Site-specific glycosylation analysis of the bovine lysosomal α-mannosidase

被引:34
作者
Faid, V
Evjen, G
Tollersrud, OK
Michalski, JC
Morelle, W
机构
[1] Univ Lille 1, IFR 118, Unite Mixte Rech CNRS USTL Glycobiol Struct & Fon, F-59655 Villeneuve Dascq, France
[2] Univ Tromso, Inst Med Biol, Dept Med Biochem, N-9037 Tromso, Norway
关键词
alpha-mannosidosis; glycosylation sites; lysosomal storage disorder; mass spectrometry; structure analysis;
D O I
10.1093/glycob/cwj081
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Lysosomal alpha-mannosidase is a broad specificity exoglycosidase involved in the ordered degradation of glycoproteins. The bovine enzyme is used as an important model for understanding the inborn lysosomal storage disorder alpha-mannosidosis. This enzyme of about 1000 amino acids consists of five peptide chains, namely a- to e-peptides and contains eight N-glycosylation sites. The N-497 glycosylation site of the c-peptide chain is evolutionary conserved among LAMANs and is very important for the maintenance of the lysosomal stability of the enzyme. In this work, relying on an approach based on mass spectrometric techniques in combination with exoglycosidase digestions and chemical derivatizations, we will report the detailed structures of the N-glycans and their distribution within six of the eight N-glycosylation sites of the bovine glycoprotein. The analysis of the PNGase F-released glycans from the bovine LAMAN revealed that the major structures fall into three classes, namely high-mannose-type (Fuc(0-1)Glc(0-1)Man(4-9)GlcNAc(2)), hybrid-type (Gal(0-1)Man(4-5)GlcNAc(4)), and complex-type (Fuc(0-1)Gal(0-2)Man(3)GlcNAc(3-5)) N-glycans, with core fucosylation and bisecting GlcNAc. To investigate the exact structure of the N-glycans at each glycosylation site, the peptide chains of the bovine LAMAN were separated using SDS-PAGE and in-gel deglycosylation. These experiments revealed that the N-497 and N-930 sites, from the c- and e-peptides, contain only high-mannose-type glycans Glc(0-1)Man(5-9)GlcNAc(2), including the evolutionary conserved Glc(1)Man(9)GlcNAc(2) glycan, and Fuc(0-1)Man(3-5)GlcNAc(2), respectively. Therefore, to determine the microheterogeneity within the remaining glycosylation sites, the glycoprotein was reduced, carboxymethylated, and digested with trypsin. The tryptic fragments were then subjected to concanavalin A (Con A) affinity chromatography, and the material bound by Con A-Sepharose was purified using reverse-phase high-performance liquid chromatography (HPLC). The tandem mass spectrometry (ESI-MS/MS) and the MALDI analysis of the PNGase F-digested glycopeptides indicated that (1) N-692 and N-766 sites from the d-peptide chain both bear glycans consisting of high-mannose (Fuc(0-1)Man(3-7)GlcNAc(2)), hybrid (Fuc(0-1) Gal(0-1)Man(4-5)GlcNAc(4)), and complex (Fuc(0-1)Gal(0-2)Man(3)GlcNAc(4-5)) structures; and (2) the N-367 site, from the b-peptide chain, is glycosylated only with high-mannose structures (Fuc(0-1)Man(3-5)GlcNAc(2)). Taking into consideration the data obtained from the analysis of either the in-gel-released glycans from the abc- and c-peptides or the tryptic glycopeptide containing the N-367 site, the N-133 site, from the a-peptide, was shown to be glycosylated with truncated and high-mannose-type (Fuc(0-1)Man(4-5)GlcNAc(2)), complex-type (Fuc(0-1)Gal(0-1)Man(3)GlcNAc(5)), and hybrid-type (Fuc(0-1)Gal(0-1)Man(5)GlcNAc(4)) glycans.
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页码:440 / 461
页数:22
相关论文
共 63 条
[1]   Carbohydrate- and conformation-dependent cargo capture for ER-exit [J].
Appenzeller-Herzog, C ;
Nyfeler, B ;
Burkhard, P ;
Santamaria, I ;
Lopez-Otin, C ;
Hauri, HP .
MOLECULAR BIOLOGY OF THE CELL, 2005, 16 (03) :1258-1267
[2]   LYSOSOMAL DEGRADATION OF ASN-LINKED GLYCOPROTEINS [J].
ARONSON, NN ;
KURANDA, MJ .
FASEB JOURNAL, 1989, 3 (14) :2615-2622
[3]   Spectrum of mutations in α-mannosidosis [J].
Berg, T ;
Riise, HMF ;
Hansen, GN ;
Malm, D ;
Tranebjærg, L ;
Tollersrud, OK ;
Nilssen, O .
AMERICAN JOURNAL OF HUMAN GENETICS, 1999, 64 (01) :77-88
[4]   Purification of feline lysosomal α-mannosidase, determination of its cDNA sequence and identification of a mutation causing α-mannosidosis in Persian cats [J].
Berg, T ;
Tollersrud, OK ;
Walkley, SU ;
Siegel, D ;
Nilssen, O .
BIOCHEMICAL JOURNAL, 1997, 328 :863-870
[5]   Purification and characterization of recombinant human lysosomal α-mannosidase [J].
Berg, T ;
King, B ;
Meikle, PJ ;
Nilssen, O ;
Tollersrud, OK ;
Hopwood, JJ .
MOLECULAR GENETICS AND METABOLISM, 2001, 73 (01) :18-29
[6]   Molecular heterogeneity for bovine α-mannosidosis:: PCR based assays for detection of breed-specific mutations [J].
Berg, T ;
Healy, PJ ;
Tollersrud, OK ;
Nilssen, O .
RESEARCH IN VETERINARY SCIENCE, 1997, 63 (03) :279-282
[7]  
BERG T, 2001, BIOCHIM BIOPHYS ACTA, V1586, P169
[8]  
CARLSON DM, 1968, J BIOL CHEM, V243, P616
[9]   PURIFICATION AND COMPARISON OF THE STRUCTURES OF HUMAN-LIVER ACIDIC ALPHA-D-MANNOSIDASE-A AND ALPHA-D-MANNOSIDASE-B [J].
CHENG, SH ;
MALCOLM, S ;
PEMBLE, S ;
WINCHESTER, B .
BIOCHEMICAL JOURNAL, 1986, 233 (01) :65-72
[10]   A SIMPLE AND RAPID METHOD FOR THE PERMETHYLATION OF CARBOHYDRATES [J].
CIUCANU, I ;
KEREK, F .
CARBOHYDRATE RESEARCH, 1984, 131 (02) :209-217