大鼠肝脏再生过程中蛋白质代谢、折叠、转运、定位和组装相关基因的表达变化。

Cun Shuan Xu, Shou Bing Zhang, Zhi Li Yang, Sheng Nan Cui, Ming Zhang
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引用次数: 0

摘要

为了从转录水平研究大鼠肝再生(LR)中蛋白质代谢、折叠、转运、定位和组装相关基因的表达和功能,我们从数据库和科学文献中获取上述基因,利用rat Genome 230 2.0芯片检测其在大鼠肝再生中的表达谱,并通过肝部分切除(PH)组和假手术(SO)组的比较,确定肝再生相关基因。初步确认1147个基因与lr相关。芯片检测结果表明,参与上述生物过程的基因在大鼠LR中大多上调;参与蛋白质代谢的基因主要在PH后0.5-1 h和16-30 h初始表达;在0.5 ~ 12 h期间,蛋白质降解促进基因数量多于蛋白质积累促进基因,而在16 ~ 48 h期间,蛋白质积累促进基因数量多于蛋白质降解促进基因;蛋白合成相关基因在16、24、42和66 h上调频率更高,尤其是在42 h;蛋白质降解相关基因的上调几乎在整个生长期都占主导地位,尤其是在生长期的前期和前期;在2、16-24、42、66、72和168 h,蛋白折叠相关基因的表达量均高于表达量的表达量,尤其是在66 h;蛋白转运和定位相关基因在整个LR期间均显著上调,尤其是在66 h时;大部分蛋白复合物组装相关基因在96 h前上调,尤其是在12 h时。根据上述分析可以推断,在LR中期,蛋白质合成增强,蛋白质降解、折叠、运输、定位和组装的活性几乎在整个LR期间都很活跃。
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The expression changes of genes associated with protein metabolism, folding, transport, localizati on and assembly during rat liver regeneration.

To study the expression and function of protein metabolism, folding, transport, localization and assembly-associated genes in rat liver regeneration (LR) at transcriptional level, we obtained above genes from databases and scientific articles, detected their expression profiles in rat LR using Rat Genome 230 2.0 array, and determined liver regeneration-associated genes by comparing the partial hepatectomy (PH) group with sham operation (SO) group. Totally 1147 genes were preliminarily confirmed to be LR-associated. The results from the chip detection demonstrated that genes involved in the above biological processes were mostly up-regulated in rat LR; protein metabolism-participating genes were initially expressed mainly at 0.5-1 h and 16-30 h following PH; protein degradation-accelerating genes outnumbered protein accumulation-promoting genes between 0.5-12 h, whereas the latter were more than the former during 16-48 hours; protein synthesis-involved genes were more frequently up-regulated at 16,24,42 and 66 h, especially at 42 h; up-regulation of protein degradation-associated genes dominated almost during the whole period of LR, especially at forepart and prophase; the up-regulated protein folding-associated genes were predominant than down-regulated at 2, 16-24, 42, 66, 72 and 168 h, especially at 66 h; protein transport and localization-associated genes were predominantly up-regulated during the whole period of LR, especially at 66 h; and most of protein complex assembly-associated genes were up-regulated before 96 h, especially at 12 h. it was inferred according to the above analysis that protein synthesis was enhanced at metaphase of LR, and the activities of protein degradation, folding, transport, localization and assembly were vigorous almost during the whole period of LR.

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