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Mutation screening of mismatch repair gene Mlh3 in familial esophageal cancer.

机译:家族性食管癌错配修复基因Mlh3的突变筛选。

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AIM: To shed light on the possible role of mismatch repair gene Mlh3 in familial esophageal cancer (FEC). METHODS: A total of 66 members from 10 families suggestive of a genetic predisposition to hereditary esophageal cancer were screened for germline mutations in Mlh3 with denaturing high performance liquid chromatography (DHPLC), a newly developed method of comparative sequencing based on heteroduplex detection. For all samples exhibiting abnormal DHPLC profiles, sequence changes were evaluated by cycle sequencing. For any mutation in family members, we conducted a segregation study to compare its prevalence in sporadic esophageal cancer patients and normal controls. RESULTS: Exons of Mlh3 in all samples were successfully examined. Overall, 4 missense mutations and 3 polymorphisms were identified in 4 families. Mlh3 missense mutations in families 9 and 10 might be pathogenic, but had a reduced penetrance. While in families 1 and 7, there was no sufficient evidence supporting the monogenic explanations of esophageal cancers in families. The mutations were found in 33% of high-risk families and 50% of low-risk families. CONCLUSION: Mlh3 is a high risk gene with a reduced penetrance in some families. However, it acts as a low risk gene for esophageal cancer in most families. Mutations of Mlh3 may work together with other genes in an accumulated manner and result in an increased risk of esophageal tumor. DHPLC is a robust and sensitive technique for screening gene mutations.
机译:目的:阐明错配修复基因Mlh3在家族性食管癌(FEC)中的可能作用。方法:通过变性高效液相色谱法(DHPLC)筛选了Mlh3中种系突变的10个家族的66个成员,这些成员暗示遗传性食管癌的遗传易感性,这是一种新开发的基于异源双链检测的比较测序方法。对于所有表现出异常DHPLC谱图的样品,通过循环测序评估序列变化。对于家庭成员中的任何突变,我们进行了一项隔离研究,以比较其在散发性食道癌患者和正常对照组中的患病率。结果:所有样品中Mlh3的外显子均被成功检测。总体而言,在4个家族中鉴定出4个错义突变和3个多态性。家庭9和10中的Mlh3错义突变可能是致病的,但外显率降低。尽管在家庭1和7中,没有足够的证据支持家庭中食管癌的单基因解释。在33%的高危家庭和50%的低危家庭中发现了这种突变。结论:Mlh3是高风险基因,在某些家庭中外显率降低。但是,它在大多数家庭中是食道癌的低风险基因。 Mlh3的突变可能以累积的方式与其他基因一起起作用,并导致食道肿瘤的风险增加。 DHPLC是用于筛选基因突变的强大且灵敏的技术。

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