Wu Zhiliang, Nagano Isao, Takahashi Yuzo
Department of Parasitology, Gifu University Graduate School of Medicine, Yanagido 1-1, Gifu, Japan.
Parasitol Int. 2008 Sep;57(3):368-78. doi: 10.1016/j.parint.2008.03.005. Epub 2008 Apr 9.
The gene expression profiles were compared between Trichinella spiralis- and T. pseudospiralis-infected muscle tissues by means of a cDNA microarray. Out of 30,000 genes, the expressions of 55 genes were up-regulated in both T. spiralis and T. pseudospiralis infections, 24 genes were down-regulated in both Trichinella infections, 30 genes were up-regulated only in T. spiralis infection, 23 genes were down-regulated only in T. spiralis infection, 25 genes were up-regulated only in T. pseudospiralis infection, and 21 genes were down-regulated only in T. pseudospiralis infection. Many of these differentially expressed genes were associated with satellite cell activation and proliferation (paired box gene 7, Pax7; Pax3; desmin; M-cadherin), myogenesis and muscle development (eyes absent 2 homolog, Eya2; myocyte enhancer factor 2C, MEF2C; pre B-cell leukemia transcription factor 1, Pbx1; chordin-like 2, Chrdl2), cell differentiation (galectin 1; insulin like growth factors, IGFs; c-ski; msh-like 1, Msx1; Numb), cell proliferation and cycle regulation (retinoblastoma 1, Rb1; granulin; p21, CDK4, cyclin A2), and apoptosis (tumor necrosis factor receptor 1, TNF-R1; programmed cell death protein 11, Pdcd11; Pdcd1; nuclear protein 1, Nuprl; clusterin, CLU). The differential expression of 17 genes was validated by quantitative real time PCR and 15 genes showed identical results with the microarray analysis. The present study listed the candidate genes that were commonly and differentially expressed between T. spiralis and/or T. pseudospiralis infection, thus suggesting that these genes need to be further investigated to reveal the mechanism of the common and/or different pathological changes induced by the two species Trichinella.
通过cDNA微阵列比较旋毛虫和伪旋毛虫感染的肌肉组织之间的基因表达谱。在30000个基因中,55个基因的表达在旋毛虫和伪旋毛虫感染中均上调,24个基因在两种旋毛虫感染中均下调,30个基因仅在旋毛虫感染中上调,23个基因仅在旋毛虫感染中下调,25个基因仅在伪旋毛虫感染中上调,21个基因仅在伪旋毛虫感染中下调。这些差异表达的基因中有许多与卫星细胞激活和增殖(配对盒基因7,Pax7;Pax3;结蛋白;M-钙黏蛋白)、肌发生和肌肉发育(无眼2同源物,Eya2;肌细胞增强因子2C,MEF2C;前B细胞白血病转录因子1,Pbx1;类脊索蛋白2,Chrdl2)、细胞分化(半乳糖凝集素1;胰岛素样生长因子,IGFs;c-ski;类MSH1,Msx1;Numb)、细胞增殖和周期调控(视网膜母细胞瘤1,Rb1;颗粒蛋白;p21、CDK4、细胞周期蛋白A2)以及细胞凋亡(肿瘤坏死因子受体1,TNF-R1;程序性细胞死亡蛋白11,Pdcd11;Pdcd1;核蛋白1,Nuprl;簇集蛋白,CLU)相关。17个基因的差异表达通过定量实时PCR进行了验证,15个基因与微阵列分析结果一致。本研究列出了旋毛虫和/或伪旋毛虫感染之间共同和差异表达的候选基因,因此表明需要进一步研究这些基因,以揭示这两种旋毛虫诱导的共同和/或不同病理变化的机制。