Knies Kerstin, Inano Shojiro, Ramírez María J, Ishiai Masamichi, Surrallés Jordi, Takata Minoru, Schindler Detlev
Department of Human Genetics, Biozentrum, University of Wurzburg, Wurzburg, Germany.
Laboratory of DNA Damage Signaling, Department of Late Effects Studies, Radiation Biology Center, Kyoto University, Kyoto, Japan.
J Clin Invest. 2017 Aug 1;127(8):3013-3027. doi: 10.1172/JCI92069. Epub 2017 Jul 10.
The WD40-containing E3 ubiquitin ligase RFWD3 has been recently linked to the repair of DNA damage by homologous recombination (HR). Here we have shown that an RFWD3 mutation within the WD40 domain is connected to the genetic disease Fanconi anemia (FA). An individual presented with congenital abnormalities characteristic of FA. Cells from the patient carrying the compound heterozygous mutations c.205_206dupCC and c.1916T>A in RFWD3 showed increased sensitivity to DNA interstrand cross-linking agents in terms of increased chromosomal breakage, reduced survival, and cell cycle arrest in G2 phase. The cellular phenotype was mirrored in genetically engineered human and avian cells by inactivation of RFWD3 or introduction of the patient-derived missense mutation, and the phenotype was rescued by expression of wild-type RFWD3 protein. HR was disrupted in RFWD3-mutant cells as a result of impaired relocation of mutant RFWD3 to chromatin and defective physical interaction with replication protein A. Rfwd3 knockout mice appear to have increased embryonic lethality, are subfertile, show ovarian and testicular atrophy, and have a reduced lifespan resembling that of other FA mouse models. Although RFWD3 mutations have thus far been detected in a single child with FA, we propose RFWD3 as an FA gene, FANCW, supported by cellular paradigm systems and an animal model.
含WD40的E3泛素连接酶RFWD3最近被认为与通过同源重组(HR)修复DNA损伤有关。在此我们表明,WD40结构域内的RFWD3突变与遗传性疾病范可尼贫血(FA)相关。一名个体表现出FA的先天性异常特征。携带RFWD3复合杂合突变c.205_206dupCC和c.1916T>A的患者细胞在染色体断裂增加、存活率降低以及G2期细胞周期停滞方面,对DNA链间交联剂表现出更高的敏感性。通过使RFWD3失活或引入患者来源的错义突变,在基因工程改造的人和禽细胞中反映出了细胞表型,并且通过野生型RFWD3蛋白的表达挽救了该表型。由于突变型RFWD3重新定位到染色质受损以及与复制蛋白A的物理相互作用存在缺陷,HR在RFWD3突变细胞中受到破坏。Rfwd3基因敲除小鼠似乎胚胎致死率增加、生育力低下、出现卵巢和睾丸萎缩,并且寿命缩短,类似于其他FA小鼠模型。尽管到目前为止仅在一名FA患儿中检测到RFWD3突变,但我们在细胞范例系统和动物模型的支持下,将RFWD3提议为一个FA基因,即FANCW。