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The zebrafish kidney mutant zeppelin reveals that brca2/fancd1 is essential for pronephros development

机译:斑马鱼肾脏突变体齐柏林飞艇揭示brca2 / fancd1对前肾发育至关重要

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摘要

The zebrafish kidney is conserved with other vertebrates, making it an excellent genetic model to study renal development. The kidney collects metabolic waste using a blood filter with specialized epithelial cells known as podocytes. Podocyte formation is poorly understood but relevant to many kidney diseases, as podocyte injury leads to progressive scarring and organ failure. zeppelin (zep) was isolated in a forward screen for kidney mutants and identified as a homozygous recessive lethal allele that causes reduced podocyte numbers, deficient filtration, and fluid imbalance. Interestingly, zep mutants had a larger interrenal gland, the telostean counterpart of the mammalian adrenal gland, which suggested a fate switch with the related podocyte lineage since cell proliferation and cell death were unchanged within the shared progenitor field from which these two identities arise. Cloning of zep by whole genome sequencing (WGS) identified a splicing mutation in breast cancer 2, early onset (brca2)/fancd1, which was confirmed by sequencing of individual fish. Several independent brca2 morpholinos (MOs) phenocopied zep, causing edema, reduced podocyte number, and increased interrenal cell number. Complementation analysis between zep and brca2ZM_00057434-/- zebrafish, which have an insertional mutation, revealed that the interrenal lineage was expanded. Importantly, overexpression of brca2 rescued podocyte formation in zep mutants, providing critical evidence that the brca2 lesion encoded by zep specifically disrupts the balance of nephrogenesis. Taken together, these data suggest for the first time that brca2/fancd1 is essential for vertebrate kidney ontogeny. Thus, our findings impart novel insights into the genetic components that impact renal development, and because BRCA2/FANCD1 mutations in humans cause Fanconi anemia and several common cancers, this work has identified a new model to further study brca2/fancd1 in disease.
机译:斑马鱼的肾脏与其他脊椎动物是保守的,使其成为研究肾脏发育的极佳遗传模型。肾脏使用带有专门上皮细胞(称为足细胞)的血液过滤器收集代谢废物。足细胞的形成了解甚少,但与许多肾脏疾病有关,因为足细胞损伤会导致进行性瘢痕形成和器官衰竭。齐柏林飞艇(zep)在向前筛选中针对肾脏突变体进行了分离,并被鉴定为纯合性隐性致死等位基因,其导致足细胞数量减少,过滤不足和体液失衡。有趣的是,zep突变体具有更大的肾上腺,即哺乳动物肾上腺的硬骨膜对应物,这提示与相关足细胞谱系的命运转换,因为在这两个身份共同出现的祖细胞内,细胞增殖和细胞死亡没有改变。通过全基因组测序(WGS)克隆zep在乳腺癌2中发现了一个剪接突变,即早发(brca2)/ fancd1,该突变已通过对单个鱼进行测序得到了证实。几个独立的brca2吗啉代(MOs)表型复制的zep,引起水肿,减少的足细胞数量和增加的肾间细胞数量。 zep和具有插入突变的brca2 ZM_00057434 -/-斑马鱼之间的互补分析表明,肾间谱系已扩大。重要的是,brca2的过表达挽救了zep突变体中足细胞的形成,提供了关键证据证明zep编码的brca2病变特别破坏了肾生成的平衡。综上所述,这些数据首次表明brca2 / fancd1对脊椎动物肾脏发生是必不可少的。因此,我们的发现为影响肾脏发育的遗传成分提供了新颖的见解,并且由于人类中的 BRCA2 / FANCD1 突变会引起范可尼贫血和几种常见的癌症,因此这项工作为进一步研究 em> brca2 / fancd1 在疾病中。

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