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PNAS Plus: Loss of the homologous recombination gene rad51 leads to Fanconi anemia-like symptoms in zebrafish

机译:PNAS Plus:同源重组基因rad51的丢失导致斑马鱼的范科尼贫血样症状

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摘要

RAD51 is an indispensable homologous recombination protein, necessary for strand invasion and crossing over. It has recently been designated as a Fanconi anemia (FA) gene, following the discovery of two patients carrying dominant-negative mutations. FA is a hereditary DNA-repair disorder characterized by various congenital abnormalities, progressive bone marrow failure, and cancer predisposition. In this report, we describe a viable vertebrate model of RAD51 loss. Zebrafish rad51 loss-of-function mutants developed key features of FA, including hypocellular kidney marrow, sensitivity to cross-linking agents, and decreased size. We show that some of these symptoms stem from both decreased proliferation and increased apoptosis of embryonic hematopoietic stem and progenitor cells. Comutation of p53 was able to rescue the hematopoietic defects seen in the single mutants, but led to tumor development. We further demonstrate that prolonged inflammatory stress can exacerbate the hematological impairment, leading to an additional decrease in kidney marrow cell numbers. These findings strengthen the assignment of RAD51 as a Fanconi gene and provide more evidence for the notion that aberrant p53 signaling during embryogenesis leads to the hematological defects seen later in life in FA. Further research on this zebrafish FA model will lead to a deeper understanding of the molecular basis of bone marrow failure in FA and the cellular role of RAD51.
机译:RAD51是必不可少的同源重组蛋白,对于链入侵和交叉交换是必需的。在发现两名携带显性负突变的患者后,它最近被指定为Fanconi贫血(FA)基因。 FA是一种遗传性DNA修复疾病,其特征是各种先天性异常,进行性骨髓衰竭和癌症易感性。在本报告中,我们描述了RAD51丧失的可行脊椎动物模型。斑马鱼rad51功能丧失的突变体发展出FA的关键特征,包括低细胞肾,对交联剂的敏感性和尺寸的减小。我们表明,这些症状中的某些来源于胚胎造血干细胞和祖细胞的增殖减少和凋亡增加。 p53的突变能够挽救单个突变体中看到的造血缺陷,但导致肿瘤的发展。我们进一步证明,长时间的炎性应激会加剧血液学损害,导致肾脏骨髓细胞数量进一步减少。这些发现加强了RAD51作为Fanconi基因的地位,并为胚胎发生过程中异常的p53信号转导导致血液学缺陷的观念提供了更多证据。对该斑马鱼FA模型的进一步研究将使人们对FA中骨髓衰竭的分子基础以及RAD51的细胞作用有更深入的了解。

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