Recombinant human interferon-γ. Differences in glycosylation and proteolytic processing lead to heterogeneity in batch culture
Рекомбинантный человеческий интерферон-γ: различия в гликозилировании и протеолитической обработке приводят к гетерогенности при периодическом культивировании
1990-12-01
SCID: 54.1/hws7ftfg
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CHO cellsbatch cultureprotein glycosylationproteolytic processingrecombinant human interferon-gamma
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Abstract (AI)
Recombinant human interferon-gamma (Hu-IFN-gamma) produced by Chinese-hamster ovary (CHO) cells was analysed by immunoprecipitation and SDS/PAGE. Up to twelve molecular-mass variants were secreted by this cell line. Three variants were recovered after enzymic removal of all N-linked oligosaccharides or when glycosylation was inhibited by tunicamycin. The presence of three polypeptide forms rather than a single form suggested that proteolytic cleavage had occurred at two sites in both the glycosylated and non-glycosylated forms. Proteolytically cleaved IFN-gamma was more prevalent in cell lysates than in the secreted glycoprotein. In common with naturally produced IFN-gamma, both fully glycosylated IFN-gamma (asparagine residues 28 and 100 occupied) and partially glycosylated product (thought to be substituted at position Asn28) were secreted. This was deduced from the Mr of the glycosylated products and the relative amounts of sialic acid expressed by each variant. In contrast with naturally produced IFN-gamma, non-glycosylated IFN-gamma was also secreted by the transfected CHO cells. When the cells were grown in batch culture in serum-free medium under pH and dissolved-oxygen control, the proportion of non-glycosylated IFN-gamma increased from 3 to 5% after 3 h, to 30% of the total IFN-gamma present after 195 h. This change in the proportion of glycosylated protein produced was not seen when metabolically labelled IFN-gamma was incubated for 96 h with cell-free supernatant from actively growing CHO cells. This implied that an alteration in intracellular glycosylation was occurring rather than a degradation of oligosaccharide side chains after secretion. The decrease in IFN-gamma glycosylation was independent of the glucose concentration in the culture medium, but could be related to specific growth and IFN-gamma production rates, as these declined steadily after 50 h of culture, in line with the increased production of non-glycosylated IFN-gamma.
Key Findings
1
CHO cells producing recombinant human interferon-γ secreted up to twelve molecular-mass variants, reflecting heterogeneity in glycosylation and proteolytic processing.
2
CHO cells secreted fully glycosylated interferon-γ, partially glycosylated product predominantly substituted at Asn28, and nonglycosylated interferon-γ unlike naturally produced interferon-γ.
3
During serum-free batch culture, the nonglycosylated fraction increased from 3–5% after 3 hours to 30% after 195 hours, apparently because of altered intracellular glycosylation rather than extracellular oligosaccharide degradation.
4
Enzymatic deglycosylation or tunicamycin treatment reduced the variants to three polypeptide forms, indicating cleavage at two sites in both glycosylated and nonglycosylated interferon-γ.
5
Proteolytically cleaved interferon-γ was more abundant in cell lysates than among secreted glycoproteins, suggesting intracellular or pre-secretion processing.
6
The increasing nonglycosylated fraction was independent of glucose concentration and correlated with declining specific growth and interferon-γ production rates after approximately 50 hours.
Research Object
Recombinant human interferon-gamma (Hu-IFN-gamma) produced and secreted by Chinese-hamster ovary (CHO) cells in batch culture
Research Subject
Heterogeneity of Hu-IFN-gamma caused by differential N-linked glycosylation and proteolytic cleavage, including the time-dependent increase in non-glycosylated forms during batch culture
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1990-12-01
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