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1 sequence, FPIV, important for the budding of parainfluenza virus 5.
2 NASEK was dispensable for viruses, including parainfluenza virus 5 and Coxsackie B virus, that enter
3 athogens: human respiratory syncytial virus, parainfluenza virus 5, and Sendai virus.
4 ructed chimeras containing the ectodomain of parainfluenza virus 5 F (PIV5 F) and either the MPER, th
5  Here we report the crystal structure of the parainfluenza virus 5 F protein in its prefusion conform
6 ess the functional role of the paramyxovirus parainfluenza virus 5 F protein TM domain, alanine scann
7                      Here, a soluble form of parainfluenza virus 5 F was triggered to refold using te
8 rystal structure of a fragment of the simian parainfluenza virus 5 fusion protein (SV5 F), revealing
9 , we show that the FP from the paramyxovirus parainfluenza virus 5 fusogenic protein, F, forms an N-t
10 ng globular head domain of the paramyxovirus parainfluenza virus 5 HN protein is entirely dispensable
11 usion activation, F activation involving the parainfluenza virus 5 HN stalk domain, and properties of
12         By modeling the crystal structure of parainfluenza virus 5 into the density, it is shown that
13                            The paramyxovirus parainfluenza virus 5 mediates membrane merger through i
14 t robust maturation following infection with parainfluenza virus 5 or influenza virus.
15 hat Cav-1 colocalizes with the paramyxovirus parainfluenza virus 5 (PIV-5) nucleocapsid (NP), matrix
16                                              Parainfluenza virus 5 (PIV5) activates and is neutralize
17                      For the paramyxoviruses parainfluenza virus 5 (PIV5) and mumps virus, M-NP inter
18 Proline substitution in this region of HN of parainfluenza virus 5 (PIV5) and Newcastle disease virus
19     In this work, we generated a recombinant parainfluenza virus 5 (PIV5) containing NP from H5N1 (A/
20                            The paramyxovirus parainfluenza virus 5 (PIV5) enters cells by fusion of t
21 igh similarity to the structure of prefusion parainfluenza virus 5 (PIV5) F, with the main structural
22  Because only the prefusion structure of the parainfluenza virus 5 (PIV5) F-trimer is available, to s
23 MR spectroscopy, we show that the TMD of the parainfluenza virus 5 (PIV5) fusion protein adopts lipid
24                                              Parainfluenza virus 5 (PIV5) HN exists as a noncovalent
25                                              Parainfluenza virus 5 (PIV5) is a member of the Paramyxo
26                                              Parainfluenza virus 5 (PIV5) is a promising viral vector
27                                              Parainfluenza virus 5 (PIV5) is a prototypical paramyxov
28                                              Parainfluenza virus 5 (PIV5) is an appealing vector for
29                                              Parainfluenza virus 5 (PIV5) is an enveloped, single-str
30                             The P protein of parainfluenza virus 5 (PIV5) is an essential cofactor of
31                                              Parainfluenza virus 5 (PIV5) is thought to contribute to
32     To investigate the role of NP protein in parainfluenza virus 5 (PIV5) particle formation, NP prot
33        In this work, we tested a recombinant parainfluenza virus 5 (PIV5) strain expressing the glyco
34 serendipitously identified a viral mRNA from parainfluenza virus 5 (PIV5) that activates IFN expressi
35                              Preparations of parainfluenza virus 5 (PIV5) that are potent activators
36 quence variation of 16 different isolates of parainfluenza virus 5 (PIV5) that were isolated from a n
37 unable to be recognized by measles virus and parainfluenza virus 5 (PIV5) V proteins were tested in s
38                    We tested the recombinant parainfluenza virus 5 (PIV5) vectors expressing RSV glyc
39 he threonine residue at position 286 of P of parainfluenza virus 5 (PIV5) was found phosphorylated.
40     The V proteins of measles virus (MV) and parainfluenza virus 5 (PIV5) were introduced into HFLC u
41 rotein (prefusion form) of the paramyxovirus parainfluenza virus 5 (PIV5) WR isolate was determined.
42                                              Parainfluenza virus 5 (PIV5), a paramyxovirus, is not kn
43      Similar results were also observed with parainfluenza virus 5 (PIV5), a paramyxovirus, when neut
44           Here we show that vaccination with parainfluenza virus 5 (PIV5), a promising live viral vec
45                                 Infection by parainfluenza virus 5 (PIV5), a prototypical member of t
46                                The genome of parainfluenza virus 5 (PIV5), a prototypical paramyxovir
47                                              Parainfluenza virus 5 (PIV5), a prototypical paramyxovir
48 V), human parainfluenza virus 2 (hPIV2), and parainfluenza virus 5 (PIV5), all members of the genus R
49                                              Parainfluenza virus 5 (PIV5), formerly known as simian v
50  that a porcine isolate of the paramyxovirus parainfluenza virus 5 (PIV5), known as SER, requires a l
51       The strain diversity of a rubulavirus, parainfluenza virus 5 (PIV5), was investigated by compar
52                 Previously, we developed two parainfluenza virus 5 (PIV5)-based RSV vaccine candidate
53                    We previously generated a parainfluenza virus 5 (PIV5)-vectored vaccine candidate
54              In this study, we evaluated two parainfluenza virus 5 (PIV5)-vectored vaccines expressin
55      Similar results were also observed with parainfluenza virus 5 (PIV5).
56 he FP of the F protein of the paramyxovirus, parainfluenza virus 5 (PIV5).
57 f the matrix (M) protein of a paramyxovirus, parainfluenza virus 5 (PIV5).
58 -3 as a binding partner for the M protein of parainfluenza virus 5 (PIV5).
59  this study, we show that vaccination with a parainfluenza virus 5 recombinant vaccine candidate expr
60                                       Simian parainfluenza virus 5 (SV5) is a prototype of the Paramy
61 sion (F) protein of the paramxyovirus simian parainfluenza virus 5 (SV5) promotes virus-cell and cell
62 on (F) protein from the paramyxovirus simian parainfluenza virus 5 (SV5) resulted in mutant F protein
63 ined the ability of the paramyxovirus simian parainfluenza virus 5 (SV5) to affect cell cycle progres
64 recently published prefusogenic structure of parainfluenza virus 5/SV5 F places CBF(2) in direct cont
65 ed "stalk exposure model" first proposed for parainfluenza virus 5 to other paramyxoviruses and propo
66                                            A parainfluenza virus 5-vectored vaccine expressing the na

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