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首页> 外文期刊>Mechanisms of Development >Zebrafish otolith biomineralization requires polyketide synthase
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Zebrafish otolith biomineralization requires polyketide synthase

机译:斑马鱼右侧生物碳化铝需要聚酮合成酶

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摘要

Deflecting biomineralized crystals attached to vestibular hair cells are necessary for maintaining balance. Zebrafish (Danio rerio) are useful organisms to study these biomineralized crystals called otoliths, as many required genes are homologous to human otoconial development. We sought to identify and characterize the causative gene in a trio of homozygous recessive mutants, no content (nco) and corkscrew (csr), and vanished (vns), which fail to develop otoliths during early ear development. We show that nco, csr, and vns have potentially deleterious mutations in polyketide synthase (pks1), a multi-modular protein that has been previously implicated in biomineralization events in chordates and echinoderms. We found that Otoconin-90 (Oc90) expression within the otocyst is diffuse in nco and csr; therefore, it is not sufficient for otolith biomineralization in zebrafish. Similarly, normal localization of Otogelin, a protein required for otolith tethering in the otolithic membrane, is not sufficient for Oc90 attachment. Furthermore, eNOS signaling and Endothelin-1 signaling were the most up-and down-regulated pathways during otolith agenesis in nco, respectively. Our results demonstrate distinct processes for otolith nucleation and biomineralization in vertebrates and will be a starting point for models that are independent of Oc90-mediated seeding. This study will serve as a basis for investigating the role of eNOS signaling and Endothelin-1 signaling during otolith formation.
机译:偏转附着在前庭毛细胞的生物丙粒化晶体是维持平衡所必需的。斑马鱼(Danio Rerio)是研究这些称为右岩晶体的有用的生物,因为许多所需基因对人类胞外发育是同源的。我们试图识别并表征在纯合隐性突变体的三重奏中的致病基因,没有含量(NCO)和开瓶器(CSR),并且消失(VNS),这在早期耳朵发育过程中未能开发偏乐力。我们表明NCO,CSR和VNS在聚酮合成酶(PKS1)中具有潜在的有害突变,一种多模块化蛋白质,所述多模块化蛋白质以前涉及脊索酸盐和棘皮胚层的生物抗体事件。我们发现OTOCYST内的otoconin-90(OC90)表达在NCO和CSR中弥漫;因此,在斑马鱼中的右侧偏离生物碳化术是不够的。类似地,Otogelin的正常定位,侧渗膜中右侧侧右卵石所需的蛋白质,对于OC90附着不足。此外,ENOS信号和内皮素-1信号传导分别是在NCO中的右侧血液验证期间最上调的途径。我们的结果表明,耳骨核心和生物抗体在脊椎动物中的不同方法,并将是独立于OC90介导的播种的模型的起点。本研究将作为研究欧替尔形成期间eNOS信号传导和内皮素-1信号传导的作用的基础。

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