scholarly journals Effect of N-glycosylation inhibition on the synthesis and processing of classical swine fever virus glycoproteins.

2007 ◽  
Vol 54 (4) ◽  
pp. 813-819 ◽  
Author(s):  
Jolanta Tyborowska ◽  
Ewa Zdunek ◽  
Bogusław Szewczyk

Classical swine fever virus (CSFV) is often used as a surrogate model in molecular studies of the closely related hepatitis C virus. In this report we have examined the effect of the inhibition of glycosylation on the survival and maturation of CSFV. Viral glycoproteins (E(rns), E1, E2) form biologically active complexes - homo- and heterodimers, which are indispensable for viral life cycle. Those complexes are highly N-glycosylated. We studied the influence of N-glycosylation on dimer formation using E(rns) and E2 glycoproteins produced in insect cells after infection with recombinant baculoviruses. The glycoproteins were efficiently synthesized in insect cells, had similar molecular masses and formed dimers like their natural counterparts. Surprisingly, the addition of tunicamycin (an antibiotic which blocks early steps of glycosylation) to insect cell culture blocked not only dimer formation but it also led to an almost complete disappearance of E2 even in monomeric form. Tunicamycin did not exert a similar effect on the synthesis and formation of E(rns) dimers; the dimers were still formed, which suggests that E(rns) glycan chains are not necessary for dimer formation. We have also found that very low doses of tunicamycin (much lower than those used for blocking N-glycosylation) drastically reduced CSFV spread in SK6 (swine kidney) cell culture and the virus yield. These facts indicate that N-glycosylation inhibitors structurally similar to tunicamycin may be potential therapeutics for the inhibition of the spread of CSFV and related viruses.

1998 ◽  
Vol 72 (9) ◽  
pp. 7681-7684 ◽  
Author(s):  
Jon-Duri Tratschin ◽  
Christian Moser ◽  
Nicolas Ruggli ◽  
Martin A. Hofmann

ABSTRACT The sequence encoding the viral leader proteinase Nprowas replaced by the murine ubiquitin gene in a full-length cDNA clone of the classical swine fever virus (CSFV) strain Alfort/187. The recombinant virus vA187-Ubi showed growth characteristics similar to those of the parent vA187-1 virus. At two occasions cells infected with vA187-Ubi exhibited a cytopathic effect and were found to contain a subgenomic viral RNA. This RNA lacked the same viral genes as the subgenomic RNA which has been found in all cytopathogenic CSFV strains analyzed so far, but it maintained the ubiquitin sequence.


2014 ◽  
Vol 29 (2) ◽  
pp. 207-213
Author(s):  
Sung Min Bae ◽  
Seung Hee Lee ◽  
Won Suk Kwak ◽  
Yong Oh Ahn ◽  
Tae Young Shin ◽  
...  

Viruses ◽  
2021 ◽  
Vol 13 (11) ◽  
pp. 2204
Author(s):  
Manjula Mischler ◽  
Gregor Meyers

The pestivirus classical swine fever virus (CSFV) represents one of the most important pathogens of swine. Its virulence is dependent on the RNase activity of the essential structural glycoprotein Erns that uses an amphipathic helix as a membrane anchor and forms homodimers via disulfide bonds employing cysteine 171. Dimerization is not necessary for CSFV viability but for its virulence. Mutant Erns proteins lacking cysteine 171 are still able to interact transiently as shown in crosslink experiments. Deletion analysis did not reveal the presence of a primary sequence-defined contact surface essential for dimerization, but indicated a general importance of an intact ectodomain for efficient establishment of dimers. Pseudoreverted viruses reisolated in earlier experiments from pigs with mutations Cys171Ser/Ser209Cys exhibited partially restored virulence and restoration of the ability to form Erns homodimers. Dimer formation was also observed for experimentally mutated proteins, in which other amino acids at different positions of the membrane anchor region of Erns were replaced by cysteine. However, with one exception of two very closely located residues, the formation of disulfide-linked dimers was only observed for cysteine residues located at the same position of the helix.


Virology ◽  
1994 ◽  
Vol 200 (2) ◽  
pp. 558-565 ◽  
Author(s):  
Marcel M. Hulst ◽  
Gary Himes ◽  
Ed Newbigin ◽  
Rob J.M. Moormann

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