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A viral movement protein as a nuclear shuttle. The geminivirus BR1 movement protein contains domains essential for interaction with BL1 and nuclear localization.

机译:病毒运动蛋白作为核穿梭物。双生病毒BR1运动蛋白包含与BL1相互作用和核定位必不可少的域。

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摘要

For the nuclear replicating bipartite geminiviruses such as squash leaf curl to systemically infect the host requires the active participation of two virus-encoded movement proteins, BR1 and BL1. These act in a cooperative manner to transport the viral single-stranded DNA genome from its site of replication in the nucleus to the cell periphery (A.A. Sanderfoot, S.G. Lazarowitz [1995] Plant Cell 7: 1185-1194). We have proposed that BR1 functions as a nuclear shuttle protein, transporting the viral single-stranded DNA to and from the nucleus as a complex that is recognized by BL1 for movement to adjacent cells. To further investigate this, we expressed BR1 mutants known to affect viral infectivity in Spodoptera frugiperda insect cells and Nicotiana tabacum L. cv Xanthi protoplasts and found these to be defective in either their nuclear targeting or their ability to be redirected to the cell periphery when co-expressed with BL1. Translational fusions to beta-glucuronidase and alanine-scanning mutagenesis further demonstrated that the C-terminal 86 amino acids of BR1 contains a domain(s) essential for its interaction with BL1 and identified two nuclear localization signals within the N-terminal 113 residues of BR1. These nuclear localization signals were precisely located within distinct 16- and 22-peptide segments of BR1. These studies support and extend our model for squash leaf curl virus movement, showing that BR1 has a domain structure, with an N-terminal region required for nuclear targeting and a C-terminal region required for its interaction with BL1.
机译:为使核复制性双子双生子病毒(如南瓜卷曲)系统感染宿主,需要两个病毒编码的运动蛋白BR1和BL1的主动参与。这些以协同方式起作用,以将病毒单链DNA基因组从其在细胞核中的复制位点转运至细胞周围(A.A.Sanderfoot,S.G.Lazarowitz [1995] Plant Cell 7:1185-1194)。我们已经提出,BR1作为一种核穿梭蛋白,将病毒单链DNA作为一种复合物运入和运出细胞核,并被BL1识别为可移动到相邻细胞。为了进一步对此进行研究,我们表达了BR1突变体,该突变体已知会影响斜纹夜蛾昆虫细胞和烟草(Nicotiana tabacum L. cv)Xanthi原生质体中的病毒感染性,并发现它们在核定靶方面或当它们联合时重定向到细胞外围的能力均存在缺陷。 -用BL1表达。 β-葡糖醛酸糖苷酶和丙氨酸扫描诱变的翻译融合进一步证明,BR1的C末端86个氨基酸包含一个与BL1相互作用必不可少的域,并在BR1的N末端113个残基中鉴定出两个核定位信号。这些核定位信号精确地位于BR1的不同16和22肽段内。这些研究支持并扩展了我们的南瓜叶片卷曲病毒运动模型,表明BR1具有域结构,具有用于核靶向的N末端区域和与BL1相互作用所需的C末端区域。

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