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A strategy for the characterization of minute chromosome rearrangements using multiple color fluorescence in situ hybridization with chromosome-specific DNA libraries and YAC clones

机译:使用染色体特异性DNa文库和YaC克隆的多色荧光原位杂交表征微小染色体重排的策略

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摘要

The identification of marker chromosomes in clinical and tumor cytogenetics by chromosome banding analysis can create problems. In this study, we present a strategy to define minute chromosomal rearrangements by multicolor fluorescence in situ hybridization (FISH) with whole chromosome painting probes derived from chromosome-specific DNA libraries and Alu-polymerase chain reaction (PCR) products of various region-specific yeast artificial chromosome (YAC) clones. To demonstrate the usefulness of this strategy for the characterization of chromosome rearrangements unidentifiable by banding techniques, an 8p+ marker chromosome with two extra bands present in the karyotype of a child with multiple anomalies, malformations, and severe mental retardation was investigated. A series of seven-color FISH experiments with sets of fluorochrome-labeled DNA library probes from flow-sorted chromosomes demonstrated that the additional segment on 8p+ was derived from chromosome 6. For a more detailed characterization of the marker chromosome, three-color FISH experiments with library probes specific to chromosomes 6 and 8 were performed in combination with newly established telomeric and subtelomeric YAC clones from 6q25, 6p23, and 8p23. These experiments demonstrated a trisomy 6pter6p22 and a monosomy 8pter8p23 in the patient. The present limitations for a broad application of this strategy and its possible improvements are discussed
机译:通过染色体谱带分析在临床和肿瘤细胞遗传学中鉴定标记染色体会产生问题。在这项研究中,我们提出了一种策略,该方法通过使用多色荧光原位杂交(FISH)与衍生自染色体特异性DNA库的全染色体绘画探针和各种区域特异性酵母的Alu聚合酶链反应(PCR)产品来定义微小的染色体重排人工染色体(YAC)克隆。为了证明该策略对通过条带技术无法识别的染色体重排表征的有用性,研究了一个8p +标记染色体,该染色体在多核型异常,畸形和严重智力低下的儿童的核型中存在两个额外的条带。用流分类的染色体上的荧光染料标记的DNA文库探针进行的一系列七色FISH实验表明,8p +的附加片段来自6号染色体。对于标记染色体的更详细表征,请进行三色FISH实验结合针对6和8号染色体的文库探针,与来自6q25、6p23和8p23的新建立的端粒和亚端粒YAC克隆结合使用。这些实验表明患者体内存在三体性6pter6p22和单体性8pter8p23。讨论了该策略广泛应用的当前局限性及其可能的改进

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