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首页> 外文期刊>Developmental biology >Characterization of the medaka (Oryzias latipes) primary ciliary dyskinesia mutant, jaodori: Redundant and distinct roles of dynein axonemal intermediate chain 2 (dnai2) in motile cilia.
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Characterization of the medaka (Oryzias latipes) primary ciliary dyskinesia mutant, jaodori: Redundant and distinct roles of dynein axonemal intermediate chain 2 (dnai2) in motile cilia.

机译:medaka(Oryzias latipes)原发性睫状运动障碍突变体jaodori的特征:动力性纤毛中动力蛋白轴突中间链2(dnai2)的冗余和独特作用。

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摘要

Cilia and flagella are highly conserved organelles that have diverse motility and sensory functions. Motility defects in cilia and flagella result in primary ciliary dyskinesia (PCD). We isolated a novel medaka PCD mutant, jaodori (joi). Positional cloning showed that axonemal dynein intermediate chain 2 (dnai2) is responsible for joi. The joi mutation was caused by genomic insertion of the medaka transposon, Tol1. In the joi mutant, cilia in Kupffer's vesicle (KV), an organ functionally equivalent to the mouse node in terms of left-right (LR) specification, are generated but their motility is disrupted, resulting in a LR defect. Ultrastructural analysis revealed severe reduction in the outer dynein arms in KV cilia of joi mutants. We also found the other dnai2 gene in the medaka genome. These two dnai2 genes function either redundantly or distinctly in tissues possessing motile cilia.
机译:纤毛和鞭毛是高度保守的细胞器,具有多种运动和感觉功能。纤毛和鞭毛的运动缺陷导致原发性睫状运动障碍(PCD)。我们分离了一个新颖的medaka PCD突变体jaodori(joi)。位置克隆表明,轴索动力蛋白中间链2(dnai2)负责joi。 joi突变是由Medaka转座子Tol1的基因组插入引起的。在joi突变体中,产生了库普弗囊泡(KV)中的纤毛,其功能在左-右(LR)规格上等同于小鼠节点,但其运动性受到破坏,从而导致LR缺陷。超微结构分析显示joi突变体的KV纤毛中的外部动力蛋白严重减少。我们还在medaka基因组中发现了另一个dnai2基因。这两个dnai2基因在拥有活动性纤毛的组织中具有多余或明显的功能。

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