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首页> 外文期刊>Human Molecular Genetics >Nuclear import and export signals are essential for proper cellular trafficking and function of ZIC3.
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Nuclear import and export signals are essential for proper cellular trafficking and function of ZIC3.

机译:核进出口信号对于ZIC3的正常细胞运输和功能至关重要。

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摘要

Missense, frameshift and nonsense mutations in the zinc finger transcription factor ZIC3 cause heterotaxy as well as isolated congenital heart disease. Previously, we developed transactivation and subcellular localization assays to test the function of ZIC3 point mutations. Aberrant cytoplasmic localization suggested that the pathogenesis of ZIC3 mutations results, at least in part, from failure of appropriate cellular trafficking. To further investigate this hypothesis, the nucleocytoplasmic shuttling properties of ZIC3 have been examined. Subcellular localization assays designed to span the entire open-reading frame of wild-type and mutant ZIC3 proteins identified the presence of nucleocytoplasmic transport signals. ZIC3 domain mapping indicates that a relatively large region containing the zinc finger binding sites and a known GLI interacting domain is required for transport to the nucleus. Site-directed mutagenesis of critical residues within two putative nuclear localization signals (NLSs) leads to loss of nuclear localization. No further decrease was observed when both NLS sites were mutated, suggesting that mutation of either NLS site is sufficient for loss of importin-mediated nuclear localization. Additionally, we identify a cryptic CRM-1-dependent nuclear export signal (NES) within ZIC3, and identify a mutation within this region in a patient with heterotaxy. These results provide the first evidence that control of cellular trafficking of ZIC3 is critical for function and suggest a possible mechanism for transcriptional control during left-right patterning. Identification of mutations in mapped NLS or NES domains in heterotaxy patients demonstrates the functional importance of these domains in cardiac morphogenesis and allows for integration of structural analysis with developmental function.
机译:锌指转录因子ZIC3的错义,移码和无义突变会引起异型性以及孤立的先天性心脏病。以前,我们开发了反式激活和亚细胞定位测定法来测试ZIC3点突变的功能。异常的细胞质定位表明,ZIC3突变的发病机制至少部分是由于适当的细胞运输失败所致。为了进一步研究该假设,已经检查了ZIC3的核质穿梭特性。设计用于跨越野生型和突变型ZIC3蛋白的整个开放阅读框架的亚细胞定位测定法鉴定了核质转运信号的存在。 ZIC3结构域作图表明,需要较大的区域包含锌指结合位点和已知的GLI相互作用域,才能转运至细胞核。在两个推定的核定位信号(NLSs)内对关键残基进行定点诱变会导致核定位的损失。当两个NLS位点都发生突变时,未观察到进一步的下降,这表明任一NLS位点的突变足以弥补importin介导的核定位的损失。此外,我们在ZIC3中鉴定出一个隐秘的CRM-1依赖性核输出信号(NES),并在异源性患者中鉴定了该区域内的突变。这些结果提供了第一个证据,证明对ZIC3的细胞运输控制对功能至关重要,并提出了在左右模式中进行转录控制的可能机制。异源性患者中映射的NLS或NES域中突变的鉴定证明了这些域在心脏形态发生中的功能重要性,并允许结构分析与发育功能的整合。

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