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突变型亨廷顿蛋白对小鼠纹状体基因表达的影响重现了在人类亨廷顿病大脑中观察到的变化,且与突变型亨廷顿蛋白的长度或野生型亨廷顿蛋白的剂量无关。

Mutant huntingtin's effects on striatal gene expression in mice recapitulate changes observed in human Huntington's disease brain and do not differ with mutant huntingtin length or wild-type huntingtin dosage.

作者信息

Kuhn Alexandre, Goldstein Darlene R, Hodges Angela, Strand Andrew D, Sengstag Thierry, Kooperberg Charles, Becanovic Kristina, Pouladi Mahmoud A, Sathasivam Kirupa, Cha Jang-Ho J, Hannan Anthony J, Hayden Michael R, Leavitt Blair R, Dunnett Stephen B, Ferrante Robert J, Albin Roger, Shelbourne Peggy, Delorenzi Mauro, Augood Sarah J, Faull Richard L M, Olson James M, Bates Gillian P, Jones Lesley, Luthi-Carter Ruth

机构信息

Ecole Polytechnique Fédérale de Lausanne (EPFL), 1015 Lausanne, Switzerland.

出版信息

Hum Mol Genet. 2007 Aug 1;16(15):1845-61. doi: 10.1093/hmg/ddm133. Epub 2007 May 21.

Abstract

To test the hypotheses that mutant huntingtin protein length and wild-type huntingtin dosage have important effects on disease-related transcriptional dysfunction, we compared the changes in mRNA in seven genetic mouse models of Huntington's disease (HD) and postmortem human HD caudate. Transgenic models expressing short N-terminal fragments of mutant huntingtin (R6/1 and R6/2 mice) exhibited the most rapid effects on gene expression, consistent with previous studies. Although changes in the brains of knock-in and full-length transgenic models of HD took longer to appear, 15- and 22-month CHL2(Q150/Q150), 18-month Hdh(Q92/Q92) and 2-year-old YAC128 animals also exhibited significant HD-like mRNA signatures. Whereas it was expected that the expression of full-length huntingtin transprotein might result in unique gene expression changes compared with those caused by the expression of an N-terminal huntingtin fragment, no discernable differences between full-length and fragment models were detected. In addition, very high correlations between the signatures of mice expressing normal levels of wild-type huntingtin and mice in which the wild-type protein is absent suggest a limited effect of the wild-type protein to change basal gene expression or to influence the qualitative disease-related effect of mutant huntingtin. The combined analysis of mouse and human HD transcriptomes provides important temporal and mechanistic insights into the process by which mutant huntingtin kills striatal neurons. In addition, the discovery that several available lines of HD mice faithfully recapitulate the gene expression signature of the human disorder provides a novel aspect of validation with respect to their use in preclinical therapeutic trials.

摘要

为了验证突变型亨廷顿蛋白长度和野生型亨廷顿蛋白剂量对疾病相关转录功能障碍具有重要影响这一假设,我们比较了7种亨廷顿舞蹈病(HD)基因小鼠模型和人类HD死后尾状核中mRNA的变化。表达突变型亨廷顿蛋白短N端片段的转基因模型(R6/1和R6/2小鼠)对基因表达表现出最快的影响,这与先前的研究一致。尽管HD基因敲入和全长转基因模型的大脑变化出现得较慢,但15个月和22个月大的CHL2(Q150/Q150)、18个月大的Hdh(Q92/Q92)以及2岁的YAC128动物也表现出显著的HD样mRNA特征。虽然预期全长亨廷顿转运蛋白的表达可能会导致与N端亨廷顿片段表达所引起的不同的独特基因表达变化,但在全长模型和片段模型之间未检测到明显差异。此外,表达正常水平野生型亨廷顿蛋白的小鼠与缺失野生型蛋白的小鼠的特征之间具有非常高的相关性,这表明野生型蛋白对改变基础基因表达或影响突变型亨廷顿蛋白与疾病相关的定性作用的影响有限。小鼠和人类HD转录组的联合分析为突变型亨廷顿蛋白杀死纹状体神经元的过程提供了重要的时间和机制见解。此外,发现几种现有的HD小鼠品系忠实地重现了人类疾病的基因表达特征,为它们在临床前治疗试验中的应用提供了一个新的验证方面。

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