Dutton J R, Lahiri D, Ward A
Centre for Regenerative Medicine, Department of Biology and Biochemistry, Building 4 South, University of Bath, Claverton Down, Bath, BA2 7AY, UK.
Cell Prolif. 2006 Dec;39(6):519-35. doi: 10.1111/j.1365-2184.2006.00409.x.
The Wilms' tumour suppressor gene WT1 encodes multiple isoforms of a transcription factor essential for correct mammalian urogenital development. Maintenance of the correct isoform ratio is critical. In humans, perturbation of this ratio causes Frasier syndrome, which is characterized by developmental defects of the kidney and urogenital tract. Different WT1 isoforms are thought to regulate transcription and participate in mRNA processing, functions reflected by a complex sub-nuclear distribution. However, the role of individual WT1 isoforms remains unclear and pathways leading to WT1 sub-nuclear localization are completely unknown. Here we use cells expressing green fluorescent protein-tagged WT1 to demonstrate that the two major WT1 isoforms occupy separate and dynamic intranuclear locations in which one isoform, WT1+KTS, preferentially associates with the nucleolus. The alternatively spliced zinc finger region is found to be critical for the initial sub-nuclear separation of WT1 isoforms, but interactions between different isoforms influence the sub-nuclear distribution of WT1. We illustrate how disruption of WT1 nuclear distribution might result in disease. This study contributes to the emerging picture of intranuclear protein trafficking.
威尔姆斯瘤抑制基因WT1编码多种转录因子异构体,这些异构体对于哺乳动物正常的泌尿生殖系统发育至关重要。维持正确的异构体比例至关重要。在人类中,这种比例的紊乱会导致弗雷泽综合征,其特征是肾脏和泌尿生殖道发育缺陷。不同的WT1异构体被认为可调节转录并参与mRNA加工,这一功能通过复杂的核内分布得以体现。然而,单个WT1异构体的作用仍不清楚,导致WT1核内定位的途径也完全未知。在此,我们使用表达绿色荧光蛋白标记的WT1的细胞来证明,两种主要的WT1异构体占据独立且动态的核内位置,其中一种异构体WT1+KTS优先与核仁结合。发现选择性剪接的锌指区域对于WT1异构体的初始核内分离至关重要,但不同异构体之间的相互作用会影响WT1的核内分布。我们阐述了WT1核分布的破坏可能如何导致疾病。这项研究有助于完善核内蛋白质运输的新图景。