The possible relevance of autoxidative glycosylation in glucose mediated alterations of proteins: An in vitro study on myofibrillar proteins

被引:1
作者
Lal, GBS [1 ]
Chithra, P [1 ]
Chandrakasan, G [1 ]
机构
[1] CENT LEATHER RES INST,DEPT BIOCHEM,MADRAS 600020,TAMIL NADU,INDIA
关键词
glycation; autoxidation; myofibrils; free radicals;
D O I
暂无
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The present work was carried out to examine the role of glycation and transition metal catalysed autoxidation of sugars in glucose-mediated alterations of myofibrillar proteins. Myofibrils were prepared from rat skeletal muscle and incubated with 1) sugar alone 2) sugar and micromolar concentrations of transition metals (Cu2+ Or Fe3+) 3) transition metals alone and the control remained without sugar or transition metals. A significant increase in extent of glycation and decrease in ATPase activity of myofibrils incubated under autoxidative conditions were observed over the other three incubations. Reducing agent 2-mercaptoethanol was highly effective in preventing the alterations induced by glucoxidation, compared to EDTA and aminoguanidine, suggesting the involvement of thiol group oxidation in the reduced function of the protein. Free radical scavengers like catalase, benzoic acid and mannitol were also effective in preventing glucose mediated alterations. Although a high concentration of glucose alone has an insignificant effect on myofibrils in vitro, the results from the present work suggest that glucose in combination with transition metals could lead to functional alterations of myofibrils, and this process by generating free radicals may contribute to the overall complications of diabetes and aging.
引用
收藏
页码:95 / 100
页数:6
相关论文
共 31 条
[1]   ROLE OF OXIDATIVE STRESS IN DEVELOPMENT OF COMPLICATIONS IN DIABETES [J].
BAYNES, JW .
DIABETES, 1991, 40 (04) :405-412
[2]   THE ROLE OF NONENZYMATIC GLYCOSYLATION, TRANSITION-METALS, AND FREE-RADICALS IN THE FORMATION OF COLLAGEN AGGREGATES [J].
CHACE, KV ;
CARUBELLI, R ;
NORDQUIST, RE .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1991, 288 (02) :473-480
[3]   CAMEL LENS CRYSTALLINS GLYCOSYLATION AND HIGH-MOLECULAR-WEIGHT AGGREGATE FORMATION IN THE PRESENCE OF FERROUS-IONS AND GLUCOSE [J].
DUHAIMAN, AS ;
RABBANI, N ;
COTLIER, E .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1990, 173 (03) :823-832
[4]  
Fiske CH, 1925, J BIOL CHEM, V66, P375
[5]   GLYCATION, GLYCOXIDATION, AND CROSS-LINKING OF COLLAGEN BY GLUCOSE - KINETICS, MECHANISMS, AND INHIBITION OF LATE STAGES OF THE MAILLARD REACTION [J].
FU, MX ;
WELLSKNECHT, KJ ;
BLACKLEDGE, JA ;
LYONS, TJ ;
THORPE, SR ;
BAYNES, JW .
DIABETES, 1994, 43 (05) :676-683
[6]   COPPER SALT-DEPENDENT HYDROXYL RADICAL FORMATION - DAMAGE TO PROTEINS ACTING AS ANTI-OXIDANT [J].
GUTTERIDGE, JMC ;
WILKINS, S .
BIOCHIMICA ET BIOPHYSICA ACTA, 1983, 759 (1-2) :38-41
[7]  
HARDING JJ, 1985, ADV PROTEIN CHEM, V129, P97
[8]   INCREASE IN CROSSLINKING OF NONENZYMATICALLY GLYCOSYLATED COLLAGEN INDUCED BY PRODUCTS OF LIPID-PEROXIDATION [J].
HICKS, M ;
DELBRIDGE, L ;
YUE, DK ;
REEVE, TS .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1989, 268 (01) :249-254
[9]   AUTOXIDATIVE GLYCOSYLATION AND POSSIBLE INVOLVEMENT OF PEROXIDES AND FREE-RADICALS IN LDL MODIFICATION BY GLUCOSE [J].
HUNT, JV ;
SMITH, CCT ;
WOLFF, SP .
DIABETES, 1990, 39 (11) :1420-1424
[10]   HYDROXYL RADICAL PRODUCTION AND AUTOXIDATIVE GLYCOSYLATION - GLUCOSE AUTOXIDATION AS THE CAUSE OF PROTEIN DAMAGE IN THE EXPERIMENTAL GLYCATION MODEL OF DIABETES-MELLITUS AND AGING [J].
HUNT, JV ;
DEAN, RT ;
WOLFF, SP .
BIOCHEMICAL JOURNAL, 1988, 256 (01) :205-212