Virts Elizabeth L, Jankowska Anna, Mackay Craig, Glaas Marcel F, Wiek Constanze, Kelich Stephanie L, Lottmann Nadine, Kennedy Felicia M, Marchal Christophe, Lehnert Erik, Scharf Rüdiger E, Dufour Carlo, Lanciotti Marina, Farruggia Piero, Santoro Alessandra, Savasan Süreyya, Scheckenbach Kathrin, Schipper Jörg, Wagenmann Martin, Lewis Todd, Leffak Michael, Farlow Janice L, Foroud Tatiana M, Honisch Ellen, Niederacher Dieter, Chakraborty Sujata C, Vance Gail H, Pruss Dmitry, Timms Kirsten M, Lanchbury Jerry S, Alpi Arno F, Hanenberg Helmut
Department of Pediatrics and.
Department of MRC Protein Phosphorylation and Ubiquitylation Unit, College of Life Sciences, University of Dundee, Dundee, UK.
Hum Mol Genet. 2015 Sep 15;24(18):5093-108. doi: 10.1093/hmg/ddv227. Epub 2015 Jun 17.
Fanconi anemia (FA) is a rare inherited disorder clinically characterized by congenital malformations, progressive bone marrow failure and cancer susceptibility. At the cellular level, FA is associated with hypersensitivity to DNA-crosslinking genotoxins. Eight of 17 known FA genes assemble the FA E3 ligase complex, which catalyzes monoubiquitination of FANCD2 and is essential for replicative DNA crosslink repair. Here, we identify the first FA patient with biallelic germline mutations in the ubiquitin E2 conjugase UBE2T. Both mutations were aluY-mediated: a paternal deletion and maternal duplication of exons 2-6. These loss-of-function mutations in UBE2T induced a cellular phenotype similar to biallelic defects in early FA genes with the absence of FANCD2 monoubiquitination. The maternal duplication produced a mutant mRNA that could encode a functional protein but was degraded by nonsense-mediated mRNA decay. In the patient's hematopoietic stem cells, the maternal allele with the duplication of exons 2-6 spontaneously reverted to a wild-type allele by monoallelic recombination at the duplicated aluY repeat, thereby preventing bone marrow failure. Analysis of germline DNA of 814 normal individuals and 850 breast cancer patients for deletion or duplication of UBE2T exons 2-6 identified the deletion in only two controls, suggesting aluY-mediated recombinations within the UBE2T locus are rare and not associated with an increased breast cancer risk. Finally, a loss-of-function germline mutation in UBE2T was detected in a high-risk breast cancer patient with wild-type BRCA1/2. Cumulatively, we identified UBE2T as a bona fide FA gene (FANCT) that also may be a rare cancer susceptibility gene.
范可尼贫血(FA)是一种罕见的遗传性疾病,临床特征为先天性畸形、进行性骨髓衰竭和癌症易感性。在细胞水平上,FA与对DNA交联基因毒素的超敏反应有关。已知的17个FA基因中有8个组装成FA E3连接酶复合物,该复合物催化FANCD2的单泛素化,对复制性DNA交联修复至关重要。在此,我们鉴定出首例泛素E2共轭酶UBE2T存在双等位基因种系突变的FA患者。这两个突变均由aluY介导:父亲的外显子2 - 6缺失,母亲的外显子2 - 6重复。UBE2T中的这些功能丧失突变诱导了一种细胞表型,类似于早期FA基因的双等位基因缺陷,且不存在FANCD2单泛素化。母亲的重复产生了一种突变mRNA,其可编码一种功能性蛋白质,但被无义介导的mRNA降解所降解。在患者的造血干细胞中,外显子2 - 6重复的母亲等位基因通过在重复的aluY重复序列处的单等位基因重组自发地回复为野生型等位基因,从而预防了骨髓衰竭。对814名正常个体和850名乳腺癌患者的种系DNA进行UBE2T外显子2 - 6缺失或重复分析,仅在两名对照中发现了缺失,这表明UBE2T基因座内由aluY介导的重组很少见,且与乳腺癌风险增加无关。最后,在一名BRCA1/2野生型的高危乳腺癌患者中检测到了UBE2T的功能丧失种系突变。总体而言,我们确定UBE2T是一个真正的FA基因(FANCT),也可能是一种罕见的癌症易感基因。