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Substantial narrowing of the Niemann–Pick C candidate interval by yeast artificial chromosome complementation

机译:Niemann–Pick C候选区间的显着缩小 通过酵母人工染色体互补

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摘要

Niemann–Pick disease type C (NP-C) is an autosomal recessive lipidosis linked to chromosome 18q11–12, characterized by lysosomal accumulation of unesterified cholesterol and delayed induction of cholesterol-mediated homeostatic responses. This cellular phenotype is identifiable cytologically by filipin staining and biochemically by measurement of low-density lipoprotein-derived cholesterol esterification. The mutant Chinese hamster ovary cell line (CT60), which displays the NP-C cellular phenotype, was used as the recipient for a complementation assay after somatic cell fusions with normal and NP-C murine cells suggested that this Chinese hamster ovary cell line carries an alteration(s) in the hamster homolog(s) of NP-C. To narrow rapidly the candidate interval for NP-C, three overlapping yeast artificial chromosomes (YACs) spanning the 1 centimorgan human NP-C interval were introduced stably into CT60 cells and analyzed for correction of the cellular phenotype. Only YAC 911D5 complemented the NP-C phenotype, as evidenced by cytological and biochemical analyses, whereas no complementation was obtained from the other two YACs within the interval or from a YAC derived from chromosome 7. Fluorescent in situ hybridization indicated that YAC 911D5 was integrated at a single site per CT60 genome. These data substantially narrow the NP-C critical interval and should greatly simplify the identification of the gene responsible in mouse and man. This is the first demonstration of YAC complementation as a valuable adjunct strategy for positional cloning of a human gene.
机译:Niemann–Pick疾病C型(NP-C)是与染色体18q11–12相关的常染色体隐性脂质增多症,其特征在于未酯化胆固醇的溶酶体积累和延迟的胆固醇介导的稳态反应。该细胞表型可通过菲律宾血色素染色在细胞学上鉴定,并通过测量低密度脂蛋白衍生的胆固醇酯化反应在生物化学上鉴定。表现出NP-C细胞表型的突变中国仓鼠卵巢细胞系(CT60)在体细胞与正常鼠和NP-C鼠细胞融合后提示该中国仓鼠卵巢细胞系携带了互补测定的受体。 NP-C仓鼠同源​​物中的一个或多个改变。为了迅速缩小NP-C的候选间隔,将跨越1厘摩人类NP-C间隔的三个重叠的酵母人工染色体(YAC)稳定地引入CT60细胞,并进行细胞表型校正分析。细胞学和生化分析表明,只有YAC 911D5补充了NP-C表型,而其他两个YAC均未获得互补 间隔或来自7号染色体的YAC。荧光 原位杂交表明YAC 911D5为 在每个CT60基因组的单个位点整合。这些数据基本上 缩小NP-C临界间隔,应大大简化 鉴定对小鼠和人类负责的基因。这是 YAC补充作为有价值的辅助物的首次展示 人类基因位置克隆的策略。

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