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1 ing protein A, the viral contribution to the RNA replicase.
2  a working model for the assembly of the BMV RNA replicase.
3 ozyme plus recognition sequences for Sindbis RNA replicase.
4 s a novel inhibitor of a viral RNA-dependent RNA replicase.
5 es of initiation site recognition by a viral RNA replicase.
6          The isolation of an RNA enzyme with RNA replicase activity, at present only a hypothetical m
7 me that encodes the catalytic subunit of the RNA replicase and the viral capsid protein precursor on
8 essary and sufficient for the binding of the RNA replicase, and for RNA replication.
9 itive-sense RNA segments: RNA1, encoding the RNA replicase, and RNA2, encoding the capsid protein pre
10 embrane-based assay that consisted of a BVDV RNA replicase complex isolated from virus-infected cells
11                                          The RNA replicase extracted from Brome mosaic virus (BMV)-in
12 smid DNA vaccine incorporating Sindbis virus RNA replicase functions (pSINCP) and expressing antigen
13                                      The FHV RNA replicase is encoded in the larger of the two segmen
14 NA synthesis by the brome mosaic virus (BMV) RNA replicase is more efficient if the template contains
15  the template affects RNA synthesis by viral RNA replicases is poorly understood.
16 eplication through proteolytic processing of RNA replicase machinery.
17 ccomplished this by using a gene encoding an RNA replicase polyprotein derived from the Semliki fores
18 plication and RNA3 synthesis depended on FHV RNA replicase protein A and 3'-terminal RNA1 sequences b
19                                           An RNA replicase ribozyme has long been sought by chemists
20  gain insights into the functions of a viral RNA replicase, we have assembled in vitro and entirely f
21              When yeast cells expressing FHV RNA replicase were transfected with a chimeric RNA compo

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