Acceleration of protein glycation by oxidative stress and comparative role of antioxidant and protein glycation inhibitor

被引:24
作者
Bavkar, Laxman N. [1 ]
Patil, Rahul S. [1 ]
Rooge, Sheetalnath B. [1 ]
Nalawade, Megha L. [1 ]
Arvindekar, Akalpita U. [1 ]
机构
[1] Shivaji Univ, Dept Biochem, Kolhapur 416004, MS, India
关键词
Protein glycation; Oxidative stress; Fenton reaction; Rotenone; Aminoguanidine; Vitamin E; LIPOXIDATION END-PRODUCTS; AMINOGUANIDINE; COMPLICATIONS; SERUM; AGES;
D O I
10.1007/s11010-019-03550-7
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Hyperglycemia in diabetes causes protein glycation that leads to oxidative stress, release of cytokines, and establishment of secondary complications such as neuropathy, retinopathy, and nephropathy. Several other metabolic disorders, stress, and inflammation generate free radicals and oxidative stress. It is essential to study whether oxidative stress independently enhances protein glycation leading to rapid establishment of secondary complications. Oxidative stress was experimentally induced using rotenone and Fenton reagent for in vivo and in vitro studies, respectively. Results showed significant increase in the rate of modification of BSA in the form of fructosamine and protein-bound carbonyls in the presence of fenton reagent. Circular dichroism studies revealed gross structural changes in the reduction of alpha helix structure and decreased protein surface charge was confirmed by zeta potential studies. Use of rotenone demonstrated enhanced AGE formation, ROS generation, and liver and kidney tissue glycation through fluorescence measurement. Similar findings were also observed in cell culture studies. Use of aminoguanidine, a protein glycation inhibitor, demonstrated reduction in these changes; however, a combination of aminoguanidine along with vitamin E demonstrated better amelioration. Thus, oxidative stress accelerates the process of protein glycation causing gross structural changes and tissue glycation in insulin-independent tissues. Use of antioxidants and protein glycation inhibitors in combination are more effective in preventing such changes and could be an effective therapeutic option for preventing establishment of secondary complications of diabetes.
引用
收藏
页码:61 / 71
页数:11
相关论文
共 40 条
[1]  
Abdel-Salam O.M., 2014, COMP CLIN PATHOL, V23, P1457, DOI DOI 10.1007/s00580-013-1807-4
[2]   Physicochemical Analysis of Poly-L-lysine: An Insight into the Changes Induced in Lysine Residues of Proteins on Modification with Glucose [J].
Ansari, Nadeem Ahmad ;
Moinuddin ;
Ali, Rashid .
IUBMB LIFE, 2011, 63 (01) :26-29
[3]  
Aronson D, 2008, CARDIOVASC DIABETOL, V2, P89
[4]   Non-enzymatic glycation mediated structure-function changes in proteins: case of serum albumin [J].
Awasthi, Saurabh ;
Saraswathi, N. T. .
RSC ADVANCES, 2016, 6 (93) :90739-90753
[5]  
BEERS RF, 1952, J BIOL CHEM, V195, P133
[6]   AMINOGUANIDINE PREVENTS DIABETES-INDUCED ARTERIAL-WALL PROTEIN CROSS-LINKING [J].
BROWNLEE, M ;
VLASSARA, H ;
KOONEY, A ;
ULRICH, P ;
CERAMI, A .
SCIENCE, 1986, 232 (4758) :1629-1632
[7]   LILLY LECTURE 1993 - GLYCATION AND DIABETIC COMPLICATIONS [J].
BROWNLEE, M .
DIABETES, 1994, 43 (06) :836-841
[8]   Oxidative Stress Gated by Fenton and Haber Weiss Reactions and Its Association With Alzheimer's Disease [J].
Das, Tushar Kanti ;
Wati, Mas Rina ;
Fatima-Shad, Kaneez .
ARCHIVES OF NEUROSCIENCE, 2015, 2 (02)
[9]   MECHANISTIC STUDIES OF ADVANCED GLYCOSYLATION END-PRODUCT INHIBITION BY AMINOGUANIDINE [J].
EDELSTEIN, D ;
BROWNLEE, M .
DIABETES, 1992, 41 (01) :26-29
[10]   The role of advanced glycation end products in progression and complications of diabetes [J].
Goh, Su-Yen ;
Cooper, Mark E. .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2008, 93 (04) :1143-1152