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The hydrogen sulfide signaling system: changes during aging and the benefits of caloric restriction

机译:硫化氢信号系统:老化过程中的变化以及热量限制的好处

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Hydrogen sulfide gas (H2S) is a putative signaling molecule that causes diverse effects in mammalian tissues including relaxation of blood vessels and regulation of perfusion in the liver, but the effects of aging on H2S signaling are unknown. Aging has negative impacts on the cardiovascular system. However, the liver is more resilient with age. Caloric restriction (CR) attenuates affects of age in many tissues. We hypothesized that the H2S signaling system is negatively affected by age in the vasculature but not in the liver, which is typically more resilient to age, and that a CR diet minimizes the age affect in the vasculature. To investigate this, we determined protein and mRNA expression of the H2S-producing enzymes cystathionine γ-lyase (CSE) and cystathionine β-synthase (CBS), H2S production rates in the aorta and liver, and the contractile response of aortic rings to exogenous H2S. Tissue was collected from Fisher 344 × Brown Norway rats from 8–38 months of age, which had been maintained on an ad libitum (AL) or CR diet. The results demonstrate that age and diet have differential effects on the H2S signaling system in aorta and liver. The aorta showed a sizeable effect of both age and diet, whereas the liver only showed a sizeable effect of diet. Aortic rings showed increased contractile sensitivity to H2S and increased protein expression of CSE and CBS with age, consistent with a decrease in H2S concentration with age. CR appears to benefit CSE and CBS protein in both aorta and liver, potentially by reducing oxidative stress and ameliorating the negative effect of age on H2S concentration. Therefore, CR may help maintain the H2S signaling system during aging.
机译:硫化氢气体(H 2 S)是一种推测的信号分子,在哺乳动物组织中引起多种作用,包括血管舒张和肝脏灌注的调节,但衰老对H 的影响2 信号是未知的。衰老对心血管系统有负面影响。但是,随着年龄的增长,肝脏的弹性会增强。热量限制(CR)可以减轻许多组织的年龄影响。我们假设H 2 S信号系统受脉管系统中年龄的负面影响,但不受肝脏的影响,肝脏通常对年龄更具弹性,而CR饮食可最大程度地降低脉管系统中的年龄影响。 。为了对此进行调查,我们确定了产生H 2 S的酶胱硫醚γ-裂合酶(CSE)和胱硫醚β-合酶(CBS),H 2 的蛋白质和mRNA表达。主动脉和肝脏中的S产生速率,以及主动脉环对外源H 2 S的收缩反应。从8–38个月大的Fisher 344×Brown挪威大鼠中收集组织,并随意喂养(AL)或CR饮食。结果表明,年龄和饮食对主动脉和肝脏中H 2 S信号系统的影响不同。主动脉在年龄和饮食方面均显示出可观的效果,而肝脏仅在饮食方面显示出可观的效果。随着年龄的增长,主动脉环对H 2 S的收缩敏感性增加,CSE和CBS的蛋白表达增加,与H 2 S浓度的降低有关。 CR可能通过减少氧化应激和减轻年龄对H 2 S浓度的负面影响而有益于主动脉和肝脏中的CSE和CBS蛋白。因此,CR可能有助于在衰老过程中维持H 2 信号系统。

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