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首页> 外文期刊>Genes, Chromosomes and Cancer >Refinement within single yeast artificial chromosome clones of a minimal region commonly deleted on the short arm of chromosome 7 in Wilms tumours.
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Refinement within single yeast artificial chromosome clones of a minimal region commonly deleted on the short arm of chromosome 7 in Wilms tumours.

机译:在单酵母人工染色体克隆中细化通常在Wilms肿瘤的7号染色体短臂上缺失的最小区域。

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摘要

Cytogenetic and molecular data indicate an involvement of genes mapped to the proximal portion of the short arm of chromosome 7 (7p) in Wilms tumours (WTs). We have analysed 38 WTs using a panel of eight microsatellite markers mapped to proximal 7p. Loss of heterozygosity (LOH) in tumour, compared with matched constitutional DNA, was identified in eight cases. To define better the minimal region commonly deleted in these tumours, they were analysed with nine additional markers, mapped within the region of interest. One tumour (case 30) showed LOH for only one marker (D7S510), while maintaining heterozygosity for the two immediately flanking loci (D7S555 and D7S668). This result was confirmed by fluorescence in situ hybridisation analysis, which showed that in the majority (65%) of nuclei from tumour 30 hybridising with a bacterial artificial chromosome clone containing the D7S510 locus, only one signal was visible. Noticeably, both markers defining the limits of the observed deleted region are simultaneously present within two distinct overlapping yeast artificial chromosome (YAC) clones mapped to chromosome bands 7p13-p14. This suggests that the maximum length of the missing DNA fragment was approximately 1.3 Mb, corresponding to the length of the smaller of the two YAC clones. In all other cases that showed LOH, the deletion encompassed the 7p13-p14 region. For this reason, we speculate that the identified interval contains a gene whose inactivation is important for the development of at least a fraction of WTs. Copyright 2001 Wiley-Liss, Inc.
机译:细胞遗传学和分子数据表明,在威尔姆斯肿瘤(WTs)中,定位于7号染色体(7p)短臂近端部分的基因参与其中。我们已经使用映射到近端7p的八个微卫星标记组成的面板分析了38个WT。与匹配的构成DNA相比,在八例病例中发现了肿瘤杂合性(LOH)的丧失。为了更好地定义这些肿瘤中通常缺失的最小区域,我们用九种其他标记物对它们进行了分析,并将其标记在目标区域内。一只肿瘤(病例30)仅对一种标记物(D7S510)显示出LOH,而对两个紧邻的基因座(D7S555和D7S668)保持杂合性。荧光原位杂交分析证实了这一结果,该分析表明,来自肿瘤30的大部分核(65%)与包含D7S510基因座的细菌人工染色体克隆杂交,只有一个信号可见。值得注意的是,定义观察到的缺失区域界限的两个标记同时存在于两个不同的重叠酵母人工染色体(YAC)克隆中,这些克隆映射到7p13-p14染色体带。这表明缺失的DNA片段的最大长度约为1.3 Mb,对应于两个YAC克隆中较小者的长度。在所有其他显示LOH的情况下,缺失均包含7p13-p14区域。由于这个原因,我们推测鉴定的间隔包含一个基因,该基因的失活对于至少一部分野生型的发展很重要。版权所有2001 Wiley-Liss,Inc.

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