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β-连环蛋白N端和C端尾巴中不同的疏水“区域”有助于核转运。

Distinct hydrophobic "patches" in the N- and C-tails of beta-catenin contribute to nuclear transport.

作者信息

Sharma Manisha, Jamieson Cara, Lui Christina, Henderson Beric R

机构信息

Center for Cancer Research, The Westmead Institute for Medical Research, The University of Sydney, Westmead, NSW 2145, Australia.

Center for Cancer Research, The Westmead Institute for Medical Research, The University of Sydney, Westmead, NSW 2145, Australia.

出版信息

Exp Cell Res. 2016 Nov 1;348(2):132-145. doi: 10.1016/j.yexcr.2016.09.009. Epub 2016 Sep 19.

Abstract

β-catenin is a key mediator of Wnt signaling and its deregulated nuclear accumulation can drive cancer progression. While the central armadillo (Arm) repeats of β-catenin stimulate nuclear entry, the N- and C-terminal "tail" sequences are thought to regulate turnover and transactivation. We show here that the N- and C-tails are also potent transport sequences. The unstructured tails of β-catenin, when individually fused to a GFP-reporter, could enter and exit the nucleus rapidly in live cells. Proximity ligation assays and pull-down assays identified a weak interaction between the tail sequences and the FG-repeats of nucleoporins, consistent with a possible direct translocation of β-catenin through the nuclear pore complex. Extensive alanine mutagenesis of the tail sequences revealed that nuclear translocation of β-catenin was dependent on specific uniformly distributed patches of hydrophobic residues, whereas the mutagenesis of acidic amino acids had no effect. Moreover, the mutation of hydrophobic patches within the N-tail and C-tail of full length β-catenin reduced nuclear transport rate and diminished its ability to activate transcription. We propose that the tail sequences can contribute to β-catenin transport and suggest a possible similar role for hydrophobic unstructured regions in other proteins.

摘要

β-连环蛋白是Wnt信号通路的关键介质,其核内积累失调可驱动癌症进展。虽然β-连环蛋白的中央犰狳(Arm)重复序列刺激核内进入,但N端和C端“尾部”序列被认为可调节周转和反式激活。我们在此表明,N端和C端尾部也是有效的转运序列。当β-连环蛋白的无结构尾部单独与绿色荧光蛋白报告基因融合时,可在活细胞中快速进出细胞核。邻近连接分析和下拉分析确定了尾部序列与核孔蛋白的FG重复序列之间存在弱相互作用,这与β-连环蛋白可能通过核孔复合体直接转运一致。对尾部序列进行广泛的丙氨酸诱变表明,β-连环蛋白的核转位依赖于特定的均匀分布的疏水残基斑块,而酸性氨基酸的诱变则没有影响。此外,全长β-连环蛋白N端和C端尾部内疏水斑块的突变降低了核转运速率,并削弱了其激活转录的能力。我们提出,尾部序列可促进β-连环蛋白的转运,并暗示其他蛋白质中疏水无结构区域可能具有类似作用。

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