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根据家族起源的斯洛文尼亚 BRCA1/2 家族的地理分布:对遗传筛查的影响。

Geographical distribution of Slovenian BRCA1/2 families according to family origin: implications for genetic screening.

机构信息

Cancer Genetic Clinic.

出版信息

Clin Genet. 2014 Jan;85(1):59-63. doi: 10.1111/cge.12119. Epub 2013 Mar 11.

Abstract

Knowledge of the geographical distribution of highly recurrent mutations may be useful for efficient screening in cancer families. Since the cloning of the BRCA1/2 genes, it is known that the wide spectrum of deleterious mutations shows high ethnic and geographic heterogeneity. In this study, we have tested probands from 582 breast/ovarian cancer families and positioned all 156 BRCA1/2 families on the map according to the family origin. We observed that high-risk families with the same recurrent mutation present a typical geographical distribution and that different recurrent mutations may show different distribution patterns. We then evaluated the genetic screening implications of this heterogeneous prevalence of the most recurrent mutations found [300T>G(c.181T>G), 1806C>T(c.1687C>T), 969ins7(c.844_850dupTCATTAC), 5382insC(c.5266dupC), 235G>A(c.116G>A) in BRCA1 and IVS16-2A>G(c.7806-2A>G) in BRCA2]. On the basis of these results, specific testing procedures for new incident cases may be offered according to their family origins and, according to the information regarding clusters revealed in this study, the individuals (especially those at low risk), originating from regions with clusters, might be screened preferentially for cluster mutations and analysis may be simplified according to the family origin.

摘要

了解高度复发突变的地理分布对于癌症家族的有效筛查可能是有用的。自 BRCA1/2 基因克隆以来,人们已经知道广泛的有害突变具有很高的种族和地理异质性。在这项研究中,我们测试了来自 582 个乳腺癌/卵巢癌家族的先证者,并根据家族起源将所有 156 个 BRCA1/2 家族定位在地图上。我们观察到具有相同复发突变的高危家族呈现出典型的地理分布,并且不同的复发突变可能表现出不同的分布模式。然后,我们评估了这种最常见突变的遗传筛查意义[BRCA1 中的 300T>G(c.181T>G)、1806C>T(c.1687C>T)、969ins7(c.844_850dupTCATTAC)、5382insC(c.5266dupC)、235G>A(c.116G>A)和 BRCA2 中的 IVS16-2A>G(c.7806-2A>G)]。基于这些结果,可以根据家族起源为新的发病病例提供特定的测试程序,并且根据本研究中揭示的聚类信息,来自具有聚类的地区的个体(特别是那些低风险的个体)可能会优先进行聚类突变筛查,并且可以根据家族起源简化分析。

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