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首页> 外文期刊>American Journal of Physiology >Nephrocystin-3 is required for ciliary function in zebrafish embryos.
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Nephrocystin-3 is required for ciliary function in zebrafish embryos.

机译:在斑马鱼胚胎中需要睫状体术函数。

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摘要

Nephronophthisis (NPHP) is the most frequent genetic cause of end-stage renal failure in the first three decades of life. It is characterized primarily by renal cysts with extrarenal involvements of the eye and brain. Ten recessive genes responsible for NPHP have been identified by positional cloning. This discovery supported a unifying theory of renal cystic disease, which states that all proteins mutated in cystic kidney diseases of human, mice, or zebrafish are expressed in primary cilia of renal epithelial cells. Mutations in nephrocystin-3 (NPHP3) are the cause of human nephronophthisis type 3 and polycystic kidney disease (pcy) mouse mutants. To study the functional role of NPHP3 in normal embryonic development and in the pathogenesis of cystic kidney disease, we characterized the zebrafish ortholog nphp3 by morpholino oligo (MO)-mediated knockdown. When nphp3 function was suppressed by either of the two MOs blocking the translation of the protein or the splicing of mRNA, zebrafish embryos displayed hydrocephalus and pronephric cysts. Knockdown of nphp3 also led to situs inversus phenotypes due to defective cilia at Kupffer's vesicle. We showed that nphp3 genetically interacts with nphp2/inversin and human NPHP3 localizes to primary cilia in Madin-Darby canine kidney cells. Like nphp2/inversin, nphp3 knockdown affected morphogenic cell movement during gastrulation, suggesting nphp3 is essential to regulate convergent extension. Thus nphp3, cooperating with nphp2/inversin, plays an essential role related to ciliary function, and the knockdown provides an animal model that may be used for studies of the pathogenesis and therapy for this disease.
机译:肾会阴性(NPHP)是前三十年的最常见的肾功能衰竭最常见的遗传原因。它主要是由肾囊肿的特征,具有眼睛和大脑的肠道凋亡。通过定位克隆鉴定了负责NPHP的十种隐性基因。该发现支持肾囊性疾病的统一理论,这些疾病使所有在人,小鼠或斑马鱼的囊性肾脏疾病中突变的所有蛋白质都在肾上皮细胞的原发性纤毛中表达。 Nephrocystin-3(NPHP3)的突变是人类肾球菌类型3和多囊肾疾病(PCY)小鼠突变体的原因。为了研究NPHP3在正常胚胎发育和囊性肾脏疾病发病机制中的功能作用,通过吗啉代寡核苷酸(MO)介导的敲低。当通过两个MOS中的任何一个抑制NPHP3功能,阻塞蛋白质的翻译或mRNA的剪接,斑马鱼胚胎显示脑积水和静脉囊肿。 NPHP3的敲低也导致SITUS Inverse表型由于Kupffer的囊泡有缺陷。我们展示NPHP3与NPHP2 / verversin和人NPHP3定位于Madin-Darby犬肾细胞中的原发性纤毛的NPHP3。与NPHP2 / vidersin一样,NPHP3敲低在腐殖过程中影响的形态发生细胞运动,表明NPHP3对于调节会聚延伸至关重要。因此,与NPHP2 / verversin合作的NPHP3发挥了与睫状体功能相关的重要作用,并且敲低提供了一种动物模型,可用于研究这种疾病的发病机制和治疗。

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