D'Agostino D M, Ciminale V, Zotti L, Rosato A, Chieco-Bianchi L
Department of Oncology and Surgical Sciences, University of Padua, Italy.
J Virol. 1997 Jan;71(1):75-83. doi: 10.1128/JVI.71.1.75-83.1997.
The X region of human T-cell lymphotropic virus type 1 (HTLV-1) encodes two nucleolar/nuclear proteins, the posttranscriptional regulator of mRNA expression Rex and a protein of unknown function named Tof. To gain insight into the possible biological role of Tof, we investigated the mechanism governing its intracellular trafficking and identified its nucleolar/nuclear localization signal (NLS). Mutational analysis of Tof revealed that its NLS was located between amino acids 71 and 98 and contained two arginine-rich domains that functioned in an interdependent manner. Studies of Tof-Rex hybrid proteins showed that the Tof NLS could functionally replace the NLS of Rex at the level of nuclear targeting. As the NLS of Rex is known to mediate its interaction with its RNA target, the Rex-responsive element (RXRE), we tested whether the NLS of Tof could replace that of Rex in mediating activation of a RXRE-containing mRNA. Results showed that the NLS of Tof was indeed able to mediate activation of RXRE-containing mRNAs, suggesting that Tof itself may function as a regulator of RNA expression and utilization. A comparison of their compartmentalization in response to actinomycin D treatment indicated that Tof did not share Rex's shuttling pathway. Expression of Tof from its natural multiply spliced mRNA required the presence of Rex, suggesting that Tof may regulate viral or cellular mRNA expression during the later stages of viral replication.
人类嗜T细胞病毒1型(HTLV-1)的X区域编码两种核仁/核蛋白,即mRNA表达的转录后调节因子Rex和一种功能未知的名为Tof的蛋白。为了深入了解Tof可能的生物学作用,我们研究了其细胞内运输的调控机制,并确定了其核仁/核定位信号(NLS)。对Tof的突变分析表明,其NLS位于氨基酸71至98之间,包含两个以相互依赖方式发挥作用的富含精氨酸的结构域。对Tof-Rex杂交蛋白的研究表明,Tof NLS在核靶向水平上可以在功能上替代Rex的NLS。由于已知Rex的NLS介导其与RNA靶标即Rex反应元件(RXRE)的相互作用,我们测试了Tof的NLS在介导含RXRE的mRNA激活中是否可以替代Rex的NLS。结果表明,Tof的NLS确实能够介导含RXRE的mRNA的激活,这表明Tof本身可能作为RNA表达和利用的调节因子发挥作用。对它们在放线菌素D处理后的区室化进行比较表明,Tof不共享Rex的穿梭途径。从其天然多重剪接的mRNA表达Tof需要Rex的存在,这表明Tof可能在病毒复制的后期阶段调节病毒或细胞mRNA的表达。