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Journal of Virology, March 1999, p. 1941-1948, Vol. 73, No. 3
0022-538X/99/$00.00+0
Molecular Evolution of the Human Enteroviruses:
Correlation of Serotype with VP1 Sequence and Application to
Picornavirus Classification
M. Steven
Oberste,*
Kaija
Maher,
David R.
Kilpatrick, and
Mark A.
Pallansch
Respiratory and Enteric Viruses Branch,
Division of Viral and Rickettsial Diseases, National Center for
Infectious Diseases, Centers for Disease Control and Prevention,
Atlanta, Georgia 30333
Received 3 September 1998/Accepted 30 November 1998
Sixty-six human enterovirus serotypes have been identified by serum
neutralization, but the molecular determinants of the serotypes are
unknown. Since the picornavirus VP1 protein contains a number of
neutralization domains, we hypothesized that the VP1 sequence should
correspond with neutralization (serotype) and, hence, with phylogenetic
lineage. To test this hypothesis and to analyze the phylogenetic
relationships among the human enteroviruses, we determined the complete
VP1 sequences of the prototype strains of 47 human enterovirus
serotypes and 10 antigenic variants. Our sequences, together with those
available from GenBank, comprise a database of complete VP1 sequences
for all 66 human enterovirus serotypes plus additional strains of seven
serotypes. Phylogenetic trees constructed from complete VP1 sequences
produced the same four major clusters as published trees based on
partial VP2 sequences; in contrast to the VP2 trees, however, in the
VP1 trees strains of the same serotype were always monophyletic. In
pairwise comparisons of complete VP1 sequences, enteroviruses of the
same serotype were clearly distinguished from those of heterologous
serotypes, and the limits of intraserotypic divergence appeared to be
about 25% nucleotide sequence difference or 12% amino acid sequence difference. Pairwise comparisons suggested that coxsackie A11 and A15
viruses should be classified as strains of the same serotype, as should
coxsackie A13 and A18 viruses. Pairwise identity scores also
distinguished between enteroviruses of different clusters and
enteroviruses from picornaviruses of different genera. The data suggest
that VP1 sequence comparisons may be valuable in enterovirus typing and
in picornavirus taxonomy by assisting in the genus assignment of
unclassified picornaviruses.
*
Corresponding author. Mailing address: Centers for
Disease Control and Prevention, 1600 Clifton Rd. NE, Mailstop G-17,
Atlanta, GA 30333. Phone: (404) 639-2751. Fax: (404) 639-4011. E-mail: mbo2{at}cdc.gov.
Journal of Virology, March 1999, p. 1941-1948, Vol. 73, No. 3
0022-538X/99/$00.00+0
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