Differences in N-glycosylation of recombinant human coagulation factor VII derived from BHK, CHO, and HEK293 cells

Различия в N-гликозилировании рекомбинантного человеческого фактора VII свертывания крови, полученного из клеток BHK, CHO и HEK293
Ernst Böhm, Birgit Seyfried, Michael Dockal, Michael Graninger, Meinhard Hasslacher, Marianne Neurath, Christian Konetschny, Peter Matthiessen, Artur Mitterer, Friedrich Scheiflinger
2015-09-18

CHO cellsHEK293 cellsN-glycosylationrecombinant factor VIIterminal sialylation
UNLABELLED: BACKGROUND & METHODS: Recombinant factor VII (rFVII), the precursor molecule for recombinant activated FVII (rFVIIa), is, due to its need for complex post translational modifications, produced in mammalian cells. To evaluate the suitability of a human cell line in order to produce rFVII with post-translational modifications as close as possible to pdFVII, we compared the biochemical properties of rFVII synthesized in human embryonic kidney-derived (HEK)293 cells (HEK293rFVII) with those of rFVII expressed in Chinese hamster ovary (CHO, CHOrFVII) and baby hamster kidney (BHK, BHKrFVII) cells, and also with those of plasma derived FVII (pdFVII), using various analytical methods. rFVII was purified from selected production clones derived from BHK, CHO, and HEK293 cells after stable transfection, and rFVII isolates were analyzed for protein activity, impurities and post-translational modifications. RESULTS & DISCUSSION: The analytical results showed no apparent gross differences between the various FVII proteins, except in their N-linked glycosylation pattern. Most N-glycans found on rFVII produced in HEK293 cells were not detected on rFVII from CHO and BHK cells, or, somewhat unexpectedly, on pdFVII; all other protein features were similar. HEK293rFVII glycans were mainly characterized by a higher structural variety and a lower degree of terminal sialylation, and a high amount of terminal N-acetyl galactosamines (GalNAc). All HEK293rFVII oligosaccharides contained one or more fucoses (Fuc), as well as hybrid and high mannose (Man) structures. CONCLUSIONS: From all rFVII isolates investigated, CHOrFVII contained the highest degree of sialylation and no terminal GalNAc, and CHO cells were therefore assumed to be the best option for the production of rFVII.
1
All HEK293rFVII oligosaccharides contained fucose and included hybrid and high-mannose structures, distinguishing them from CHO- and BHK-derived products and pdFVII.
2
CHOrFVII had the highest degree of sialylation and lacked terminal N-acetylgalactosamine, making CHO cells the preferred production platform among those evaluated.
3
HEK293-derived rFVII exhibited greater N-glycan structural diversity, lower terminal sialylation, and abundant terminal N-acetylgalactosamine compared with other FVII preparations.
4
Recombinant FVII produced in BHK, CHO, and HEK293 cells showed broadly similar protein features, with major differences confined to N-linked glycosylation.

Recombinant human coagulation factor VII produced in BHK, CHO, and HEK293 cells, compared with plasma-derived factor VII

Differences in N-linked glycosylation patterns and related biochemical properties of recombinant factor VII across production cell lines

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2015-09-18
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Ernst Böhm
Birgit Seyfried
Michael Dockal
Michael Graninger
Meinhard Hasslacher
Marianne Neurath
Christian Konetschny
Peter Matthiessen
Artur Mitterer
Friedrich Scheiflinger
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