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PMID: 1566575 Published · ppublish English Journal Article

NYVAC: a highly attenuated strain of vaccinia virus.

Virology ·Vol. 188 ·No. 1 ·1992-05-00 ·Pages 217-32

Tartaglia J, Perkus ME, Taylor J, Norton EK, Audonnet JC, Cox WI, Davis SW, van der Hoeven J, Meignier B, Riviere M

Abstract

A highly attenuated vaccinia virus strain, NYVAC (vP866), was derived from a plaque-cloned isolate of the Copenhagen vaccine strain by the precise deletion of 18 open reading frames (ORFs) from the viral genome. Among the ORFs deleted from NYVAC (vP866) are two genes involved in nucleotide metabolism, the thymidine kinase (ORF J2R) and the large subunit of the ribonucleotide reductase (ORF I4L); the gene encoding the viral hemagglutinin (ORF A56R); the remnant (ORF A26L) of a highly expressed gene responsible for the formation of A-type inclusion bodies; the disrupted gene (ORFs B13R/B14R) normally encoding a serine protease inhibitor; and a block of 12 ORFs bounded by two known viral host range regulatory functions (ORFs C7L through K1L). Within this block a secretory protein (ORF N1L) implicated in viral virulence and a functional complement 4b binding protein (ORF C3L) are encoded. The ORFs were deleted in a manner which prevents the synthesis of undesirable novel gene products. The attenuation characteristics of the derived NYVAC strain were compared in in vitro and in vivo studies with those of the Western Reserve (WR) laboratory strain, the New York City Board of Health vaccine strain (Wyeth), the parental plaque-cloned isolate (VC-2) of the Copenhagen vaccine strain used to derive NYVAC, and the avipox virus canarypox (ALVAC), which is naturally restricted for replication to avian species. The NYVAC strain was demonstrated to be highly attenuated by the following criteria: (a) no detectable induration or ulceration at the site of inoculation on rabbit skin; (b) rapid clearance of infectious virus from the intradermal site of inoculation on rabbit skin; (c) absence of testicular inflammation in nude mice; (d) greatly reduced virulence as demonstrated by the results of intracranial challenge of both 3-week-old or newborn mice; (e) greatly reduced pathogenicity and failure to disseminate in immunodeficient (nude or cyclophosphamide treated) mice; and (f) dramatically reduced ability to replicate on a variety of human tissue culture cells. Despite these highly attenuated characteristics, the NYVAC strain, as a vector, retains the ability to induce strong immune responses to extrinsic antigens.

MeSH Terms
Animals Cell Line Gene Expression Genome, Viral Humans Mice Open Reading Frames Precipitin Tests Rabbits Rabies virus/genetics Restriction Mapping Vaccination Vaccines, Attenuated/immunology Vaccinia virus/genetics,immunology,pathogenicity,physiology Viral Envelope Proteins/genetics Virulence Virus Replication
Chemicals
Vaccines, Attenuated Viral Envelope Proteins
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Tartaglia J
Virogenetics Corporation, Troy, New York 12180.
Perkus M E
Taylor J
Norton E K
Audonnet J C
Cox W I
Davis S W
van der Hoeven J
Meignier B
Riviere M
Article Info
Journal
Virology
Abbr.
Virology
ISSN
0042-6822
Published
1992-05-00
Pages
217-32
Language
English
Region
United States
NLM ID
0110674
Subset
IM
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