首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A 1.5-megabase yeast artificial chromosome contig from human chromosome 10q11.2 connecting three genetic loci (RET D10S94 and D10S102) closely linked to the MEN2A locus.
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A 1.5-megabase yeast artificial chromosome contig from human chromosome 10q11.2 connecting three genetic loci (RET D10S94 and D10S102) closely linked to the MEN2A locus.

机译:来自人染色体10q11.2的1.5兆碱基酵母人工染色体重叠群其与三个与MEN2A基因座紧密相连的基因位点(RETD10S94和D10S102)相连。

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摘要

The genetic loci RET, D10S94, and D10S102 from human chromosome 10q11.2 are very closely linked to a locus responsible for the multiple endocrine neoplasia type 2 (MEN2A and MEN2B) and medullary thyroid carcinoma (MTC1) familial cancer syndromes. We have constructed a 1.5-megabase contig consisting of six genomic yeast artificial chromosome clones which include these loci and define their physical order. A critical crossover event has been identified within the map interval; this event places the MEN2A locus centromeric to D10S102 and defines the orientation of the physical map on the chromosome. The orientation of the contig and order of the markers are centromere-RET-D10S94-D10S102-telomere. In addition, a microsatellite repeat polymorphism with a heterozygosity of 71% at the RET locus and a restriction fragment length polymorphism with a heterozygosity of 42% detected by a lambda clone from the D10S94 locus have been developed for high-resolution genetic linkage mapping and predictive diagnostic testing. These data place three important markers on a contiguous physical map, narrow the MEN2 disease locus interval, and provide a framework for further candidate gene identification efforts. Placement of these genetic loci along a clone-based map and continued expansion of the contig will also facilitate efforts to determine the relationship of physical to genetic distance near the centromeres of human chromosomes.
机译:来自人类染色体10q11.2的遗传基因座RET,D10S94和D10S102与导致多发性内分泌肿瘤2型(MEN2A和MEN2B)和甲状腺髓样癌(MTC1)家族性癌症综合征的基因座紧密相连。我们构建了一个1.5兆碱基的重叠群,该重叠群由六个基因组酵母人工染色体克隆组成,其中包括这些基因座并定义了它们的物理顺序。在地图间隔内已识别出严重的交叉事件;此事件将MEN2A基因座定心于D10S102,并定义了染色体上物理图谱的方向。重叠群的取向和标记的顺序是着丝粒-RET-D10S94-D10S102-端粒。此外,已经开发了一种微卫星重复多态性,其在RET基因座处的杂合度为71%,并通过λ克隆从D10S94基因座中检测到的限制性片段长度多态性为42%的杂合度,用于高分辨率遗传连锁作图和预测诊断测试。这些数据将三个重要标记放置在连续的物理图谱上,缩小了MEN2疾病的基因座间隔,并为进一步的候选基因鉴定工作提供了框架。这些基因位点沿着基于克隆的图谱的放置以及重叠群的持续扩展,也将有助于确定人类染色体着丝粒附近的物理距离与遗传距离的关系。

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