Hsu H-T, Hsu Y-H, Bi I-P, Lin N-S, Chang B-Y
Institute of Biochemistry, National Chung-Hsing University, Taichung, Taiwan, ROC.
Arch Virol. 2004 May;149(5):1027-35. doi: 10.1007/s00705-003-0254-y. Epub 2003 Dec 23.
The TGBp1 protein encoded by the first open reading frame of the triple-gene-block (TGB) of bamboo mosaic potexvirus (BaMV) plays important roles in virus movement; one of them is to shape the viral RNA before its being transported from cell to cell. However, TGBp1 mainly forms cytoplasmic inclusions which are devoid of the RNA-binding activity. With the purified TGBp1 inclusions of BaMV, we analyzed the possibility of dissociation of functional TGBp1 from the inclusions. Our data showed that the cytoplasmic inclusions were able to dissociate continuously functional TGBp1, which possessed ATP-binding, ATPase, and RNA-binding activities. Moreover, the dissociation of TGBp1 was significantly enhanced by the presence of viral RNA and capsid protein (CP), consistent with the finding that TGBp1 are able to form ribonucleoprotein complex with viral RNA and CP. Taken together, these results support the idea that the cytoplasmic TGBp1 inclusions are active pools of TGBp1, upon which viral RNA can be shaped into a transferable form.
竹花叶病毒(BaMV)三基因块(TGB)的第一个开放阅读框编码的TGBp1蛋白在病毒运动中发挥重要作用;其中之一是在病毒RNA从一个细胞运输到另一个细胞之前对其进行塑形。然而,TGBp1主要形成缺乏RNA结合活性的细胞质内含体。利用纯化的BaMV的TGBp1内含体,我们分析了功能性TGBp1从内含体中解离的可能性。我们的数据表明,细胞质内含体能够持续解离具有ATP结合、ATP酶和RNA结合活性的功能性TGBp1。此外,病毒RNA和衣壳蛋白(CP)的存在显著增强了TGBp1的解离,这与TGBp1能够与病毒RNA和CP形成核糖核蛋白复合物的发现一致。综上所述,这些结果支持了细胞质TGBp1内含体是TGBp1的活性库这一观点,在该活性库上病毒RNA可以被塑形成可转移的形式。