Abstract
Infectious human respiratory syncytial virus (RSV) was produced by the intracellular coexpression of five plasmid-borne cDNAs. One cDNA encoded a complete positive-sense version of the RSV genome (corresponding to the replicative intermediate RNA or antigenome), and each of the other four encoded a separate RSV protein, namely, the major nucleocapsid N protein, the nucleocapsid P phosphoprotein, the major polymerase L protein, or the protein from the 5' proximal open reading frame of the M2 mRNA [M2(ORF1)]. RSV was not produced if any of the five plasmids was omitted. The requirement for the M2(ORF1) protein is consistent with its recent identification as a transcription elongation factor and confirms its importance for RSV gene expression. It should thus be possible to introduce defined changes into infectious RSV. This should be useful for basic studies of RSV molecular biology and pathogenesis; in addition, there are immediate applications to the development of live attenuated vaccine strains bearing predetermined defined attenuating mutations.
MeSH Terms
Base Sequence
Cloning, Molecular
DNA, Antisense
DNA, Complementary/genetics
Gene Expression Regulation, Viral
HN Protein
Molecular Sequence Data
Open Reading Frames
RNA, Messenger/genetics
RNA, Viral/genetics
Respiratory Syncytial Virus, Human/genetics,growth & development,immunology
Transcription, Genetic
Transfection
Vaccines, Synthetic/genetics
Viral Envelope Proteins
Viral Plaque Assay
Viral Proteins/metabolism
Viral Vaccines/genetics
Chemicals
DNA, Antisense
DNA, Complementary
HN Protein
RNA, Messenger
RNA, Viral
Vaccines, Synthetic
Viral Envelope Proteins
Viral Proteins
Viral Vaccines
attachment protein G
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Collins P L
Laboratory of Infectious Diseases, National Institute of Allergy and Infectious Diseases, Bethesda, MD 20892-0720, USA.
Hill M G
Camargo E
Grosfeld H
Chanock R M
Murphy B R
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