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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >The instability within: problems in current analyses of microsatellite instability.
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The instability within: problems in current analyses of microsatellite instability.

机译:内部不稳定性:当前微卫星不稳定性分析中的问题。

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摘要

Microsatellite instability is regarded as one of the phenotypes of defective DNA mismatch repair and, consequently, as a marker of high risk for cancer. Despite numerous studies, the reported rates for positive microsatellite instability differ widely in each human malignancy. These discrepancies may relate to problems in the methods used. To establish a methodology for an accurate microsatellite instability analysis, technical requirements for a precise assay and biological conditions required for positive microsatellite instability were discussed. First, to describe microsatellite changes in detail, a sensitive detection system with linear detection characteristics and electrophoresis with standardised migration and minimised migration errors are considered to be necessary. Therefore, systems using fluorescent labelling and laser scanning are recommended. For reproducible polymerase chain reactions, it is essential to control the terminal deoxynucleotidyl transferase activity in Taq polymerase. Second, as a biological condition for positive microsatellite instability, feasible selection and combination of microsatellite markers, mutations in specific DNA mismatch repair genes and existence of monoclonal populations enriched sufficiently in a sample are essential. Finally, one possible diagnostic criterion for positive microsatellite instability is proposed, that is the existence of one of the patterns shown in the panel (see Fig. 6) at one or more loci in a set of more than five microsatellite markers.
机译:微卫星不稳定性被认为是有缺陷的DNA错配修复的表型之一,因此被认为是癌症高风险的标志。尽管进行了大量研究,但在每个人类恶性肿瘤中,微卫星阳性不稳定性的报道率差异很大。这些差异可能与所用方法中的问题有关。为了建立精确的微卫星不稳定性分析方法,讨论了精确测定的技术要求和阳性微卫星不稳定性所需的生物学条件。首先,为了详细描述微卫星的变化,需要具有线性检测特性的灵敏检测系统以及具有标准化迁移和最小化迁移误差的电泳。因此,建议使用荧光标记和激光扫描的系统。对于可再生的聚合酶链反应,必须控制Taq聚合酶中的末端脱氧核苷酸转移酶活性。第二,作为阳性微卫星不稳定性的生物学条件,微卫星标记的可行选择和组合,特定DNA错配修复基因的突变以及样品中充分富集的单克隆种群的存在至关重要。最后,提出了一种可能的阳性微卫星不稳定性诊断标准,即在一组超过五个的微卫星标记中,一个或多个基因座处存在面板中显示的模式之一(参见图6)。

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