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罕见遗传变异与癌症风险。

Rare genetic variants and the risk of cancer.

机构信息

Cancer and Immunogenetics Laboratory, Weatherall Institute ofMolecular Medicine, John Radcliffe Hospital, Oxford, United Kingdom.

出版信息

Curr Opin Genet Dev. 2010 Jun;20(3):262-7. doi: 10.1016/j.gde.2010.04.016.

Abstract

There are good reasons to expect that common genetic variants do not explain all of the inherited risk of the common cancers, not least of these being the relatively low proportion of familial relative risk that common cancer SNPs currently explain. One promising source of the unexplained risk is rare, low-penetrance genetic variants, a class that ranges from low-frequency polymorphisms (allele frequency < 5%) through subpolymorphic variants (frequency 0.1-1.0%) to very low frequency or 'private' variants with frequencies of 0.1% or less. Examples of rare cancer variants include breast cancer susceptibility loci CHEK2, BRIP1 and PALB2. There are considerable challenges associated with the discovery and testing of rare predisposition alleles, many of which are illustrated by the issues associated with variants of unknown significance in the Mendelian cancer predisposition genes. However, whilst cost constraints remain, the technological barriers to rare variant discovery and large-scale genotyping no longer exist. If each individual carries many disease-causing rare variants, the so-called missing heritability of cancer might largely be explained. Whether or not rare variants do end up filling the heritability gap, it is imperative to look for them along side common variants.

摘要

有充分的理由预计,常见的遗传变异并不能解释常见癌症的所有遗传风险,其中最主要的原因是,常见癌症 SNP 目前解释的家族相对风险比例相对较低。未被解释的风险的一个有希望的来源是罕见的、低外显率的遗传变异,这类变异从低频多态性(等位基因频率<5%)到亚多态性变异(频率 0.1-1.0%),再到非常低频或“私有”的频率为 0.1%或更低的变异。罕见癌症变异的例子包括乳腺癌易感性基因 CHEK2、BRIP1 和 PALB2。罕见易感性等位基因的发现和检测存在相当大的挑战,其中许多挑战都与孟德尔癌症易感性基因中意义不明的变异相关联。然而,尽管成本限制仍然存在,但发现罕见变异和大规模基因分型的技术障碍已经不复存在。如果每个人都携带许多致病的罕见变异,那么所谓的癌症遗传率缺失可能在很大程度上得到解释。无论罕见变异是否最终填补了遗传率差距,在寻找常见变异的同时,寻找它们也是至关重要的。

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