Isolation and characterization of an insect cell line able to perform complex N-linked glycosylation on recombinant proteins

被引:58
作者
Ogonah, OW [1 ]
Freedman, RB [1 ]
Jenkins, N [1 ]
Patel, K [1 ]
Rooney, BC [1 ]
机构
[1] UNIV KENT,BIOL LAB,RES SCH BIOSCI,CANTERBURY CT2 7NJ,KENT,ENGLAND
来源
BIO-TECHNOLOGY | 1996年 / 14卷 / 02期
关键词
D O I
10.1038/nbt0296-197
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Site specific characterization of the N-glycan structures in human interferon gamma (IFN-gamma) derived from baculovirus-infected insect cells was performed using a combination of reverse-phase, high-performance liquid chromatography (rHPLC) and matrix assisted laser desorption time of flight (MALDI-TOF) mass spectrometry, IFN-gamma was produced in two cell lines, an Estigmena acrea-derived subclone (Ea4), and Spodoptera frugiperda cells (Sf9), Both IFN-gamma N-glycosylation sites (Asn(25) and Asn(97)) were characterized, Site-specific differences were observed in both the percentage of sites occupied by N-linked glycans and the types of structure associated with each site, The glycosylation capabilities and glycan processing of Sf9 were limited to the generation of chitobiose [GlcNAc(2)], truncated tri-mannose core [Man(3)GlcNAc(2)], or oligomannose structures, The glycosylation abilities of Ea4 cells were more extensive, producing IFN-gamma molecules incorporating oligosaccharides with GlcNAc and Gal residues on the outer arms (hybrid or complex type N-glycans), as well as oligomannose N-glycans, Incorporation of an alpha 1-6 linked fucose residue (<70% in Sf9 and <88% in Ea4) was confined to the Asn(25) glycosylation site. These findings demonstrate the more extensive N-glycosylation capabilities of the E(1) acrea-derived Ea4, compared to current insect cell lines used for the expression of recombinant proteins.
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页码:197 / 202
页数:6
相关论文
共 45 条
[1]  
ACKERMANN M, 1995, BACULOVIRUS INSECT C
[2]   GLYCOSYLATION OF RECOMBINANT PRORENIN IN INSECT CELLS - THE INSECT-CELL LINE SF9 DOES NOT EXPRESS THE MANNOSE 6-PHOSPHATE RECOGNITION SIGNAL [J].
AEED, PA ;
ELHAMMER, AP .
BIOCHEMISTRY, 1994, 33 (29) :8793-8797
[3]  
ALTMAN F, 1993, GLYCOONJUGATE J, V10, P310
[4]   PROCESSING OF ASPARAGINE-LINKED OLIGOSACCHARIDES IN INSECT CELLS - N-ACETYLGLUCOSAMINYLTRANSFERASE I AND II ACTIVITIES IN CULTURED LEPIDOPTERAN CELLS [J].
ALTMANN, F ;
KORNFELD, G ;
DALIK, T ;
STAUDACHER, E ;
GLOSSL, J .
GLYCOBIOLOGY, 1993, 3 (06) :619-625
[5]   PROCESSING OF ASPARAGINE-LINKED OLIGOSACCHARIDES IN INSECT CELLS - EVIDENCE FOR ALPHA-MANNOSIDASE-II [J].
ALTMANN, F ;
MARZ, L .
GLYCOCONJUGATE JOURNAL, 1995, 12 (02) :150-155
[6]   STEPS IN THE BIOSYNTHESIS OF MOSQUITO CELL-MEMBRANE GLYCOPROTEINS AND THE EFFECTS OF TUNICAMYCIN [J].
BUTTERS, TD ;
HUGHES, RC ;
VISCHER, P .
BIOCHIMICA ET BIOPHYSICA ACTA, 1981, 640 (03) :672-686
[7]  
CASTELLINO FJ, 1993, METHOD ENZYMOL, V223, P168
[8]   EXPRESSION OF THE EXTRACELLULAR DOMAIN OF THE THYROTROPIN RECEPTOR IN THE BACULOVIRUS SYSTEM USING A PROMOTER ACTIVE EARLIER THAN THE POLYHEDRIN PROMOTER - IMPLICATIONS FOR THE EXPRESSION OF FUNCTIONAL HIGHLY GLYCOSYLATED PROTEINS [J].
CHAZENBALK, GD ;
RAPOPORT, B .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (04) :1543-1549
[9]   RECOMBINANT HUMAN INTERFERON-GAMMA - DIFFERENCES IN GLYCOSYLATION AND PROTEOLYTIC PROCESSING LEAD TO HETEROGENEITY IN BATCH CULTURE [J].
CURLING, EMA ;
HAYTER, PM ;
BAINES, AJ ;
BULL, AT ;
GULL, K ;
STRANGE, PG ;
JENKINS, N .
BIOCHEMICAL JOURNAL, 1990, 272 (02) :333-337
[10]   ASPARAGINE-LINKED OLIGOSACCHARIDE PROCESSING IN LEPIDOPTERAN INSECT CELLS - TEMPORAL DEPENDENCE OF THE NATURE OF THE OLIGOSACCHARIDES ASSEMBLED ON ASPARAGINE-289 OF RECOMBINANT HUMAN PLASMINOGEN PRODUCED IN BACULOVIRUS VECTOR INFECTED SPODOPTERA-FRUGIPERDA (IPLB-SF-21AE) CELLS [J].
DAVIDSON, DJ ;
CASTELLINO, FJ .
BIOCHEMISTRY, 1991, 30 (25) :6167-6174