Ameziane Najim, May Patrick, Haitjema Anneke, van de Vrugt Henri J, van Rossum-Fikkert Sari E, Ristic Dejan, Williams Gareth J, Balk Jesper, Rockx Davy, Li Hong, Rooimans Martin A, Oostra Anneke B, Velleuer Eunike, Dietrich Ralf, Bleijerveld Onno B, Maarten Altelaar A F, Meijers-Heijboer Hanne, Joenje Hans, Glusman Gustavo, Roach Jared, Hood Leroy, Galas David, Wyman Claire, Balling Rudi, den Dunnen Johan, de Winter Johan P, Kanaar Roland, Gelinas Richard, Dorsman Josephine C
Department of Clinical Genetics, VU University Medical Center, Van der Boechorststraat 7, Amsterdam 1081 BT, The Netherlands.
Luxembourg Centre for Systems Biomedicine, House of Biomedicine, 7 Avenue des Hauts-Fourneaux, Esch/Alzette L-4362, Luxembourg.
Nat Commun. 2015 Dec 18;6:8829. doi: 10.1038/ncomms9829.
Fanconi anaemia (FA) is a hereditary disease featuring hypersensitivity to DNA cross-linker-induced chromosomal instability in association with developmental abnormalities, bone marrow failure and a strong predisposition to cancer. A total of 17 FA disease genes have been reported, all of which act in a recessive mode of inheritance. Here we report on a de novo g.41022153G>A; p.Ala293Thr (NM_002875) missense mutation in one allele of the homologous recombination DNA repair gene RAD51 in an FA-like patient. This heterozygous mutation causes a novel FA subtype, 'FA-R', which appears to be the first subtype of FA caused by a dominant-negative mutation. The patient, who features microcephaly and mental retardation, has reached adulthood without the typical bone marrow failure and paediatric cancers. Together with the recent reports on RAD51-associated congenital mirror movement disorders, our results point to an important role for RAD51-mediated homologous recombination in neurodevelopment, in addition to DNA repair and cancer susceptibility.
范可尼贫血(FA)是一种遗传性疾病,其特征为对DNA交联剂诱导的染色体不稳定高度敏感,并伴有发育异常、骨髓衰竭以及患癌倾向。目前已报道了17个FA疾病基因,所有这些基因均以隐性遗传模式发挥作用。在此,我们报告了一名疑似FA患者的同源重组DNA修复基因RAD51的一个等位基因中出现了一个新发的g.41022153G>A;p.Ala293Thr(NM_002875)错义突变。这种杂合突变导致了一种新的FA亚型“FA-R”,这似乎是由显性负性突变引起的FA的首个亚型。该患者表现为小头畸形和智力发育迟缓,已成年但未出现典型的骨髓衰竭和儿童癌症。结合最近关于RAD51相关先天性镜像运动障碍的报道,我们的结果表明,除了DNA修复和癌症易感性外,RAD51介导的同源重组在神经发育中也起着重要作用。