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Gli Protein Nuclear Localization Signal

机译:Gli蛋白核定位信号

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Drosophila cubitus interruptus (Ci) and its vertebrate homologues, the glioblastoma (Gli) protein family, are the transcription factors belonging to the metazoan Gli/Glis/Zic ZF protein superfamily that shares similar five tandemly repeated C2H2-type zinc finger (ZF) motifs. Nuclear transport of Gli/Ci proteins is regulated by hedgehog (Hh) signaling and is an essential part of the Hh signal transduction pathway. Gli/Ci proteins possess a nuclear localization signal (NLS) and a nuclear export signal (NES), both of which are key signatures for controlling nucleocytoplasmic shuttling. The NLS of the Gli/Ci proteins has been mapped to the fifth ZF domain and its C-terminal side. It contains two clusters of basic residues (classical bipartite-type), which are conserved in metazoan Gli/Ci homologues, but which partially deviate from the intra-ZF domain NLSs in the Glis and Zic proteins. Recently, Importin α3 was identified as a nuclear transport protein for Ci. When we modeled the 3D structure of the Gli NLS-Importin α complex, the two basic clusters were predicted to fit in the two binding interfaces of Importin α. The mechanisms controlling the function of NLSs and NESs involve the elimination of the NES by Hh signaling-dependent protein cleavage in the Ci and the Gli3 proteins, and the phosphorylation of a threonine residue close to the NLS in Gli1. Both processes depend on the activity of protein kinase A, which has a critical role in Hh signaling in fly wing discs. In addition, the Roadkill protein, a substrate recognition component of E3 ubiquitin ligase, competes with the Ci protein to interact with Importin α3 resulting in inhibition of Ci protein nuclear import.
机译:腹果蝇(Ci)及其脊椎动物同源物胶质母细胞瘤(Gli)蛋白家族是属于后生动物Gli / Glis / Zic ZF蛋白超家族的转录因子,其共有相似的五个串联重复的C2H2型锌指(ZF)基序。 Gli / Ci蛋白的核转运受刺猬(Hh)信号传导调节,并且是Hh信号转导途径的重要组成部分。 Gli / Ci蛋白具有核定位信号(NLS)和核输出信号(NES),两者都是控制核质穿梭的关键特征。 Gli / Ci蛋白的NLS已被定位到第五个ZF域及其C端。它包含两个基本残基簇(经典的两部分类型),在后生动物Gli / Ci同源物中保守,但部分偏离了Glis和Zic蛋白中的ZF域内NLS。最近,Importinα3被确定为Ci的核转运蛋白。当我们对Gli NLS-Importinα复合物的3D结构建模时,预测两个基本簇适合Importinα的两个结合界面。控制NLS和NES功能的机制包括通过在Ci和Gli3蛋白中通过Hh信号依赖性蛋白裂解来消除NES,以及在Gli1中接近NLS的苏氨酸残基的磷酸化。这两个过程都取决于蛋白激酶A的活性,该蛋白激酶在飞翼盘中Hh信号传导中起着关键作用。此外,E3泛素连接酶的底物识别成分Roadkill蛋白与Ci蛋白竞争,与Importinα3相互作用,从而抑制了Ci蛋白的核输入。

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