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首页> 外文期刊>Human Molecular Genetics >Nephrocystin-4 is required for pronephric duct-dependent cloaca formation in zebrafish.
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Nephrocystin-4 is required for pronephric duct-dependent cloaca formation in zebrafish.

机译:Nephrocystin-4是斑马鱼肾前管依赖性泄殖腔形成所必需的。

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摘要

NPHP4 mutations cause nephronophthisis, an autosomal recessive cystic kidney disease associated with renal fibrosis and kidney failure. The NPHP4 gene product nephrocystin-4 interacts with other nephrocystins, cytoskeletal and ciliary proteins; however, the molecular and cellular functions of nephrocystin-4 have remained elusive. Here we demonstrate that nephrocystin-4 is required for normal cloaca formation during zebrafish embryogenesis. Time-lapse imaging of the developing zebrafish pronephros revealed that tubular epithelial cells at the distal pronephros actively migrate between the yolk sac extension and the blood island towards the ventral fin fold to join the proctodeum and to form the cloaca. Nphp4-deficient pronephric duct cells failed to connect with their ectodermal counterparts, and instead formed a vesicle at the obstructed end of the pronephric duct. Nephrocystin-4 interacts with nephrocystin-1 and Par6. Depletion of zebrafish NPHP1 (nphp1) increased the incidence of cyst formation and randomization of the normal body axis, but did not augment cloaca malformation in nphp4-deficient zebrafish embryos. However, simultaneous depletion of zebrafish Par6 (pard6) aggravated cloaca formation defects in nphp4-depleted embryos, suggesting that nphp4 orchestrates directed cell migration and cloaca formation through interaction with the Par protein complex.
机译:NPHP4突变会导致肾炎,这是一种常染色体隐性囊性肾脏疾病,与肾脏纤维化和肾功能衰竭相关。 NPHP4基因产物nephrocystin-4与其他nephrocystins,细胞骨架和睫状蛋白相互作用。但是,nephrocystin-4的分子和细胞功能仍然难以捉摸。在这里,我们证明nephrocystin-4是斑马鱼胚胎发生过程中正常泄殖腔形成所必需的。发育中的斑马鱼前肾的延时成像显示,远端前肾的肾小管上皮细胞在卵黄囊延伸和血岛之间向腹鳍折叠活跃迁移,从而进入直肠并形成泄殖腔。缺乏Nphp4的前肾导管细胞无法与其外胚层对应细胞连接,而是在前肾导管阻塞的末端形成囊泡。 Nephrocystin-4与nephrocystin-1和Par6相互作用。斑马鱼NPHP1(nphp1)的耗竭增加了囊肿形成和正常机体轴随机化的发生率,但没有增加nphp4缺陷的斑马鱼胚胎中的泄殖腔畸形。但是,斑马鱼Par6(pard6)的同时耗尽加剧了nphp4耗尽的胚胎中泄殖腔形成的缺陷,这表明nphp4通过与Par蛋白复合物的相互作用来协调细胞迁移和泄殖腔的形成。

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