model.Immunol Lett2015;163:76-83
|
| [13] |
Yang L,Wang L,Zhao X,Zhang P,Liu X,Li B,Gao C.Overexpression of CRY1 protects against the development of atherosclerosis via the TLR/NF-kappaB pathway.Int Immunopharmacol2015;28:525-30
|
| [14] |
Xie Z,Liu S,Esser K,Lefta M,Guo Z.Smooth-muscle BMAL1 participates in blood pressure circadian rhythm regulation.J Clin Invest2015;125:324-36 PMCID:PMC4382248
|
| [15] |
Westgate EJ,Reilly DF,Walisser JA,FitzGerald GA.Genetic components of the circadian clock regulate thrombogenesis in vivo.Circulation2008;117:2087-95
|
| [16] |
Cheng B,Yao L,Patel V,Pati P,Fulton DJ.Tissue-intrinsic dysfunction of circadian clock confers transplant arteriosclerosis.Proc Natl Acad Sci U S A2011;108:17147-52 PMCID:PMC3193243
|
| [17] |
Storch KF,Leykin I,Davis FC,Weitz CJ.Extensive and divergent circadian gene expression in liver and heart.Nature2002;417:78-83
|
| [18] |
Young ME,Taegtmeyer H.Clock genes in the heart - characterization and attenuation with hypertrophy.Circ Res2001;88:1142-50
|
| [19] |
Anea CB,Stepp DW,Reed G,Rudic RD.Vascular disease in mice with a dysfunctional circadian clock.Circulation2009;119:1510-7 PMCID:PMC2761686
|
| [20] |
Davidson AJ,Block GD.Cardiovascular tissues contain independent circadian clocks.Clin Exp Hypertens2005;27:307-11
|
| [21] |
Gibbs JE,Plumb J,Farrow S,Loudon AS.Circadian timing in the lung; a specific role for bronchiolar epithelial cells.Endocrinology2009;150:268-76 PMCID:PMC4340583
|
| [22] |
Hwang JW,Yao HW,Rahman I.Circadian clock function is disrupted by environmental tobacco/cigarette smoke, leading to lung inflammation and injury via a SIRT1-BMAL1 pathway.FASEB J2014;28:176-94 PMCID:PMC3868829
|
| [23] |
Zuber AM,Pradervand S,Maquelin L,Bonny O.Molecular clock is involved in predictive circadian adjustment of renal function.Proc Natl Acad Sci U S A2009;106:16523-8 PMCID:PMC2752602
|
| [24] |
Gumz ML,Lynch IJ,Rudin A,Weaver DR.The circadian clock protein Period 1 regulates expression of the renal epithelial sodium channel in mice.J Clin Invest2009;119:2423-34 PMCID:PMC2719945
|
| [25] |
Yoo SH,Lowrey PL,Ko CH,Siepka SM,Oh WJ,Menaker M.PERIOD2::LUCIFERASE real-time reporting of circadian dynamics reveals persistent circadian oscillations in mouse peripheral tissues.Proc Natl Acad Sci U S A2004;101:5339-46 PMCID:PMC397382
|
| [26] |
Rudic RD,Reilly D,Curtis AM,Panda S,FitzGerald GA.Bioinformatic analysis of circadian gene oscillation in mouse aorta.Circulation2005;112:2716-24
|
| [27] |
Majesky MW,Hoglund V,Daum G.The adventitia: a dynamic interface containing resident progenitor cells.Arterioscler Thromb Vasc Biol2011;31:1530-9 PMCID:PMC3382115
|
| [28] |
Shang X,Anea CB,Rudic RD.Differential regulation of BMAL1, CLOCK, and endothelial signaling in the aortic arch and ligated common carotid artery.J Vasc Res2016;53:269-78 PMCID:PMC5765856
|
| [29] |
Kunieda T,Miura K,Tateno K,Kaneko S,FitzGerald GA.Reduced nitric oxide causes age-associated impairment of circadian rhythmicity.Circ Res2008;102:607-14
|
| [30] |
Engel BT.Diurnal variations in central venous pressure.Acta Physiol Scand1991;141:273-8
|
| [31] |
Mann S,Raftery EB.Circadian variation of blood pressure in autonomic failure.Circulation1983;68:477-83
|
| [32] |
Berganzo K,Tijero B,Lezcano E,Ugarriza I,Gomez-Esteban JC.Nocturnal hypertension and dysautonomia in patients with Parkinson's disease: are they related?.J Neurol2013;260:1752-6
|