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首页> 外文期刊>European journal of human genetics: EJHG >The Fanconi anemia DNA damage repair pathway in the spotlight for germline predisposition to colorectal cancer
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The Fanconi anemia DNA damage repair pathway in the spotlight for germline predisposition to colorectal cancer

机译:范可尼贫血DNA损伤修复途径成为种系易患结直肠癌的焦点

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摘要

Colorectal cancer (CRC) is one of the most common neoplasms in the world. Fanconi anemia (FA) is a very rare genetic disease causing bone marrow failure, congenital growth abnormalities and cancer predisposition. The comprehensive FA DNA damage repair pathway requires the collaboration of 53 proteins and it is necessary to restore genome integrity by efficiently repairing damaged DNA. A link between FA genes in breast and ovarian cancer germline predisposition has been previously suggested. We selected 74 CRC patients from 40 unrelated Spanish families with strong CRC aggregation compatible with an autosomal dominant pattern of inheritance and without mutations in known hereditary CRC genes and performed germline DNA whole-exome sequencing with the aim of finding new candidate germline predisposition variants. After sequencing and data analysis, variant prioritization selected only those very rare alterations, producing a putative loss of function and located in genes with a role compatible with cancer. We detected an enrichment for variants in FA DNA damage repair pathway genes in our familial CRC cohort as 6 families carried heterozygous, rare, potentially pathogenic variants located in BRCA2/FANCD1, BRIP1/FANCJ, FANCC, FANCE and REV3L/POLZ. In conclusion, the FA DNA damage repair pathway may play an important role in the inherited predisposition to CRC.
机译:大肠癌(CRC)是世界上最常见的肿瘤之一。范可尼贫血(FA)是一种非常罕见的遗传性疾病,可引起骨髓衰竭,先天性生长异常和癌症易感性。全面的FA DNA损伤修复途径需要53种蛋白质的协同作用,并且有必要通过有效修复受损的DNA来恢复基因组完整性。先前已经提出了乳腺癌和卵巢癌种系易感性中FA基因之间的联系。我们从40个无关的西班牙家庭中选择了74名CRC患者,这些患者具有强大的CRC聚集能力,与常染色体显性遗传模式兼容,并且在已知的遗传CRC基因中没有突变,并进行了种系DNA全外显子测序,目的是寻找新的候选种系易感性变体。经过测序和数据分析后,变异优先级仅选择了那些非常罕见的改变,从而推定功能丧失,并位于与癌症相容的基因中。我们在家族性CRC队列中检测到FA DNA损伤修复途径基因变异的富集,因为6个家族携带的杂合子,罕见,潜在致病变异位于BRCA2 / FANCD1,BRIP1 / FANCJ,FANCC,FANCE和REV3L / POLZ中。总之,FA DNA损伤修复途径可能在CRC的遗传易感性中起重要作用。

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