Recombinant MUC1 mucin with a breast cancer-like O-glycosylation produced in large amounts in Chinese-hamster ovary cells

Author:

BÄCKSTRÖM Malin1,LINK Thomas2,OLSON Fredrik J.1,KARLSSON Hasse1,GRAHAM Rosalind3,PICCO Gianfranco3,BURCHELL Joy3,TAYLOR-PAPADIMITRIOU Joyce3,NOLL Thomas2,HANSSON Gunnar C.1

Affiliation:

1. Department of Medical Biochemistry, Göteborg University, P.O. Box 440, 405 30 Gothenburg, Sweden

2. Institute of Biotechnology, Forschungszentrum Jülich GmbH, D-52425 Jülich, Germany

3. Cancer Research UK, Breast Cancer Biology Group, Guy's Hospital, Thomas Guy House, London SE1 9RT, U.K.

Abstract

We have developed an expression system for the production of large quantities of recombinant MUC1 mucin in CHO-K1 (Chinese-hamster ovary K1) cells. The extracellular part of human MUC1, including 16 MUC1 tandem repeats, was produced as a fusion protein with murine IgG Fc, with an intervening enterokinase cleavage site for the removal of the Fc tail. Stable MUC1–IgG-producing CHO-K1 clones were generated and were found to secrete MUC1–IgG into the culture medium. After adaptation to suspension culture in protein-free medium in a bioreactor, the fusion protein was secreted in large quantities (100 mg/l per day) into the culture supernatant. From there, MUC1 could be purified to homogeneity using a two-step procedure including enterokinase cleavage and ion-exchange chromatography. Capillary liquid chromatography MS of released oligosaccharides from CHO-K1-produced MUC1 identified the main O-glycans as Galβ1-3GalNAc (core 1) and mono- and di-sialylated core 1. The glycans occupied on average 4.3 of the five potential O-glycosylation sites in the tandem repeats, as determined by nano-liquid chromatography MS of partially deglycosylated Clostripain-digested protein. A very similar O-glycan profile and site occupancy was found in MUC1–IgG produced in the breast carcinoma cell line T47D, which has O-glycosylation typical for breast cancer. In contrast, MUC1–IgG produced in another breast cancer cell line, MCF-7, showed a more complex pattern with both core 1- and core 2-based O-glycans. This is the first reported production of large quantities of recombinant MUC1 with a breast cancer-like O-glycosylation that could be used for the immunotherapy of breast cancer.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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