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肾上腺昼夜节律钟的性别差异:BMAL1在调节小鼠尿醛固酮排泄和肾脏电解质平衡中的作用。

Sex differences in the adrenal circadian clock: a role for BMAL1 in the regulation of urinary aldosterone excretion and renal electrolyte balance in mice.

作者信息

Costello Hannah M, Eikenberry Sophia A, Cheng Kit-Yan, Broderick Bryanna, Joshi Advay S, Scott Gianna R, McKee Annalisse, Mendez Victor M, Douma Lauren G, Crislip G Ryan, Gumz Michelle L

机构信息

Department of Physiology and Aging, University of Florida, Gainesville, Florida, United States.

Division of Nephrology, Hypertension, and Renal Transplantation, Department of Medicine, University of Florida, Gainesville, Florida, United States.

出版信息

Am J Physiol Renal Physiol. 2025 Jan 1;328(1):F1-F14. doi: 10.1152/ajprenal.00177.2024. Epub 2024 Oct 24.

Abstract

Brain and muscle ARNT-Like 1 (BMAL1) is a circadian clock transcription factor that regulates physiological functions. Male adrenal-specific () KO mice displayed blunted serum corticosterone rhythms, altered blood pressure rhythm, and altered timing of eating, but there is a lack of knowledge in females. This study investigates the role of adrenal BMAL1 in renal electrolyte handling and urinary aldosterone levels in response to low salt in male and female mice. Mice were placed in metabolic cages to measure 12-h urinary aldosterone after a standard diet and 7 days low-salt diet, as well as daily body weight, 12-h food and water intake, and renal sodium and potassium balance. Adrenal glands and kidneys were collected at ZT0 or ZT12 to measure the expression of aldosterone synthesis genes and clock genes. Compared with littermate controls, KO male and female mice displayed increased urinary aldosterone in response to a low-salt diet, although mRNA expression of aldosterone synthesis genes was decreased. Timing of food intake was altered in KO male and female mice, with a blunted night/day ratio. KO female mice displayed decreases in renal sodium excretion in response to low salt, but both male and female KO mice had changes in sodium balance that were time-of-day-dependent. In addition, sex differences were found in adrenal and kidney clock gene expression. Notably, this study highlights sex differences in clock gene expression that could contribute to sex differences in physiological functions. Our findings highlight the importance of sex as well as time-of-day in understanding the role of the circadian clock in the regulation of homeostasis. Time-of-day is a key biological variable that is often ignored in research, particularly in preclinical rodent studies. Our findings demonstrate important differences in several measures at 6 AM compared with 6 PM. Consideration of time-of-day is critical for the translation of findings in nocturnal rodent physiology to diurnal human physiology.

摘要

脑与肌肉芳香烃受体核转运蛋白样蛋白1(BMAL1)是一种调节生理功能的昼夜节律时钟转录因子。雄性肾上腺特异性()敲除小鼠表现出血清皮质酮节律减弱、血压节律改变以及进食时间改变,但雌性方面的情况尚不清楚。本研究调查了肾上腺BMAL1在雄性和雌性小鼠应对低盐饮食时对肾脏电解质处理及尿醛固酮水平的作用。将小鼠置于代谢笼中,测量标准饮食和7天低盐饮食后的12小时尿醛固酮水平,以及每日体重、12小时食物和水摄入量,还有肾脏钠和钾平衡。在生物钟时间0或12时采集肾上腺和肾脏,以测量醛固酮合成基因和时钟基因的表达。与同窝对照相比,敲除雄性和雌性小鼠在低盐饮食时尿醛固酮增加,尽管醛固酮合成基因的mRNA表达降低。敲除雄性和雌性小鼠的进食时间发生改变,昼夜比例变钝。敲除雌性小鼠在低盐饮食时肾脏钠排泄减少,但雄性和雌性敲除小鼠的钠平衡变化均具有昼夜依赖性。此外,在肾上腺和肾脏时钟基因表达中发现了性别差异。值得注意的是,本研究突出了时钟基因表达中的性别差异,这可能导致生理功能的性别差异。我们的研究结果强调了性别以及昼夜时间在理解昼夜节律时钟在体内平衡调节中的作用的重要性。昼夜时间是一个关键的生物学变量,在研究中常常被忽视,尤其是在临床前啮齿动物研究中。我们的研究结果表明,上午6点与下午6点在几项指标上存在重要差异。考虑昼夜时间对于将夜间啮齿动物生理学的研究结果转化为昼夜节律的人类生理学至关重要。

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