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一种呼肠孤病毒 TGB1 运动蛋白的极端 N 端结构域介导其定位于核仁并与核仁仁蛋白相互作用。

The extreme N-terminal domain of a hordeivirus TGB1 movement protein mediates its localization to the nucleolus and interaction with fibrillarin.

机构信息

A.N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, Leninsky Gory, Moscow, 119992, Russia.

出版信息

Biochimie. 2012 May;94(5):1180-8. doi: 10.1016/j.biochi.2012.02.005. Epub 2012 Feb 11.

Abstract

The hordeiviral movement protein encoded by the first gene of the triple gene block (TGBp1) of Poa semilatent virus (PSLV), interacts with viral genomic RNAs to form RNP particles which are considered to be a form of viral genome capable of cell-to-cell and long-distance transport in infected plants. The PSLV TGBp1 contains a C-terminal NTPase/helicase domain (HELD) and an N-terminal extension region consisting of two structurally and functionally distinct domains: an extreme N-terminal domain (NTD) and an internal domain (ID). This study demonstrates that transient expression of TGBp1 fused to GFP in Nicotiana benthamiana leaves results in faint but obvious fluorescence in the nucleolus in addition to cytosolic distribution. Mutagenesis of the basic amino acids inside the NTD clusters A (116)KSKRKKKNKK(125) and B (175)KKATKKESKKQTK(187) reveals that these clusters are indispensable for nuclear and nucleolar targeting of PSLV TGBp1 and may contain nuclear and nucleolar localization signals or their elements. The PSLV TGBp1 is able to bind to fibrillarin, the major nucleolar protein (AtFib2 from Arabidopsis thaliana) in vitro. This protein-protein interaction occurs between the glycine-arginine-rich (GAR) domain of fibrillarin and the first 82 amino acid residues of TGBp1. The interaction of TGBp1 with fibrillarin is also visualized in vivo by bimolecular fluorescence complementation (BiFC) during co-expression of TGBp1 or its deletion mutants, and fibrillarin as fusions to different halves of YFP in N. benthamiana plants. The sites responsible for nuclear/nucleolar localization and fibrillarin binding, have been located within the intrinsically disordered TGBp1 NTD. These data could suggest that specific functions of hordeivirus TGBp1 may depend on its interaction with nucleolar components.

摘要

潜隐病毒的三基因块(TGBp1)的第一个基因编码的霍多病毒运动蛋白与病毒基因组 RNA 相互作用,形成 RNP 颗粒,这些颗粒被认为是一种能够在受感染植物中进行细胞间和长距离运输的病毒基因组形式。PSLV 的 TGBp1 包含一个 C 端 NTPase/解旋酶结构域(HELD)和一个由两个结构和功能不同的结构域组成的 N 端延伸区:极端 N 端结构域(NTD)和内部结构域(ID)。本研究表明,在本氏烟叶片中瞬时表达与 GFP 融合的 TGBp1 除了在细胞质中分布外,还导致核仁中出现微弱但明显的荧光。突变 NTD 内的碱性氨基酸簇 A(116)KSKRKKKNKK(125)和 B(175)KKATKKESKKQTK(187)表明,这些簇对于 PSLV TGBp1 的核和核仁靶向是必不可少的,并且可能包含核和核仁定位信号或其元件。PSLV TGBp1 能够与核仁内的主要核仁蛋白(拟南芥 AtFib2)在体外结合。这种蛋白质-蛋白质相互作用发生在纤维蛋白的甘氨酸-精氨酸丰富(GAR)结构域和 TGBp1 的前 82 个氨基酸残基之间。通过共表达 TGBp1 或其缺失突变体以及纤维蛋白与 YFP 的不同半部分融合,在体内通过双分子荧光互补(BiFC)也可以观察到 TGBp1 与纤维蛋白的相互作用。负责核/核仁定位和纤维蛋白结合的位点已定位在内在无序的 TGBp1 NTD 内。这些数据表明,霍多病毒 TGBp1 的特定功能可能取决于其与核仁成分的相互作用。

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