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威尔姆斯瘤蛋白(WT1)在细胞核与细胞质之间穿梭,并存在于功能性多核糖体中。

The Wilms' tumour protein (WT1) shuttles between nucleus and cytoplasm and is present in functional polysomes.

作者信息

Niksic Martina, Slight Joan, Sanford Jeremy R, Caceres Javier F, Hastie Nicholas D

机构信息

MRC Human Genetics Unit, Western General Hospital, Edinburgh, UK.

出版信息

Hum Mol Genet. 2004 Feb 15;13(4):463-71. doi: 10.1093/hmg/ddh040. Epub 2003 Dec 17.

Abstract

Mutations of the Wilms' tumour-1 (WT1) gene in humans can lead to childhood kidney cancer, life-threatening glomerular nephropathy and gonadal dysgenesis. The WT1 protein is normally expressed in the developing genitourinary tract, heart, spleen and adrenal glands and is crucial for their development, however it's function at the molecular level is yet to be fully understood. The protein is predominantly nuclear and there is evidence that the two different isoforms of WT1 (-KTS and +KTS) are involved in two different steps of gene expression control: transcription and RNA processing. In this study we report a novel property of WT1, namely that it shuttles between the nucleus and cytoplasm. Moreover, western blot analysis showed that between 10 and 50% of total cellular WT1 can be detected in the cytoplasm depending on the cell type. A significant proportion of cytoplasmic WT1 is in association with ribonucleoprotein particles (RNPs), which strengthens the idea of its involvement in RNA metabolism. Furthermore, we report that WT1 is associated with actively translating polysomes, extending even further the potential roles of WT1 and opening the possibility that it is involved in the regulation of translation. Interestingly, despite the functional differences between two of the WT1 isoforms (+/-KTS) within the nucleus, both isoforms share the shuttling property and are found in translating polysomes.

摘要

人类威尔姆斯瘤1(WT1)基因的突变可导致儿童肾癌、危及生命的肾小球肾病和性腺发育不全。WT1蛋白通常在发育中的泌尿生殖道、心脏、脾脏和肾上腺中表达,对它们的发育至关重要,然而其在分子水平上的功能尚未完全了解。该蛋白主要位于细胞核内,有证据表明WT1的两种不同异构体(-KTS和+KTS)参与基因表达控制的两个不同步骤:转录和RNA加工。在本研究中,我们报告了WT1的一个新特性,即它在细胞核和细胞质之间穿梭。此外,蛋白质印迹分析表明,根据细胞类型的不同,在细胞质中可检测到占细胞总WT1的10%至50%。相当一部分细胞质中的WT1与核糖核蛋白颗粒(RNP)相关联,这强化了其参与RNA代谢的观点。此外,我们报告WT1与正在进行翻译的多核糖体相关联,这进一步扩展了WT1的潜在作用,并开启了其参与翻译调控的可能性。有趣的是,尽管WT1的两种异构体(+/-KTS)在细胞核内存在功能差异,但两种异构体都具有穿梭特性,并且都存在于正在翻译的多核糖体中。

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