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首页> 外文期刊>American Journal of Physiology >Intermediate filament protein nestin is expressed in developing kidney and heart and might be regulated by the Wilms' tumor suppressor Wt1.
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Intermediate filament protein nestin is expressed in developing kidney and heart and might be regulated by the Wilms' tumor suppressor Wt1.

机译:中间丝蛋白巢蛋白在发育中的肾脏和心脏中表达,可能受Wilms的肿瘤抑制因子Wt1调节。

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摘要

Nestin is an intermediate filament protein originally described in neural stem cells and a variety of progenitor cells. More recently, nestin was detected in rat kidney podocytes. We show here that nestin is expressed in a developmentally regulated pattern in the kidney. Nestin was detected by immunohistochemistry in the condensing mesenchyme surrounding the ureter, in developing glomeruli, in podocytes of the adult kidney, and in a podocyte cell line. Nestin shared a striking overlap in expression with the Wilms' tumor suppressor Wt1. Nestin was significantly upregulated in a cell line with inducible Wt1 expression upon induction of Wt1. Cotransfection experiments in human embryonic kidney cells (HEK293) revealed stimulation of a nestin intron 2 enhancer element up to six-fold by the Wt1(-KTS) splice variant. Nestin expression was significantly reduced in an inducible mouse model of glomerular disease. This model is based on podocyte-specific overexpression of Pax2 and associated with a loss of Wt1 expression. Furthermore, also in the developing heart, nestin was found in an overlapping pattern with Wt1 in the epicardium and the forming coronary vessels. Strikingly, in the hearts of Wt1 knockout mice, nestin was barely detectable compared with the hearts of wild-type embryos. Our results show that nestin is expressed at different stages of kidney and cardiac development and suggest that its expression in these organs might be regulated by the Wilms' tumor suppressor Wt1.
机译:巢蛋白是最初在神经干细胞和多种祖细胞中描述的中间丝蛋白。最近,在大鼠肾脏足细胞中检测到巢蛋白。我们在这里表明,巢蛋白在肾脏中以发育调控的模式表达。巢蛋白通过免疫组织化学在输尿管周围的凝结间充质,发育中的肾小球,成年肾脏的足细胞和足细胞细胞系中检测到。 Nestin与Wilms的抑癌药Wt1在表达上有惊人的重叠。诱导Wt1后,可诱导Wt1表达的细胞系中的Nestin明显上调。在人类胚胎肾细胞(HEK293)中进行的共转染实验表明,Wt1(-KTS)剪接变体最多刺激了Nestin内含子2增强子元件六倍。在可诱导的肾小球疾病小鼠模型中,巢蛋白表达显着降低。该模型基于Pax2的足细胞特异表达,并与Wt1表达缺失有关。此外,也在心脏发育中,在心外膜和形成的冠状血管中发现巢蛋白与Wt1重叠。令人惊讶的是,在Wt1基因敲除小鼠的心脏中,与野生型胚胎的心脏相比,巢蛋白几乎检测不到。我们的结果表明,巢蛋白在肾脏和心脏发育的不同阶段表达,并表明其在这些器官中的表达可能受Wilms的肿瘤抑制因子Wt1调节。

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