首页> 外文期刊>European journal of human genetics: EJHG >Analysis of cilia dysfunction phenotypes in zebrafish embryos depleted of Origin recognition complex factors
【24h】

Analysis of cilia dysfunction phenotypes in zebrafish embryos depleted of Origin recognition complex factors

机译:斑马鱼胚胎纤毛功能障碍表型分析原产地识别复杂因素的耗尽

获取原文
获取原文并翻译 | 示例
           

摘要

Meier-Gorlin syndrome (MGS) is a rare, congenital primordial microcephalic dwarfism disorder. MGS is caused by genetic variants of components of the origin recognition complex (ORC) consisting of ORC1-6 and the pre-replication complex, which together enable origin firing and hence genome replication. In addition, ORC1 has previously been shown to play a role in ciliogenesis. Here, we extend this work and investigate the function of ORC1 and two other members of the complex on cilia at an organismal level. Knockdown experiments in zebrafish confirmed the impact of ORC1 on cilia. ORC1-deficiency confers defects anticipated to arise from impaired cilia function such as formation of oedema, kidney cysts, curved bodies and left-right asymmetry defects. We found ORC1 furthermore required for cilium formation in zebrafish and demonstrate that ciliopathy phenotypes in ORC1-depleted zebrafish could not be rescued by reconstitution with ORC1 bearing a genetic variant previously identified in MGS patients. Loss-of-function of Orc4 and Orc6, respectively, conferred similar ciliopathy phenotypes and cilium shortening in zebrafish, suggesting that several, if not all, components of the ORC regulate ciliogenesis downstream to or in addition to their canonical function in replication initiation. This study presents the first in vivo evidence of an influence of the MGS genes of the ORC family on cilia, and consolidates the possibility that cilia dysfunction could contribute to the clinical manifestation of ORC-deficient MGS.
机译:Meier-gorlin综合征(MGS)是一种罕见的先天性基因微心性矮化障碍。 MGS是由由ORC1-6组成的原始识别复合物(ORC)组分的遗传变异引起的,其共复制复合体,它们一起使起源烧制并因此进行了基因组复制。此外,orc1之前已被证明是在纤氯中发挥作用。在这里,我们扩展了这项工作,并调查ORC1和两位在纤毛的综合体中的其他成员在有机体水平。斑马鱼的敲低实验证实了ORC1对纤毛的影响。 ORC1缺乏赋予预期的缺陷来自纤毛的障碍,例如水肿,肾囊肿,弯曲体和左不对称缺陷的形成。我们发现ORC1此外,斑马鱼中的辣椒形成需要,并证明ORC1耗尽的斑马鱼中的皮利病表型不能通过官方在MGS患者中鉴定的遗传变异来拯救。 ORC4和ORC6的功能丧失分别赋予斑马鱼的相似性的纤毛病表和纤毛酸缺钙,表明兽人的几个,如果不是全部,则兽人的组分调节下游或除了复制启动中的规范功能之外。本研究提出了第一个体内证据表明兽人家族对纤毛的MGS基因的影响,并巩固了纤毛功能障碍可能导致缺乏缺乏MGS的临床表现的可能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号