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动力蛋白轻链关联序列可促进核蛋白导入。

Dynein light chain association sequences can facilitate nuclear protein import.

作者信息

Moseley Gregory W, Roth Daniela Martino, DeJesus Michelle A, Leyton Denisse L, Filmer Richard P, Pouton Colin W, Jans David A

机构信息

Nuclear Signalling Laboratory, Department of Biochemistry and Molecular Biology, Monash University, Monash, Victoria 3800, Australia.

出版信息

Mol Biol Cell. 2007 Aug;18(8):3204-13. doi: 10.1091/mbc.e07-01-0030. Epub 2007 Jun 13.

Abstract

Nuclear localization sequence (NLS)-dependent nuclear protein import is not conventionally held to require interaction with microtubules (MTs) or components of the MT motor, dynein. Here we report for the first time the role of sequences conferring association with dynein light chains (DLCs) in NLS-dependent nuclear accumulation of the rabies virus P-protein. We find that P-protein nuclear accumulation is significantly enhanced by its dynein light chain association sequence (DLC-AS), dependent on MT integrity and association with DLCs, and that P-protein-DLC complexes can associate with MT cytoskeletal structures. We also find that P-protein DLC-AS, as well as analogous sequences from other proteins, acts as an independent module that can confer enhancement of nuclear accumulation to proteins carrying the P-protein NLS, as well as several heterologous NLSs. Photobleaching experiments in live cells demonstrate that the MT-dependent enhancement of NLS-mediated nuclear accumulation by the P-protein DLC-AS involves an increased rate of nuclear import. This is the first report of DLC-AS enhancement of NLS function, identifying a novel mechanism regulating nuclear transport with relevance to viral and cellular protein biology. Importantly, this data indicates that DLC-ASs represent versatile modules to enhance nuclear delivery with potential therapeutic application.

摘要

传统观点认为,依赖核定位序列(NLS)的核蛋白导入过程并不需要与微管(MT)或微管动力蛋白(动力蛋白)的组分相互作用。在此,我们首次报道了赋予与动力蛋白轻链(DLC)结合能力的序列在狂犬病病毒P蛋白依赖NLS的核内积累中的作用。我们发现,P蛋白的动力蛋白轻链结合序列(DLC-AS)显著增强了其核内积累,这依赖于微管的完整性以及与DLC的结合,并且P蛋白-DLC复合物能够与微管细胞骨架结构结合。我们还发现,P蛋白DLC-AS以及其他蛋白的类似序列可作为一个独立模块,能够增强携带P蛋白NLS以及几种异源NLS的蛋白的核内积累。活细胞中的光漂白实验表明,P蛋白DLC-AS对NLS介导的核内积累的微管依赖性增强涉及核输入速率的增加。这是关于DLC-AS增强NLS功能的首次报道,确定了一种与病毒和细胞蛋白生物学相关的调节核运输的新机制。重要的是,这些数据表明DLC-AS是增强核递送的通用模块,具有潜在的治疗应用价值。

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