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1 m tuberculosis; and an antibody epitope from mengovirus.
2 al polyprotein amounts relative to wild-type mengovirus.
3 loops in the 3' untranslated region (UTR) of mengovirus.
4 cornaviruses such as human rhinovirus 14 and mengovirus.
5                                      Stem I (mengovirus bases 7666 to 7687) was found to be dispensab
6    Deletions of each stem were engineered in mengovirus cDNAs and also in mengovirus replicons, in wh
7 ngovirus antibody confers protection against mengovirus challenge.
8 ingly, and doubly phosphorylated variants of Mengovirus L (L(M)) show both modifications act together
9  that poly(C) tract-dependent attenuation of mengovirus may be due in part to a viral replication def
10               Previously, we described three mengovirus mutants derived from cDNA plasmids, containin
11 When coxsackievirus B3, human rhinovirus 14, mengovirus, or hepatitis A virus (HAV) capsid proteins w
12                                We found that mengovirus plaque formation in HeLa or L cells was inhib
13               The effects of dipyridamole on mengovirus replication in vivo and in vitro were examine
14           Studies with luciferase-expressing mengovirus replicons showed that viral protein synthesis
15 e engineered in mengovirus cDNAs and also in mengovirus replicons, in which part of the viral capsid
16         Unlike poliovirus, microinjection of mengovirus RNA yields high viral titers (about 10(7) PFU
17 ells confirm the essential dispensability of mengovirus's poly(C) tract but reveal a subtle, measurab
18                      Compared with wild-type mengovirus strain M, mutants with shortened poly(C) trac
19 , and deletions in this motif did not affect mengovirus virulence in the same manner as deletions in

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