Characterization of the Glycoproteins of Crimean-Congo Hemorrhagic Fever Virus
Open Access
- 15 July 2002
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 76 (14), 7263-7275
- https://doi.org/10.1128/jvi.76.14.7263-7275.2002
Abstract
Crimean-Congo hemorrhagic fever (CCHF) virus is the cause of an important tick-borne disease of humans throughout regions of Africa, Europe, and Asia. Like other members of the genus Nairovirus, family Bunyaviridae, the CCHF virus M genome RNA segment encodes the virus glycoproteins. Sequence analysis of the CCHF virus (Matin strain) M RNA segment revealed one major open reading frame that potentially encodes a precursor polyprotein 1,689 amino acids (aa) in length. Comparison of the deduced amino acid sequences of the M-encoded polyproteins of Nigerian, Pakistani, and Chinese CCHF virus strains revealed two distinct protein regions. The carboxyl-terminal 1,441 aa are relatively highly conserved (up to 8.4% identity difference), whereas the amino-terminal 243 to 248 aa are highly variable (up to 56.4% identity difference) and have mucin-like features, including a high serine, threonine, and proline content (up to 47.3%) and a potential for extensive O-glycosylation. Analysis of released virus revealed two major structural glycoproteins, G2 (37 kDa) and G1 (75 kDa). Virus protein analysis by various techniques, including pulse-chase analysis and/or reactivity with CCHF virus-specific polyclonal and antipeptide antibodies, demonstrated that the 140-kDa (which contains the mucin-like region) and 85-kDa nonstructural proteins are the precursors of the mature G2 and G1 proteins, respectively. The amino termini of the CCHF virus (Matin strain) G2 and G1 proteins were established by microsequencing to be equivalent to aa 525 and 1046, respectively, of the encoded polyprotein precursor. The tetrapeptides RRLL and RKPL are immediately upstream of the cleavage site for mature G2 and G1, respectively. These are completely conserved among the predicted polyprotein sequences of all the CCHF virus strains and closely resemble the tetrapeptides that represent the major cleavage recognition sites present in the glycoprotein precursors of arenaviruses, such as Lassa fever virus (RRLL) and Pichinde virus (RKLL). These results strongly suggest that CCHF viruses (and other members of the genus Nairovirus) likely utilize the subtilase SKI-1/S1P-like cellular proteases for the major glycoprotein precursor cleavage events, as has recently been demonstrated for the arenaviruses.Keywords
This publication has 46 references indexed in Scilit:
- Predicting transmembrane protein topology with a hidden markov model: application to complete genomes11Edited by F. CohenJournal of Molecular Biology, 2001
- Host cell proteases controlling virus pathogenicityTrends in Microbiology, 1994
- Sexual and transovarian transmission of Crimean-Congo haemorrhagic fever virus in Hyalomma truncatum ticksResearch in Virology, 1992
- Mucin-Type GlycoproteinsCritical Reviews in Biochemistry and Molecular Biology, 1992
- Cell surface mucin-type glycoproteins and mucin-like domainsGlycobiology, 1991
- Viraemic transmission of Crimean-Congo haemorrhagic fever virus to ticksEpidemiology and Infection, 1991
- The Proteins and RNAs Specified by Clo Mor Virus, a Scottish NairovirusJournal of General Virology, 1985
- Synthesis of Bunyavirus-specific Proteins in a Continuous Cell Line (XTC-2) Derived from Xenopus laevisJournal of General Virology, 1985
- Polypeptide Synthesis of Dugbe Virus, a Member of the Nairovirus Genus of the BunyaviridaeJournal of General Virology, 1985
- Structural Polypeptides of Hazara VirusJournal of General Virology, 1981