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猪胎儿和出生后肌肉中差异基因表达的互补DNA宏阵列分析。

Complementary DNA macroarray analyses of differential gene expression in porcine fetal and postnatal muscle.

作者信息

Zhao S H, Nettleton D, Liu W, Fitzsimmons C, Ernst C W, Raney N E, Tuggle C K

机构信息

Department of Animal Science, Iowa State University, Ames 50011, USA.

出版信息

J Anim Sci. 2003 Sep;81(9):2179-88. doi: 10.2527/2003.8192179x.

Abstract

To study differential gene expression in porcine skeletal muscle, a porcine complementary DNA (cDNA) macroarray was produced that contained 327 expressed sequence tags (EST) derived from whole embryo and adult skeletal muscle, and differential display PCR products from fetal and postnatal muscle. Total RNA from four muscle samples, 75- and 105-d fetal hind limb muscles, and 1- and 7-wk postnatal semitendinosus muscle was used to make radiolabeled targets for duplicate hybridization to the macroarray membranes in an initial screen for expression. All EST that gave clear signals (n = 238) were then re-arrayed, and hybridization was conducted with additional biological replication of samples in the 75-d and 1-wk ages. Signal intensity for each gene was normalized to signal intensity measured at control spots on each membrane, which consisted of total cDNA from liver, lung, spleen, and skeletal muscle. Both normalized ratio levels and a mixed linear model analyses were used to identify genes differentially expressed among the muscle samples. Results showed 28 genes had differences in expression level greater than twofold between the 75-d fetal and 1-wk muscle RNA samples. All 28 genes were also identified as genes with significantly different (P < 0.01) expression using a mixed linear model analysis. Nineteen of these 28 genes had significant matches (basic local alignment search tool [BLAST] score > 100; P < 0.01) to known genes, two matched genes encoding human hypothetical proteins, and seven had no significant matches to Genbank nonredundant and dbEST (database of expressed sequence tags) entries. These results were confirmed for representative genes with RNA blot analysis of seven developmental time points, including RNA from the same muscle samples tested previously in the macroarray. The RNA blot results confirmed the macroarray results for all selected genes, demonstrating that the macroarray technique used in this study is accurate and reproducible. An unknown muscle clone (M218) with a slightly less than twofold increase in expression from the 75-d to the 1-wk age (1 wk/75 d = 1.94; P = 0.0114) was also shown to differ between these two ages using RNA blot analysis, demonstrating the methods used to identify differentially expressed genes may be conservative. The association between expression patterns of vimentin and desmin was also investigated. Results indicate the switch in intermediate filament protein from vimentin to desmin occurs primarily at the level of transcription and/or RNA processing.

摘要

为研究猪骨骼肌中的差异基因表达,构建了一个猪互补DNA(cDNA)宏阵列,其中包含327个来自全胚胎和成年骨骼肌的表达序列标签(EST),以及来自胎儿和出生后肌肉的差异显示PCR产物。使用来自四个肌肉样本(75日龄和105日龄胎儿后肢肌肉,以及出生后1周和7周的半腱肌)的总RNA制作放射性标记的靶标,用于在初始表达筛选中与宏阵列膜进行重复杂交。然后将所有给出清晰信号的EST(n = 238)重新排列,并在75日龄和1周龄样本进行额外生物学重复的情况下进行杂交。每个基因的信号强度通过与每个膜上对照点测得的信号强度进行归一化,对照点由来自肝脏、肺、脾脏和骨骼肌的总cDNA组成。使用归一化比率水平和混合线性模型分析来鉴定肌肉样本间差异表达的基因。结果显示,在75日龄胎儿和1周龄肌肉RNA样本之间,有28个基因的表达水平差异大于两倍。使用混合线性模型分析,这28个基因也被鉴定为表达有显著差异(P < 0.01)的基因。这28个基因中有19个与已知基因有显著匹配(基本局部比对搜索工具[BLAST]得分> 100;P < 0.01),两个匹配的基因编码人类假定蛋白,还有七个与Genbank非冗余和dbEST(表达序列标签数据库)条目无显著匹配。通过对七个发育时间点的RNA印迹分析,对代表性基因的这些结果进行了确认,包括来自先前在宏阵列中测试的相同肌肉样本的RNA。RNA印迹结果证实了所有选定基因的宏阵列结果,表明本研究中使用的宏阵列技术准确且可重复。使用RNA印迹分析还显示,一个未知肌肉克隆(M218)从75日龄到1周龄表达略有增加但不到两倍(1周龄/75日龄 = 1.94;P = 0.0114),这两个年龄之间也存在差异,表明用于鉴定差异表达基因的方法可能较为保守。还研究了波形蛋白和结蛋白表达模式之间的关联。结果表明,中间丝蛋白从波形蛋白向结蛋白的转换主要发生在转录和/或RNA加工水平。

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