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Featured researches published by Dawei Cai.


Journal of Virology | 2011

RNA Binding by a Novel Helical Fold of B2 Protein from Wuhan Nodavirus Mediates the Suppression of RNA Interference and Promotes B2 Dimerization

Nan Qi; Dawei Cai; Yang Qiu; Jiazheng Xie; Zhaowei Wang; Jie Si; Jiamin Zhang; Xi Zhou; Yuanyang Hu

ABSTRACT Wuhan nodavirus (WhNV) is a newly identified member of the Nodaviridae family with a bipartite genome of positive-sense RNAs. A nonstructural protein encoded by subgenomic RNA3 of nodaviruses, B2, serves as a potent RNA silencing suppressor (RSS) by sequestering RNA duplexes. We have previously demonstrated that WhNV B2 blocks RNA silencing in cultured Drosophila cells. However, the molecular mechanism by which WhNV B2 functions remains unknown. Here, we successfully established an RNA silencing system in cells derived from Pieris rapae, a natural host of WhNV, by introducing into these cells double-stranded RNA (dsRNA)-expressing plasmids or chemically synthesized small interfering RNAs (siRNAs). Using this system, we revealed that the WhNV B2 protein inhibited Dicer-mediated dsRNA cleavage and the incorporation of siRNA into the RNA-induced silencing complex (RISC) by sequestering dsRNA and siRNA. Based on the modeled B2 3-dimensional structure, serial single alanine replacement mutations and N-terminal deletion analyses showed that the RNA-binding domain of B2 is formed by its helices α2 and α3, while helix α1 mediates B2 dimerization. Furthermore, positive feedback between RNA binding and B2 dimerization was uncovered by gel shift assay and far-Western blotting, revealing that B2 dimerization is required for its binding to RNA, whereas RNA binding to B2 in turn promotes its dimerization. All together, our findings uncovered a novel RNA-binding mode of WhNV B2 and provided evidence that the promotion effect of RNA binding on dimerization exists in a viral RSS protein.


Journal of Virology | 2011

Internal initiation is responsible for synthesis of Wuhan nodavirus subgenomic RNA.

Yang Qiu; Dawei Cai; Nan Qi; Zhaowei Wang; Xi Zhou; Jiamin Zhang; Yuanyang Hu

ABSTRACT Nodaviruses are small nonenveloped spherical viruses with a bipartite genome of RNAs. In nodaviruses, subgenomic RNA3 (sgRNA3) plays a critical role in viral replication and survival, as it coordinates the replication of two viral genomic RNAs (RNA1 and RNA2) and encodes protein B2, which is a potent RNA-silencing inhibitor. Despite its importance, the molecular mechanism of nodaviral sgRNA3 synthesis is still poorly understood. Here, we propose that sgRNA3 of Wuhan nodavirus (WhNV) is internally initiated from a promoter on the negative template of genomic RNA1. Serial deletion and mutation analyses further revealed that the core promoter of WhNV sgRNA3 is between nucleotide positions −22 and +6 of its transcription start site. Besides, a stem-loop structure of WhNV sgRNA3 was computationally predicted upstream of sgRNA3s transcription start site. Both the secondary structure and the primary sequence were determined to be required for promoter activity. Furthermore, our results show that the synthesis of WhNV sgRNA3 is counterregulated by the replication of WhNV genomic RNA2, which encodes a viral capsid precursor protein. And this sgRNA3 synthesis is also able to trans-activate the replication of RNA2. Altogether, findings in this study indicate that there is a newly discovered internal initiation model for the synthesis of nodaviral sgRNA.


Virology | 2013

Membrane association of Wuhan nodavirus protein A is required for its ability to accumulate genomic RNA1 template

Yang Qiu; Zhaowei Wang; Yongxiang Liu; Nan Qi; Meng Miao; Jie Si; Xue Xiang; Dawei Cai; Yuanyang Hu; Xi Zhou

One common feature of positive-strand RNA viruses is the association of viral RNA and viral RNA replicase proteins with specific intracellular membranes to form RNA replication complexes. Wuhan nodavirus (WhNV) encodes protein A, which is the sole viral RNA replicase. Here, we showed that WhNV protein A closely associates with mitochondrial outer membranes and colocalizes with viral RNA replication sites. We further identified the transmembrane domains (N-terminal aa 33-64 and aa 212-254) of protein A for membrane association and mitochondrial localization. Moreover, we found that protein A accumulates genomic RNA by stabilizing the RNA. And our further investigation revealed that the ability of WhNV protein A to associate with membranes is closely linked with its ability for membrane recruitment and stabilization of viral genomic RNA templates. This study represents an advance toward understanding the mechanism of the RNA replication of WhNV and probably other nodaviruses.


Biochemical and Biophysical Research Communications | 2006

Biochemical characterization of Periplaneta fuliginosa densovirus non-structural protein NS1

Bo Yang; Jiamin Zhang; Dawei Cai; Doulin Li; Wuguo Chen; Hong Jiang; Yuanyang Hu


Virus Research | 2010

Characterization of Wuhan Nodavirus subgenomic RNA3 and the RNAi inhibition property of its encoded protein B2.

Dawei Cai; Yang Qiu; Nan Qi; Ran Yan; Meijuan Lin; Dongbo Nie; Jiamin Zhang; Yuanyang Hu


Virus Research | 2006

Sequence analysis of coat protein gene of Wuhan nodavirus isolated from insect

Chuanfeng Liu; Jiamin Zhang; Junping Wang; Jie Lu; Wuguo Chen; Dawei Cai; Yuanyang Hu


Journal of General Virology | 2007

Ectropis obliqua picorna-like virus IRES-driven internal initiation of translation in cell systems derived from different origins.

Jie Lu; Yuanyang Hu; Liu Hu; Shan Zong; Dawei Cai; Junping Wang; Haiyang Yu; Jiamin Zhang


Virus Research | 2008

Characterization of the promoter elements and transcription profile of Periplaneta fuliginosa densovirus nonstructural genes.

Bo Yang; Xiaomin Dong; Dawei Cai; Xiaoyan Wang; Zhigang Liu; Zheng Hu; Haoyong Wang; Xu Cao; Jiamin Zhang; Yuanyang Hu


Journal of Biochemistry and Molecular Biology | 2010

Expression and characterization of RNA-dependent RNA polymerase of Ectropis obliqua virus

Meijuan Lin; Shan Ye; Yi Xiong; Dawei Cai; Jiamin Zhang; Yuanyang Hu


Virus Research | 2007

Characterization of the RNA-binding regions in protein p36 of Heliothis armigera cypovirus 14

Wuguo Chen; Yuanyang Hu; Yang Li; Zheng Yu; Changjin Dong; Dawei Cai; Jiamin Zhang

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