๐ Primary structure and translation of a defective interfering rna of murine coronavirus
An intracellular defective-interfering (DI) RNA, DIssE, of mouse hepatitis virus (MHV) obtained after serial high multiplicity passage of the virus was cloned and sequenced. DIssE RNA is composed of three noncontiguous genomic regions, representing the first 864 nucleotides of the Fend, an internal 748 nucleotides of the polymerase gene, and 601 nucleotides from the 3โฒ end of the parental MHV genome. The DIssE sequence contains one large continuous open reading frame. Two protein products from this open reading frame were identified both by in vitro translation and in DI-infected cells. Sequence comparison of DIssE and the corresponding parts of the parental virus genome revealed that DIssE had three base substitutions within the leader sequence and also a deletion of nine nucleotides located at the junction of the leader and the remaining genomic sequence. The 5โฒ end of DIssE RNA was heterogeneous with respect to the number of UCUAA repeats within the leader sequence. The parental MHV genomic RNA appears to have extensive and stable secondary structures at the regions where DI RNA rearrangements occurred. These data suggest that MHV DI RNA may have been generated as a result of the discontinuous and nonprocessive manner of MHV RNA synthesis. ยฉ 1988.
keywords
๐ reading frame (222)
๐ hepatitis virus (437)
๐ mouse hepatitis (371)
๐ data suggest (146)
๐ infected cells (307)
๐ open reading (215)
๐ leader sequence (32)
author
๐ค Makino, Shinji
๐ค Shieh, Chien Kou
๐ค Soe, Lisa H.
๐ค Baker, Susan C.
๐ค Lai, Michael M.C.
year
โฐ 1988
journal
๐ Virology
issn
๐ 10960341 00426822
volume
166
number
2
page
550-560
citedbycount
55
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