首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Induction of glucose-regulated protein (glucose-regulated protein 78/BiP and glucose-regulated protein 94) and heat shock protein 70 transcripts in the immature rat brain following status epilepticus.
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Induction of glucose-regulated protein (glucose-regulated protein 78/BiP and glucose-regulated protein 94) and heat shock protein 70 transcripts in the immature rat brain following status epilepticus.

机译:癫痫持续状态后,未成熟大鼠大脑中葡萄糖调节蛋白(葡萄糖调节蛋白78 / BiP和葡萄糖调节蛋白94)和热休克蛋白70转录物的诱导。

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Prior to 21 days of age, the immature rat brain is relatively resistant to excitotoxicity caused by the glutamate analogue, kainate. As stress-inducible proteins (GRP78, GRP94 and HSP70) have been proposed to possess molecular chaperone activity and protect cells from the deleterious effects of damaged proteins, we examined the pattern of expression of their respective messenger RNAs following systemic kainate at different postnatal ages. In untreated rats between seven and 21 days old, there was a higher basal level of grp78 and grp94 expression compared to hsp70. Unlike hsp70, which was inducible only in 21-day-old rats, kainate-mediated grp94 induction occurred in several regions of the brain as early as postnatal day 7. Grp78 messenger RNA expression was also increased by kainate treatment in 14-day-old rats, and the induction was most pronounced in the kainate-resistant dentate gyrus. With increasing age, longer lasting expression of both grp78 and grp94 messenger RNAs was observed in kainate-vulnerable regions, similar to observations in the adult rat brain. These results demonstrate non-overlapping expression patterns of glucose-regulated proteins and HSP70 in the immature central nervous system, suggesting that they serve different functions. While hsp70 induction could be a marker for potential cell injury and death, increased expression of grp78 and grp94 could play a neuroprotective role in the developing rat brain.
机译:在21日龄之前,未成熟的大鼠大脑对由谷氨酸类似物海藻酸盐引起的兴奋性毒性具有相对的抵抗力。由于已经提出了应激诱导蛋白(GRP78,GRP94和HSP70)具有分子伴侣活性,并保护细胞免受受损蛋白的有害影响,因此我们研究了不同出生年龄的系统性海藻酸盐后它们各自信使RNA的表达模式。与hsp70相比,在7至21天大的未经治疗的大鼠中,grp78和grp94的基础表达水平较高。与仅在21日龄的大鼠中可诱导的hsp70不同,海藻酸盐介导的grp94诱导最早在出生后第7天就出现在大脑的多个区域。在大鼠中,诱导作用最强于抗红藻氨酸的齿状回。随着年龄的增长,在海藻酸盐易受伤害的区域观察到grp78和grp94信使RNA的持续表达时间更长,这与成年大鼠大脑中的观察结果相似。这些结果证明了在未成熟的中枢神经系统中葡萄糖调节蛋白和HSP70的非重叠表达模式,表明它们具有不同的功能。尽管hsp70诱导可能是潜在的细胞损伤和死亡的标志物,但grp78和grp94表达的增加可能在发育中的大鼠大脑中起神经保护作用。

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