Structural proteins of bovine coronavirus strain L 9: effects of the host cell and trypsin treatment

The polypeptide profile of the cell-adapted strain of bovine coronavirus (Mebus BCV-L 9) is remarkably affected by the host cell and trypsin. We compared the structural proteins of virus purified from different cell lines and found cell-dependent differences in the virus structure. BCV was purified...

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Veröffentlicht in:Archives of virology 1988, Vol.103 (1-2), p.35-45
Hauptverfasser: St Cyr-Coats, K S, Storz, J, Hussain, K A, Schnorr, K L
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Storz, J
Hussain, K A
Schnorr, K L
description The polypeptide profile of the cell-adapted strain of bovine coronavirus (Mebus BCV-L 9) is remarkably affected by the host cell and trypsin. We compared the structural proteins of virus purified from different cell lines and found cell-dependent differences in the virus structure. BCV was purified from four clones of human rectal tumour cells (HRT-18): 3F3, D2, 3E3, and 4B3. The structural profiles of BCV propagated in clones 3E3 and 3F3 were identical, consisting of proteins with molecular weights of 185, 160, 140, 125, 110, 100, 52, 46, 37, 31-34, and 26-28 kilodaltons (kd). BCV purified from clone D2 lacked the 100 kd species, and clone 4B3 yielded virus lacking the 46 kd protein. We compared the structures of BCV propagated in HRT-18 cells [BCV(HRT-18)] and virus raised in bovine fetal spleen cells [BCV(D2 BFS)]. The concentration of the 185 kd protein was higher in BCV (D2BFS), and it also contained a 200 kd species. Protein profiles of in vitro trypsin treated and untreated BCV(HRT-18) differed only under reducing conditions, suggesting that trypsin cleavage sites are located within disulfide-linked regions of affected proteins. Propagation of BCV in D2 BFS cells in the presence of trypsin resulted in cleavage of the 185 kd protein and a concomitant increase of the 100 kd protein. Activation of the fusion function probably depends on this cleavage process because fusion of BCV-infected D2 BFS cells is trypsin dependent.
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We compared the structural proteins of virus purified from different cell lines and found cell-dependent differences in the virus structure. BCV was purified from four clones of human rectal tumour cells (HRT-18): 3F3, D2, 3E3, and 4B3. The structural profiles of BCV propagated in clones 3E3 and 3F3 were identical, consisting of proteins with molecular weights of 185, 160, 140, 125, 110, 100, 52, 46, 37, 31-34, and 26-28 kilodaltons (kd). BCV purified from clone D2 lacked the 100 kd species, and clone 4B3 yielded virus lacking the 46 kd protein. We compared the structures of BCV propagated in HRT-18 cells [BCV(HRT-18)] and virus raised in bovine fetal spleen cells [BCV(D2 BFS)]. The concentration of the 185 kd protein was higher in BCV (D2BFS), and it also contained a 200 kd species. Protein profiles of in vitro trypsin treated and untreated BCV(HRT-18) differed only under reducing conditions, suggesting that trypsin cleavage sites are located within disulfide-linked regions of affected proteins. Propagation of BCV in D2 BFS cells in the presence of trypsin resulted in cleavage of the 185 kd protein and a concomitant increase of the 100 kd protein. 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We compared the structural proteins of virus purified from different cell lines and found cell-dependent differences in the virus structure. BCV was purified from four clones of human rectal tumour cells (HRT-18): 3F3, D2, 3E3, and 4B3. The structural profiles of BCV propagated in clones 3E3 and 3F3 were identical, consisting of proteins with molecular weights of 185, 160, 140, 125, 110, 100, 52, 46, 37, 31-34, and 26-28 kilodaltons (kd). BCV purified from clone D2 lacked the 100 kd species, and clone 4B3 yielded virus lacking the 46 kd protein. We compared the structures of BCV propagated in HRT-18 cells [BCV(HRT-18)] and virus raised in bovine fetal spleen cells [BCV(D2 BFS)]. The concentration of the 185 kd protein was higher in BCV (D2BFS), and it also contained a 200 kd species. Protein profiles of in vitro trypsin treated and untreated BCV(HRT-18) differed only under reducing conditions, suggesting that trypsin cleavage sites are located within disulfide-linked regions of affected proteins. Propagation of BCV in D2 BFS cells in the presence of trypsin resulted in cleavage of the 185 kd protein and a concomitant increase of the 100 kd protein. 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Protein profiles of in vitro trypsin treated and untreated BCV(HRT-18) differed only under reducing conditions, suggesting that trypsin cleavage sites are located within disulfide-linked regions of affected proteins. Propagation of BCV in D2 BFS cells in the presence of trypsin resulted in cleavage of the 185 kd protein and a concomitant increase of the 100 kd protein. Activation of the fusion function probably depends on this cleavage process because fusion of BCV-infected D2 BFS cells is trypsin dependent.</abstract><cop>Austria</cop><pmid>2463821</pmid><tpages>11</tpages></addata></record>
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subjects Animals
Blotting, Western
Cattle
Cells, Cultured - microbiology
Cells, Cultured - physiology
Coronaviridae - metabolism
Cytopathogenic Effect, Viral
Humans
Molecular Weight
Oxidation-Reduction
Silver
Staining and Labeling
Trypsin - pharmacology
Viral Proteins - metabolism
Viral Structural Proteins
Virus Cultivation
title Structural proteins of bovine coronavirus strain L 9: effects of the host cell and trypsin treatment
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