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RNA transcription analysis and completion of the genome sequence of yellow head nidovirus
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Document Title
RNA transcription analysis and completion of the genome sequence of yellow head nidovirus
Author
Sittidjlokratna N, Dangtip S, Cowley JA, Walker PJ
Name from Authors Collection
Affiliations
Commonwealth Scientific & Industrial Research Organisation (CSIRO); National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC); Mahidol University; Commonwealth Scientific & Industrial Research Organisation (CSIRO)
Type
Article
Source Title
VIRUS RESEARCH
ISSN
0168-1702
Year
2008
Volume
136
Issue
1-2
Page
157-165
Open Access
Bronze, Green Published
Publisher
ELSEVIER
DOI
10.1016/j.virusres.2008.05.008
Format
Abstract
Yellow head virus (YHV) is a pathogen of the black tiger shrimp (Penaeus monodon) and, with gill-associated virus (GAV), is one of two known invertebrate nidoviruses. We describe sequences of the large replicase gene (ORF1a) and 5'- and 3'-terminal UTRs, completing the 26,662 nt sequence of the YHV genome. ORF1a (12,219 nt) encodes a similar to 462,662 Da polypeptide containing a putative 3C-like protease and a putative papain-like protease with the canonical C/H catalytic dyad and alpha + beta fold. The read-through pp1ab polyprotein contains putative uridylate-specific endoribonuclease and ribose-2'-O-methyl transferase domains, and an exonuclease domain incorporating unusual dual Zn2+-binding fingers. Upstream of ORF1a, the 71 nt 5'-UTR shares 82.4% identity with the 68 nt 5'-UTR of GAV. The 677 nt T-terminal region contains a single 60 nt ORF, commencing 298 nt downstream of ORF3, that is identical to N-terminal coding region of the 249 nt GAV ORF4. Northern blots using RNA from YHV-infected shrimp and probes directed at ORF1a, ORF1b, ORF2 and ORF3 identified a nested set of 3'-coterminal RNAs comprising the full-length genomic RNA and two sub-genomic (sg) mRNAs. Intergenic sequences upstream of ORF2 and ORF3 share high identity with GAV, particularly in the conserved domains predicted to mediate sgmRNA transcription. Crown Copyright (c) 2008 Published by Elsevier B.V. All rights reserved.
Keyword
Genome sequence | Penaeus monodon | Shrimp | Transcription | YHV
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WOS