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THE USE OF THE MOUSE NPC MODEL TO CLONE THE HUMAN DISEASE GENE

THE USE OF THE MOUSE NPC MODEL TO CLONE THE HUMAN DISEASE GENE
利用小鼠NPC模型克隆人类疾病基因
批准号:
6290294
负责人:
William J Pavan
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

项目摘要

项目成果

William J Pavan的其他基金

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中文摘要
翻译
该项目的长期目标是确定尼曼-皮克C型(NP-C)的基因,并研究其在疾病发病机制中的作用。NP-C是一种常染色体隐性的神经内脏脂质储存障碍,表现为可变肝脾肿大、垂直核上眼麻痹、进行性共济失调、肌张力障碍和痴呆。利用人类定位克隆和与自发小鼠模型杂交,我们已经确定了导致这种疾病的基因。首先,我们在含有m-npc的区域使用了0.1cM的小鼠遗传连锁图谱,使用了一系列亚种间小鼠回交。接下来,我们利用从含有NP-C基因的人类DNA序列中克隆的DNA片段,将小鼠遗传图谱与人类遗传图谱和物理图谱结合起来。最后,我们从cDNA克隆库和从人类生理结构中分离的捕获的外显子片段中评估了作为NP-C候选基因。通过Northern blot、Southern blot、SSCP和测序分析,我们发现一个基因NPC1具有反转录转座子插入,导致突变小鼠正常基因产物的功能丧失。我们也在NPC患者中发现了突变。-生物技术研究、癌症研究、消化系统疾病、基因定位(非人类)、神经科学、儿科研究
英文摘要
The long term goal of this project is to identify the gene responsible for Niemann-Pick Type C (NP-C) and to study its role in the pathogenesis of the disorder. NP-C is an autosomal-recessive, neurovisceral lipid storage disorder and presents as variable hepatosplenomegaly, vertical supranuclear ophthalmoplegia, progressive ataxia, dystonia, and dementia. Using human positional cloning and crosses with spontaneous mouse modles, we have identified the gene responsible for this disorder. First, we used a 0.1cM mouse genetic linkage map in the region containing m-npc using a series of intersubspecific mouse backcrosses. We next integrated the murine genetic mapwith the human genetic and physical maps using cloned DNA fragments generated from the contig of human DNA containing the NP-C gene. Finally we evaluated genes as candidates for NP-C from a pool of cDNA clones and trapped exon fragments isolated from the human physical contig. Using Northern blot, Southern blot, SSCP and sequencing analyses using samples isolated from spontaneous mouse mutants in comparison to their isogenic wild type controls we found that one gene, NPC1 has a retrotransposon insertion resulting in a loss-of-function of the normal gene product in mutatn mice. We have also found mutations in human individuals with NPC. - biotechnology research, cancer research, digestive diseases, gene mapping(non-human), neuroscience, pediatric research
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