Li Jia, Feng Zhike, Wu Jianyan, Huang Ying, Lu Gang, Zhu Min, Wang Bi, Mao Xiang, Tao Xiaorong
From the Department of Plant Pathology, Key Laboratory of Integrated Management of Crop Diseases and Pests (Ministry of Education), and.
the Institute of Biotechnology, Zhejiang University, Hangzhou 310029, China.
J Biol Chem. 2015 Feb 13;290(7):3950-61. doi: 10.1074/jbc.M114.604678. Epub 2014 Dec 24.
The nucleocapsid (N) protein of tomato spotted wilt virus (TSWV) plays key roles in assembling genomic RNA into ribonucleoprotein (RNP), which serves as a template for both viral gene transcription and genome replication. However, little is known about the molecular mechanism of how TSWV N interacts with genomic RNA. In this study, we demonstrated that TSWV N protein forms a range of higher ordered oligomers. Analysis of the RNA binding behavior of N protein revealed that no specific oligomer binds to RNA preferentially, instead each type of N oligomer is able to bind RNA. To better characterize the structure and function of N protein interacting with RNA, we constructed homology models of TSWV N and N-RNA complexes. Based on these homology models, we demonstrated that the positively charged and polar amino acids in its predicted surface cleft of TSWV N are critical for RNA binding. Moreover, by N-RNA homology modeling, we found that the RNA component is deeply embedded in the predicted protein cleft; consistently, TSWV N-RNA complexes are relatively resistant to digestion by RNase. Collectively, using homology modeling, we determined the RNA binding sites on N and found a new protective feature for N protein. Our findings also provide novel insights into the molecular details of the interaction of TSWV N with RNA components.
番茄斑萎病毒(TSWV)的核衣壳(N)蛋白在将基因组RNA组装成核糖核蛋白(RNP)的过程中发挥关键作用,而核糖核蛋白是病毒基因转录和基因组复制的模板。然而,关于TSWV N如何与基因组RNA相互作用的分子机制却知之甚少。在本研究中,我们证明TSWV N蛋白形成了一系列更高阶的寡聚体。对N蛋白的RNA结合行为分析表明,没有特定的寡聚体优先结合RNA,相反,每种类型的N寡聚体都能够结合RNA。为了更好地表征与RNA相互作用的N蛋白的结构和功能,我们构建了TSWV N和N-RNA复合物的同源模型。基于这些同源模型,我们证明TSWV N预测表面裂隙中的带正电荷和极性氨基酸对于RNA结合至关重要。此外,通过N-RNA同源建模,我们发现RNA成分深深嵌入预测的蛋白裂隙中;一致地,TSWV N-RNA复合物对核糖核酸酶的消化相对抗性较强。总体而言,利用同源建模,我们确定了N上的RNA结合位点,并发现了N蛋白的一种新的保护特性。我们的研究结果还为TSWV N与RNA成分相互作用的分子细节提供了新的见解。