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首页> 外文期刊>Molecular Plant-Microbe Interactions >Phosphorylation of Coat Protein by Protein Kinase CK2 Regulates Cell-to-Cell Movement of Bamboo mosaic virus Through Modulating RNA Binding
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Phosphorylation of Coat Protein by Protein Kinase CK2 Regulates Cell-to-Cell Movement of Bamboo mosaic virus Through Modulating RNA Binding

机译:蛋白激酶CK2对外壳蛋白的磷酸化通过调节RNA结合调节竹子花叶病毒的细胞间运动。

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In this study, we investigated the fine regulation of cell-to-cell movement of Bamboo mosaic virus (BaMV). We report that the coat protein (CP) of BaMV is phosphorylated in planta at position serine 241 (S241), in a process involving Nicotiana benthamiana casein kinase 2α (NbCK2α). BaMV CP and NbCK2α colocalize at the plasmodesmata, suggesting that phosphorylation of BaMV may be involved in its movement. S241 was mutated to examine the effects of temporal and spatial dysregulation of phosphorylation on i) the interactions between CP and viral RNA and ii) the regulation of cell-to-cell movement. Replacement of S241 with alanine did not affect RNA binding affinity but moderately impaired cell-to-cell movement. A negative charge at position 241 reduced the ability of CP to bind RNA and severely interfered with cell-to-cell movement. Deletion of residues 240 to 242 increased the affinity of CP to viral RNA and dramatically impaired cell-to-cell movement. A threonine at position 241 changed the binding preference of CP toward genomic RNA and inhibited cell-to-cell movement. Together, these results reveal a fine regulatory mechanism for the cell-to-cell movement of BaMV, which involves the modulation of RNA binding affinity through appropriate phosphorylation of CP by NbCK2α.
机译:在这项研究中,我们调查了竹花叶病毒(BaMV)的细胞间运动的精细调节。我们报告说,BaMV的外壳蛋白(CP)在植物中的丝氨酸241(S241)位置被磷酸化,该过程涉及本氏烟草酪蛋白激酶2α(NbCK2α)。 BaMV CP和NbCK2α共同定位在胞浆内,表明BaMV的磷酸化可能与其运动有关。对S241进行突变以检查磷酸化的时间和空间失调对i)CP和病毒RNA之间的相互作用以及ii)细胞间运动调节的影响。用丙氨酸替代S241不会影响RNA结合亲和力,但会适度损害细胞间的移动。 241位的负电荷会降低CP结合RNA的能力,并严重干扰细胞间的移动。残基240至242的缺失增加了CP对病毒RNA的亲和力并显着损害了细胞间的移动。第241位的苏氨酸改变了CP对基因组RNA的结合偏好,并抑制了细胞间的移动。总之,这些结果揭示了BaMV在细胞间运动的良好调控机制,该机制涉及通过NbCK2α对CP进行适当的磷酸化来调节RNA结合亲和力。

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