关键词: Homology Modeling Negative-strand RNA Virus Nucleocapsid Plant Virus RNA Ribonucleoprotein Tomato Spotted Wilt Virus Virus Assembly

Mesh : Amino Acid Sequence Binding Sites Blotting, Western Chromatin Immunoprecipitation Electrophoretic Mobility Shift Assay Immunoprecipitation Lycopersicon esculentum / genetics metabolism virology Models, Molecular Molecular Sequence Data Nucleocapsid Proteins / chemistry metabolism Protein Conformation RNA, Messenger / genetics RNA, Viral / chemistry metabolism Real-Time Polymerase Chain Reaction Reverse Transcriptase Polymerase Chain Reaction Tospovirus / physiology

来  源:   DOI:10.1074/jbc.M114.604678

Abstract:
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.
摘要:
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