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1 genomic core promoter of the closely related brome mosaic virus.
2 and increase virion stability of a mutant of brome mosaic virus.
5 nts, and among these, the tripartite viruses Brome mosaic virus and Cucumber mosaic virus have been s
6 egulated proteins in both 1 SL and 2 SL by a brome mosaic virus-based gene silencing vector in maize
7 We report here that overexpression of the brome mosaic virus (BMV) 1a protein can repress viral RN
9 ve been performed with plant viruses such as brome mosaic virus (BMV) and tomato bushy stunt virus (T
10 e-like 1a and polymerase-like 2a proteins of brome mosaic virus (BMV) are required for viral RNA repl
11 iously we demonstrated that a 27 nt RNA from brome mosaic virus (BMV) can direct correct initiation o
12 A templates of 33 nucleotides containing the brome mosaic virus (BMV) core subgenomic promoter were u
13 uction, and molecular modeling, we show that brome mosaic virus (BMV) CP can assemble in vivo two rem
18 strand subgenomic RNAs, the requirements for brome mosaic virus (BMV) genomic plus-strand RNA synthes
19 ructure present at the 3' end of each of the brome mosaic virus (BMV) genomic RNAs is sufficient to d
20 ecruitment to replication of the plant virus brome mosaic virus (BMV) genomic RNAs when replication i
21 ion of wild-type (wt) capsid protein (CP) of Brome mosaic virus (BMV) has an intrinsic property of mo
30 dral particles of amino terminally truncated brome mosaic virus (BMV) protein were created by treatme
31 g Nicotiana benthamiana leaves, we show that brome mosaic virus (BMV) replicase is competent to initi
33 her Saccharomyces cerevisiae, which supports brome mosaic virus (BMV) replication, also supports BMV
34 trated that plus-strand RNA synthesis by the brome mosaic virus (BMV) RNA replicase is more efficient
47 leotides (-17, -14, -13, and -11) within the brome mosaic virus (BMV) subgenomic core promoter are re
48 ave been proposed for the recognition of the brome mosaic virus (BMV) subgenomic core promoter by the
50 higher eukaryotic positive-strand RNA virus brome mosaic virus (BMV) to replicate in yeast to show t
51 e three subsets of virions that comprise the Brome mosaic virus (BMV) were previously thought to be i
52 tions of genome segments from the tripartite Brome mosaic virus (BMV) were transiently expressed in l
56 A CAM is required for the replication of Brome Mosaic Virus (BMV), a plant-infecting RNA virus th
57 he multidomain RNA replication protein 1a of brome mosaic virus (BMV), a positive-strand RNA virus in
63 ultifunctional RNA replication protein 1a of brome mosaic virus (BMV), a positive-strand RNA virus, l
65 s form homologous recombination hot spots in brome mosaic virus (BMV), a tripartite positive-stranded
66 three genomic and a single subgenomic RNA of brome mosaic virus (BMV), an RNA virus infecting plants,
67 ral replication features with the tripartite brome mosaic virus (BMV), an RNA virus that infects plan
68 a previously undescribed role for the TLS of brome mosaic virus (BMV), and potentially for cellular t
69 liovirus, turnip yellow mosaic virus (TYMV), brome mosaic virus (BMV), and satellite tobacco mosaic v
73 ens reveals that the replication of TBSV and brome mosaic virus (BMV), which belongs to a different s
81 the structures of several VLPs obtained from brome mosaic virus capsid proteins and gold nanoparticle
83 ously known: one pair involves the 3' end of brome mosaic virus genomic RNA (PKB134) and the alternat
84 work, folding dynamics for the TLS domain of Brome Mosaic Virus have been investigated using single-m
85 or the retrotransposition of Ty elements and brome mosaic virus in yeast cells, we assessed the role
86 ibition of rabbit reticulocyte expression by Brome mosaic virus mRNA, suggesting that inhibition of i
88 ting the relative levels and interactions of brome mosaic virus replication factors 1a and 2a polymer
90 l acetyltransferase) RNA or naturally capped brome mosaic virus RNA, however, was not affected by the
91 nitiation of subgenomic RNA synthesis by the brome mosaic virus RNA-dependent RNA polymerase (RdRp),
94 that Ded1p is also required for translating brome mosaic virus RNA2 in yeast thus raise the intrigui
96 ynthase, satellite tobacco mosaic virus, and brome mosaic virus show that the spherical elastic model
97 These results identify base moieties in the brome mosaic virus subgenomic promoter required for effi
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