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血红素加氧酶-1与脑氧化甾醇代谢与老年小鼠皮质中Egr-1的表达相关,但与海马体无关。

Heme Oxygenase-1 and Brain Oxysterols Metabolism Are Linked to Egr-1 Expression in Aged Mice Cortex, but Not in Hippocampus.

作者信息

Rosa Paolo, Zerbinati Chiara, Crestini Alessio, Canudas Anna-Maria, Ragona Giuseppe, Confaloni Annamaria, Iuliano Luigi, Calogero Antonella

机构信息

Department of Medical-Surgical Sciences and Biotechnologies, Sapienza University of Rome, Polo Pontino, Latina, Italy.

Istituto Chirurgico Ortopedico Traumatologico, ICOT, Latina, Italy.

出版信息

Front Aging Neurosci. 2018 Nov 6;10:363. doi: 10.3389/fnagi.2018.00363. eCollection 2018.

Abstract

Throughout life, stress stimuli act upon the brain leading to morphological and functional changes in advanced age, when it is likely to develop neurodegenerative disorders. There is an increasing need to unveil the molecular mechanisms underlying aging, in a world where populations are getting older. Egr-1 (early growth response 1), a transcriptional factor involved in cell survival, proliferation and differentiation - with a role also in memory, cognition and synaptic plasticity, can be implicated in the molecular mechanism of the aging process. Moreover, Heme Oxygenase-1a (HO), a 32 kDa heat-shock protein that converts heme to iron, carbon monoxide and biliverdin, is a key enzyme with neuroprotective properties. Several and studies reported that HO-1 could regulate the metabolism of oxysterols, oxidation products of cholesterol that include markers of oxidative stress. Recently, a link between Egr-1 and HO-1 has been demonstrated in mouse lung cells exposed to cigarette smoke. In view of these data, we wanted to investigate whether Egr-1 can be implicated also in the oxysterol metabolism during brain aging. Our results show that Egr-1 expression is differently expressed in the cortex and hippocampus of old mice, as well as the oxysterol profile between these two brain areas. In particular, we show that the cortex experiences in an age-dependent fashion increasing levels of the Egr-1 protein, and that these correlate with the level of HO-1 expression and oxysterol abundance. Such a situation was not observed in the hippocampus. These results are further strenghtened by our observations made with Egr-1 KO mice, confirming our hypothesis concerning the influence of Egr-1 on oxysterol production and accumulation via regulation of the expression of HO-1 in the cortex, but not the hippocampus, of old mice. It is important to notice that most of the oxysterols involved in this process are those usually stimulated by oxidative stress, which would then represent the triggering factor for this mechanism.

摘要

在整个生命过程中,应激刺激作用于大脑,导致老年时出现形态和功能变化,此时很可能会发生神经退行性疾病。在人口老龄化的当今世界,揭示衰老背后的分子机制的需求日益增加。早期生长反应因子1(Egr-1)是一种参与细胞存活、增殖和分化的转录因子,在记忆、认知和突触可塑性方面也发挥作用,可能与衰老过程的分子机制有关。此外,血红素加氧酶-1a(HO)是一种32 kDa的热休克蛋白,可将血红素转化为铁、一氧化碳和胆绿素,是一种具有神经保护特性的关键酶。多项研究报告称,HO-1可调节氧化甾醇的代谢,氧化甾醇是胆固醇的氧化产物,包括氧化应激的标志物。最近,在暴露于香烟烟雾的小鼠肺细胞中已证明Egr-1与HO-1之间存在联系。鉴于这些数据,我们想研究Egr-1是否也与大脑衰老过程中的氧化甾醇代谢有关。我们的结果表明,Egr-1在老年小鼠的皮质和海马中的表达不同,这两个脑区之间的氧化甾醇谱也不同。特别是,我们发现皮质中Egr-1蛋白水平以年龄依赖性方式增加,且这些水平与HO-1表达水平和氧化甾醇丰度相关。在海马中未观察到这种情况。我们对Egr-1基因敲除小鼠的观察进一步证实了这些结果,证实了我们关于Egr-1通过调节老年小鼠皮质而非海马中HO-1的表达对氧化甾醇产生和积累的影响的假设。需要注意的是,参与这一过程的大多数氧化甾醇通常是由氧化应激刺激产生的,氧化应激随后可能是这一机制的触发因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef21/6232516/592f5438b8c1/fnagi-10-00363-g001.jpg

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