Diurnal and nutritional adjustments of intracellular Ca2+ release channels and Ca2+ ATPases associated with restricted feeding schedules in the rat liver.

Q2 Biochemistry, Genetics and Molecular Biology Journal of Circadian Rhythms Pub Date : 2013-08-20 DOI:10.1186/1740-3391-11-8
Adrián Báez-Ruiz, Karina Cázares-Gómez, Olivia Vázquez-Martínez, Raúl Aguilar-Roblero, Mauricio Díaz-Muñoz
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引用次数: 6

Abstract

Background: Intracellular calcium is a biochemical messenger that regulates part of the metabolic adaptations in the daily fed-fast cycle. The aim of this study was to characterize the 24-h variations of the liver ryanodine and IP3 receptors (RyR and IP3R) as well as of the endoplasmic-reticulum and plasma-membrane Ca2+-ATPases (SERCA and PMCA) in daytime restricted feeding protocol.

Methods: A biochemical and immunohistochemical approach was implemented in this study: specific ligand-binding for RyR and IP3R, enzymatic activity (SERCA and PMCA), and protein levels and zonational hepatic-distribution were determined by immunoblot and immunohistochemistry respectively under conditions of fasting, feeding, and temporal food-restriction.

Results: Binding assays and immunoblots for IP3R1 and 2 showed a peak at the light/dark transition in the ad-libitum (AL) group, whereas in the restricted-feeding (RF) group the peak shifted towards the food-access time. In the case of RyR binding experiments, both AL and RF groups showed a modest elevation during the dark period, with the RF rats exhibiting increased binding in response to feeding. The AL group showed 24-h rhythmicity in SERCA level; in contrast, RF group showed a pronounced amplitude elevation and a peak phase-shift during the light-period in SERCA level and activity. The activity of PMCA was constant along day in both groups; PMCA1 levels showed a 24-h rhythmicity in the RF rats (with a peak in the light period), meanwhile PMCA4 protein levels showed rhythmicity in both groups. The fasted condition promoted an increase in IP3R binding and protein level; re-feeding increased the amount of RyR; neither the activity nor expression of SERCA and PMCA protein was affected by fasting-re-feeding conditions. Histochemical experiments showed that the distribution of the Ca2+-handling proteins, between periportal and pericentral zones of the liver, varied with the time of day and the feeding protocol.

Conclusions: Our findings show that RF influences mainly the phase and amplitude of hepatic IP3R and SERCA rhythms as well as discrete zonational distribution for RyR, IP3Rs, SERCA, and PMCA within the liver acinus, suggesting that intracellular calcium dynamics could be part of the rheostatic adaptation of the liver due to diurnal meal entrainment/food entrained oscillator expression.

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大鼠肝脏细胞内Ca2+释放通道和Ca2+ atp酶与限制进食时间表相关的日和营养调节。
背景:细胞内钙是一种生化信使,在日常喂快循环中调节部分代谢适应。本研究的目的是表征在白天限制喂养方案中肝脏红嘌呤和IP3受体(RyR和IP3R)以及内质网和质膜Ca2+- atp酶(SERCA和PMCA)的24小时变化。方法:本研究采用生化和免疫组织化学方法:在禁食、进食和暂时限食条件下,分别采用免疫印迹和免疫组织化学方法检测RyR和IP3R的特异性配体结合、酶活性(SERCA和PMCA)、蛋白质水平和肝脏分带分布。结果:IP3R1和IP3R1的结合试验和免疫印迹显示,在自由进食(AL)组中,IP3R1和IP3R1的峰值出现在明暗转换时,而在限制进食(RF)组中,IP3R1和IP3R1的峰值向进食时间方向移动。在RyR结合实验中,AL组和RF组在黑暗期均表现出适度的升高,RF大鼠在进食后表现出增加的结合。AL组SERCA水平呈24 h节律性;RF组的SERCA水平和活动在光照期表现出明显的振幅升高和峰相移。两组大鼠PMCA活性均保持不变;PMCA1蛋白水平在RF大鼠中呈24小时节律性(在光照期达到峰值),PMCA4蛋白水平在两组中均呈节律性。禁食促进了IP3R结合和蛋白水平的升高;再投喂增加了RyR的量;禁食-再饲喂条件不影响SERCA和PMCA蛋白的活性和表达。组织化学实验表明,Ca2+处理蛋白在肝脏门静脉周围和中心周围区域的分布随着一天中的时间和喂养方案而变化。结论:我们的研究结果表明,射频主要影响肝脏IP3R和SERCA节律的相位和幅度,以及肝腺泡内RyR、IP3Rs、SERCA和PMCA的离散分带分布,这表明细胞内钙动力学可能是肝脏由于昼夜膳食夹带/食物夹带振荡表达而产生的流变适应的一部分。
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来源期刊
Journal of Circadian Rhythms
Journal of Circadian Rhythms Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
7.10
自引率
0.00%
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0
审稿时长
12 weeks
期刊介绍: Journal of Circadian Rhythms is an Open Access, peer-reviewed online journal that publishes research articles dealing with circadian and nycthemeral (daily) rhythms in living organisms, including processes associated with photoperiodism and daily torpor. Journal of Circadian Rhythms aims to include both basic and applied research at any level of biological organization (molecular, cellular, organic, organismal, and populational). Studies of daily rhythms in environmental factors that directly affect circadian rhythms are also pertinent to the journal"s mission.
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