The Institute of Plant and Microbial Biology, Academia Sinica, Taipei 115, Taiwan, Republic of China.
Nucleic Acids Res. 2012 Jan;40(2):638-49. doi: 10.1093/nar/gkr705. Epub 2011 Sep 28.
Bamboo mosaic virus (BaMV) satellite RNA (satBaMV) depends on BaMV for its replication and encapsidation. SatBaMV-encoded P20 protein is an RNA-binding protein that facilitates satBaMV systemic movement in co-infected plants. Here, we examined phosphorylation of P20 and its regulatory functions. Recombinant P20 (rP20) was phosphorylated by host cellular kinase(s) in vitro, and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry and mutational analyses revealed Ser-11 as the phosphorylation site. The phosphor-mimic rP20 protein interactions with satBaMV-translated mutant P20 were affected. In overlay assay, the Asp mutation at S11 (S11D) completely abolished the self-interaction of rP20 and significantly inhibited the interaction with both the WT and S11A rP20. In chemical cross-linking assays, S11D failed to oligomerize. Electrophoretic mobility shift assay and subsequent Hill transformation analysis revealed a low affinity of the phospho-mimicking rP20 for satBaMV RNA. Substantial modulation of satBaMV RNA conformation upon interaction with nonphospho-mimic rP20 in circular dichroism analysis indicated formation of stable satBaMV ribonucleoprotein complexes. The dissimilar satBaMV translation regulation of the nonphospho- and phospho-mimic rP20 suggests that phosphorylation of P20 in the ribonucleoprotein complex converts the translation-incompetent satBaMV RNA to messenger RNA. The phospho-deficient or phospho-mimicking P20 mutant of satBaMV delayed the systemic spread of satBaMV in co-infected Nicotiana benthamiana with BaMV. Thus, satBaMV likely regulates the formation of satBaMV RNP complex during co-infection in planta.
竹嵌纹病毒(BaMV)卫星 RNA(satBaMV)依赖 BaMV 进行复制和包装。satBaMV 编码的 P20 蛋白是一种 RNA 结合蛋白,可促进 satBaMV 在共感染植物中的系统运动。在这里,我们研究了 P20 的磷酸化及其调控功能。重组 P20(rP20)在体外被宿主细胞激酶磷酸化,基质辅助激光解吸/电离飞行时间质谱和突变分析表明丝氨酸 11 是磷酸化位点。磷酸化模拟 rP20 与 satBaMV 翻译突变 P20 的蛋白相互作用受到影响。在覆盖实验中,S11 处的天冬氨酸突变(S11D)完全消除了 rP20 的自相互作用,并显著抑制了与 WT 和 S11A rP20 的相互作用。在化学交联实验中,S11D 未能寡聚化。电泳迁移率变动分析和随后的 Hill 转化分析显示,磷酸化模拟 rP20 与 satBaMV RNA 的亲和力较低。圆二色性分析表明,在与非磷酸化模拟 rP20 相互作用时,satBaMV RNA 构象发生了实质性的调制,表明形成了稳定的 satBaMV 核糖核蛋白复合物。非磷酸化模拟和磷酸化模拟 rP20 对 satBaMV 翻译的不同调控表明,核糖核蛋白复合物中 P20 的磷酸化将无翻译能力的 satBaMV RNA 转化为信使 RNA。satBaMV 非磷酸化和磷酸化模拟 P20 突变体延迟了 satBaMV 在共感染 Nicotiana benthamiana 中的系统传播与 BaMV。因此,satBaMV 可能在植物体内共感染过程中调节 satBaMV RNP 复合物的形成。