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发育和铁状态对大鼠大脑中铜蓝蛋白表达的影响。

Effects of development and iron status on ceruloplasmin expression in rat brain.

作者信息

Chang Yan Zhong, Qian Zhong Ming, Wang Kui, Zhu Li, Yang Xiao Da, Du Jin Rong, Jiang Lin, Ho Kwok Ping, Wang Qin, Ke Ya

机构信息

Laboratory of Brain Iron Metabolism, Department of Applied Biology & Chemical Technology, Hong Kong Polytechnic University, Kowloon, Hong Kong.

出版信息

J Cell Physiol. 2005 Aug;204(2):623-31. doi: 10.1002/jcp.20321.

Abstract

The increased iron content in the brain of subjects with aceruloplasminemia has implicated ceruloplasmin (CP) as a major factor in the regulation of regional brain iron content. In this study, we investigated the effects of age and iron on CP expression in rat brain. In all four regions, the iron concentrations increased with developmental age. There is a similar trend in age-induced changes in CP mRNA and protein. The CP mRNA and protein levels were both lowest at postnatal day (PND) 7. The expression increased gradually with age, reaching the highest at PND196 in the striatum and substantia nigra, and at PND21 and PND63 in the cortex and hippocampus, respectively. This suggests the existence of an age-dependent pre-transcriptional regulation and a regionally specific effect of age on CP expression in the brain. Although total iron in all four regions was significantly lower in the rats fed with a low-iron diet for 6 weeks and higher in the rats with a high-iron diet than those in the control animals, no significant between-group differences in CP mRNA and protein were found in these animals, except in the substantia nigra where a significant increase in CP protein in high-iron rats was observed, and the reverse in low-iron rats. These findings suggested that the effects of iron on CP expression in the brain may be region-specific, and that regulation of CP expression by iron in the substantia nigra was at the post-transcriptional level.

摘要

在无铜蓝蛋白血症患者的大脑中,铁含量增加表明铜蓝蛋白(CP)是调节局部脑铁含量的主要因素。在本研究中,我们调查了年龄和铁对大鼠脑内CP表达的影响。在所有四个脑区,铁浓度均随发育年龄增加。CP mRNA和蛋白的年龄诱导变化也有类似趋势。CP mRNA和蛋白水平在出生后第7天(PND7)均最低。其表达随年龄逐渐增加,在纹状体和黑质中于PND196达到最高,在皮质和海马体中分别于PND21和PND63达到最高。这表明存在年龄依赖性的转录前调控以及年龄对脑内CP表达的区域特异性影响。尽管喂食低铁饮食6周的大鼠所有四个脑区的总铁含量显著低于对照组动物,而喂食高铁饮食的大鼠则高于对照组动物,但除黑质外,这些动物的CP mRNA和蛋白在组间未发现显著差异,在黑质中观察到高铁大鼠的CP蛋白显著增加,而低铁大鼠则相反。这些发现表明,铁对脑内CP表达的影响可能具有区域特异性,并且铁在黑质中对CP表达的调控处于转录后水平。

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