Inhibition of poly-LacNAc biosynthesis with release of CMP-Neu5Ac feedback inhibition increases the sialylation of recombinant EPO produced in CHO cells

Abstract Sialylation of recombinant therapeutic glycoproteins modulates their pharmacokinetic properties by affecting their in vivo half-life. N-glycan branching on glycoproteins increases the number of potential attachment sites for sialic acid. Here, we introduce a new approach for increasing the...

Full description

Bibliographic Details
Main Authors: Chung-Geun Lee, Myung Jin Oh, Seung-Yeol Park, Hyun Joo An, Jung Hoe Kim
Format: Article
Language:English
Published: Nature Publishing Group 2018-05-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-018-25580-9
id doaj-4f90bdf6a4af41ef87c8b171f0e83055
record_format Article
spelling doaj-4f90bdf6a4af41ef87c8b171f0e830552020-12-08T05:46:02ZengNature Publishing GroupScientific Reports2045-23222018-05-01811910.1038/s41598-018-25580-9Inhibition of poly-LacNAc biosynthesis with release of CMP-Neu5Ac feedback inhibition increases the sialylation of recombinant EPO produced in CHO cellsChung-Geun Lee0Myung Jin Oh1Seung-Yeol Park2Hyun Joo An3Jung Hoe Kim4Department of Biological Sciences, Korea Advanced Institute of Science and TechnologyGraduate School of Analytical Science & Technology, Chungnam National UniversityDivision of Rheumatology, Immunology and Allergy, Brigham and Women’s Hospital, and Department of Medicine, Harvard Medical SchoolGraduate School of Analytical Science & Technology, Chungnam National UniversityDepartment of Biological Sciences, Korea Advanced Institute of Science and TechnologyAbstract Sialylation of recombinant therapeutic glycoproteins modulates their pharmacokinetic properties by affecting their in vivo half-life. N-glycan branching on glycoproteins increases the number of potential attachment sites for sialic acid. Here, we introduce a new approach for increasing the sialylation of recombinant human erythropoietin (rhEPO) produced in CHO cells by modulating poly-N-acetyllactosamine (poly-LacNAc) biosynthesis. We did not observe an increase in rhEPO sialylation, however, until the feedback inhibition by intracellular cytidine monophosphate-N-acetylneuraminic acid (CMP-Neu5Ac), which is a limiting factor for sialylation, was released. Thus, we found that a combined approach inhibiting poly-LacNAc biosynthesis and releasing CMP-Neu5Ac feedback inhibition produces the most significant increase in rhEPO sialylation in metabolically engineered CHO cells. Furthermore, a detailed analysis of the resulting N-glycan structures using LC/MS revealed increased tri- and tetra- sialylated N-glycan structures accompanied by a reduction of di-sialylated N-glycan structures. These results validate our new approach for glycosylation engineering, and we expect this approach will be useful in future efforts to enhance the efficacy of other therapeutic glycoproteins.https://doi.org/10.1038/s41598-018-25580-9
collection DOAJ
language English
format Article
sources DOAJ
author Chung-Geun Lee
Myung Jin Oh
Seung-Yeol Park
Hyun Joo An
Jung Hoe Kim
spellingShingle Chung-Geun Lee
Myung Jin Oh
Seung-Yeol Park
Hyun Joo An
Jung Hoe Kim
Inhibition of poly-LacNAc biosynthesis with release of CMP-Neu5Ac feedback inhibition increases the sialylation of recombinant EPO produced in CHO cells
Scientific Reports
author_facet Chung-Geun Lee
Myung Jin Oh
Seung-Yeol Park
Hyun Joo An
Jung Hoe Kim
author_sort Chung-Geun Lee
title Inhibition of poly-LacNAc biosynthesis with release of CMP-Neu5Ac feedback inhibition increases the sialylation of recombinant EPO produced in CHO cells
title_short Inhibition of poly-LacNAc biosynthesis with release of CMP-Neu5Ac feedback inhibition increases the sialylation of recombinant EPO produced in CHO cells
title_full Inhibition of poly-LacNAc biosynthesis with release of CMP-Neu5Ac feedback inhibition increases the sialylation of recombinant EPO produced in CHO cells
title_fullStr Inhibition of poly-LacNAc biosynthesis with release of CMP-Neu5Ac feedback inhibition increases the sialylation of recombinant EPO produced in CHO cells
title_full_unstemmed Inhibition of poly-LacNAc biosynthesis with release of CMP-Neu5Ac feedback inhibition increases the sialylation of recombinant EPO produced in CHO cells
title_sort inhibition of poly-lacnac biosynthesis with release of cmp-neu5ac feedback inhibition increases the sialylation of recombinant epo produced in cho cells
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2018-05-01
description Abstract Sialylation of recombinant therapeutic glycoproteins modulates their pharmacokinetic properties by affecting their in vivo half-life. N-glycan branching on glycoproteins increases the number of potential attachment sites for sialic acid. Here, we introduce a new approach for increasing the sialylation of recombinant human erythropoietin (rhEPO) produced in CHO cells by modulating poly-N-acetyllactosamine (poly-LacNAc) biosynthesis. We did not observe an increase in rhEPO sialylation, however, until the feedback inhibition by intracellular cytidine monophosphate-N-acetylneuraminic acid (CMP-Neu5Ac), which is a limiting factor for sialylation, was released. Thus, we found that a combined approach inhibiting poly-LacNAc biosynthesis and releasing CMP-Neu5Ac feedback inhibition produces the most significant increase in rhEPO sialylation in metabolically engineered CHO cells. Furthermore, a detailed analysis of the resulting N-glycan structures using LC/MS revealed increased tri- and tetra- sialylated N-glycan structures accompanied by a reduction of di-sialylated N-glycan structures. These results validate our new approach for glycosylation engineering, and we expect this approach will be useful in future efforts to enhance the efficacy of other therapeutic glycoproteins.
url https://doi.org/10.1038/s41598-018-25580-9
work_keys_str_mv AT chunggeunlee inhibitionofpolylacnacbiosynthesiswithreleaseofcmpneu5acfeedbackinhibitionincreasesthesialylationofrecombinantepoproducedinchocells
AT myungjinoh inhibitionofpolylacnacbiosynthesiswithreleaseofcmpneu5acfeedbackinhibitionincreasesthesialylationofrecombinantepoproducedinchocells
AT seungyeolpark inhibitionofpolylacnacbiosynthesiswithreleaseofcmpneu5acfeedbackinhibitionincreasesthesialylationofrecombinantepoproducedinchocells
AT hyunjooan inhibitionofpolylacnacbiosynthesiswithreleaseofcmpneu5acfeedbackinhibitionincreasesthesialylationofrecombinantepoproducedinchocells
AT junghoekim inhibitionofpolylacnacbiosynthesiswithreleaseofcmpneu5acfeedbackinhibitionincreasesthesialylationofrecombinantepoproducedinchocells
_version_ 1724391637088468992