Sequence analysis of human coronavirus 229E mRNAs 4 and 5: evidence for polymorphism and homology with myelin basic protein

Patricia Jouvenne, Samir Mounir, Janet N. Stewart, Christopher D. Richardson, Pierre J. Talbot

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20 Citas (Scopus)

Resumen

Human coronaviruses (HCV) are important pathogens responsible for respiratory, gastrointestinal and possibly neurological disorders. To better understand the molecular biology of the prototype HCV-229E strain, the nucleotide sequence of the 5'-unique regions of mRNAs 4 and 5 were determined from cloned cDNAs. Sequence analysis of the cDNAs synthesized from mRNA 4 revealed a major difference with previously published results. However, polymerase chain reaction amplification of this region showed that the sequenced cDNAs were produced from minor RNA species, an indication of possible genetic polymorphism in this region of the viral genome. The mutated messenger RNA 4 contains two ORFs: (1) ORF4a consisting of 132 nucleotides which potentially encodes a 44-amino acid polypeptide of 4653 Da; this coding sequence is preceded by a consensus transcriptional initiation sequence, CUAAACU, similar to the ones found upstream of the N and M genes; (2) ORF4b of 249 nucleotides potentially encoding an 83-amino acid basic and leucine-rich polypeptide of 9550 Da. On the other hand, mRNA 5 contains one single ORF of 231 nucleotides which could encode a 77-amino acid basic and leucine-rich polypeptide of 9046 Da. This putative protein presents a significant degree of amino acid homology (33%) with its counterpart found in transmissible gastroenteritis coronavirus (TGEV). The proteins in the two different viruses exhibit similar molecular weights and are extremely hydrophobic. Interestingly, a sequence homology of five amino acids was found between the protein encoded by ORF4b of HCV-229E and an immunologically important region of human myelin basic protein.

Idioma originalEnglish
Páginas (desde-hasta)125-141
Número de páginas17
PublicaciónVirus Research
Volumen22
N.º2
DOI
EstadoPublished - feb. 1992
Publicado de forma externa

Nota bibliográfica

Funding Information:
We thank Lucie Summersidef or excellents ecretariala ssistanceP. .J. acknowl-edgesc ontinuouss tudentships upport from the Fonds de la Recherche en Sante du Quebec. J.N.S is grateful to the Institut Armand-Frappier for a studentship award. This work was supported by Grant MT-9203 awarded by the Medical Research Council of Canada to P.J. Talbot, who also gratefully acknowledges salary support in the form of a University ResearchS cholarshipf rom the Natural Sciencesa nd Engineering Research Council of Canada.W e thank R. Brousseau (BiotechnologyR esearchC enter, National ResearchC ouncil of Canada,M ontreal, Quebec, Canada) for his valuable help in sequencea nalysisw ith the PC/GENE program.

ASJC Scopus Subject Areas

  • Virology
  • Infectious Diseases
  • Cancer Research

PubMed: MeSH publication types

  • Comparative Study
  • Journal Article
  • Research Support, Non-U.S. Gov't

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