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Neph3 与斑马鱼肾小球和神经发育的调节有关。

Neph3 associates with regulation of glomerular and neural development in zebrafish.

机构信息

Department of Bacteriology and Immunology, Haartman Institute, University of Helsinki, Finland.

出版信息

Differentiation. 2012 Jan;83(1):38-46. doi: 10.1016/j.diff.2011.08.007. Epub 2011 Oct 6.

Abstract

Neph3 (filtrin) is a membrane protein expressed in the glomerular epithelial cells (podocytes), but its role in the glomerulus is still largely unknown. To characterize the function of Neph3 in the glomerulus, we employed the zebrafish as a model system. Here we show that the expression of neph3 in pronephros starts before the onset of nephrin and podocin expression, peaks when the nephron primordium differentiates into glomerulus and tubulus, and is then downregulated upon glomerular maturation. By histology, we found that neph3 is specifically expressed in pronephric podocytes at 36hpf. Furthermore, disruption of neph3 expression by antisense morpholino oligonucleotides results in distorted body curvature and transient pericardial edema, the latter likely reflecting perturbation of glomerular osmoregulatory function. Histological analysis of neph3 morphants reveals altered glomerular morphology and dilated pronephric tubules. The phenotype of neph3 morphants, curved body and pericardial edema, is rescued by wild-type zebrafish neph3 mRNA. In addition to glomerulus, neph3 is highly expressed in the developing brain and specific regions of mature midbrain and hindbrain. In line with this, neph3 morphants show aberrant brain morphology. Collectively, the expression of neph3 in glomerulus and brain together with the morphant phenotype imply that neph3 is a pleiotropic gene active during distinct stages of tissue differentiation and associates directly in the regulation of both glomerular and neural development.

摘要

Neph3(filtrin)是一种在肾小球上皮细胞(足细胞)中表达的膜蛋白,但它在肾小球中的作用仍知之甚少。为了研究 Neph3 在肾小球中的功能,我们以斑马鱼为模型系统。结果显示,neph3 在原肾中的表达在nephrin 和 podocin 表达之前开始,在肾单位原基分化为肾小球和肾小管时达到峰值,随后在肾小球成熟时下调。组织学分析显示,neph3 在 36hpf 时特异性表达于原肾的足细胞中。此外,用反义 morpholino 寡核苷酸破坏 neph3 的表达会导致身体弯曲和短暂的心包水肿,后者可能反映了肾小球渗透调节功能的紊乱。neph3 形态发生突变体的组织学分析显示肾小球形态改变和原肾小管扩张。野生型 zebrafish neph3 mRNA 可以挽救 neph3 形态发生突变体的弯曲体和心包水肿表型。除了肾小球,neph3 在发育中的大脑和成熟中脑和后脑的特定区域中也高度表达。与此一致的是,neph3 形态发生突变体显示出异常的大脑形态。总之,neph3 在肾小球和大脑中的表达以及形态发生突变体的表型表明,neph3 是一种在组织分化的不同阶段具有多效性的基因,并直接参与肾小球和神经发育的调节。

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