Diabetes-associated nitration of tyrosine and inactivation of succinyl-CoA:3-oxoacid CoA- transferase

被引:142
作者
Turko, IV
Marcondes, S
Murad, F
机构
[1] Univ Texas, Sch Med, Dept Integrat Biol & Pharmacol, Houston, TX 77030 USA
[2] Inst Mol Med, Houston, TX 77030 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY | 2001年 / 281卷 / 06期
关键词
nitric oxide; 3-nitrotyrosine; energy substrate metabolism; mitochondria;
D O I
10.1152/ajpheart.2001.281.6.H2289
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
High levels of reactive species of nitrogen and oxygen in diabetes may cause modifications of proteins. Recently, an increase in protein tyrosine nitration was found in several diabetic tissues. To understand whether protein tyrosine nitration is the cause or the result of the associated diabetic complications, it is essential to identify specific proteins vulnerable to nitration with in vivo models of diabetes. In the present study, we have demonstrated that succinyl-CoA:3-oxoacid CoA-transferase (SCOT; EC 2.8.3.5) is susceptible to tyrosine nitration in hearts from streptozotocin-treated rats. After 4 and 8 wk of streptozotocin administration and diabetes progression, SCOT from rat hearts had a 24% and 39% decrease in catalytic activity, respectively. The decrease in SCOT catalytic activity is accompanied by an accumulation of nitrotyrosine in SCOT protein. SCOT is a mitochondrial matrix protein responsible for ketone body utilization. Ketone bodies provide an alternative source of energy during periods of glucose deficiency. Because diabetes results in profound derangements in myocardial substrate utilization, we suggest that SCOT tyrosine nitration is a contributing factor to this impairment in the diabetic heart.
引用
收藏
页码:H2289 / H2294
页数:6
相关论文
共 43 条
[31]  
Read RW, 2000, OCUL IMMUNOL INFLAMM, V8, P169, DOI 10.1076/0927-3948(200009)8:3
[32]  
1-K
[33]  
FT169
[34]   THE EFFECT OF DIABETES ON PROTEIN-SYNTHESIS AND THE RESPIRATORY-CHAIN OF RAT SKELETAL-MUSCLE AND KIDNEY MITOCHONDRIA [J].
RINEHART, RW ;
ROBERSON, J ;
BEATTIE, DS .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1982, 213 (02) :341-352
[35]   Regulation of energy substrate metabolism in the diabetic heart [J].
Stanley, WC ;
Lopaschuk, GD ;
McCormack, JG .
CARDIOVASCULAR RESEARCH, 1997, 34 (01) :25-33
[36]   Development of autoimmune diabetes in NOD mice is associated with the formation of peroxynitrite in pancreatic islet beta-cells [J].
SuarezPinzon, WL ;
Szabo, C ;
Rabinovitch, A .
DIABETES, 1997, 46 (05) :907-911
[37]   DECREASED SUSCEPTIBILITY OF LIVER-MITOCHONDRIA FROM DIABETIC RATS TO OXIDATIVE DAMAGE AND ASSOCIATED INCREASE IN ALPHA-TOCOPHEROL [J].
SUKALSKI, KA ;
PINTO, KA ;
BERNTSON, JL .
FREE RADICAL BIOLOGY AND MEDICINE, 1993, 14 (01) :57-65
[38]   MITOCHONDRIAL DYSFUNCTION OBSERVED INSITU IN CARDIOMYOCYTES OF RATS IN EXPERIMENTAL DIABETES [J].
TANAKA, Y ;
KONNO, N ;
KAKO, KJ .
CARDIOVASCULAR RESEARCH, 1992, 26 (04) :409-414
[39]   Evidence for iNOS-dependent peroxynitrite production in diabetic platelets [J].
Tannous, M ;
Rabini, RA ;
Vignini, A ;
Moretti, N ;
Fumelli, P ;
Zielinski, B ;
Mazzanti, L ;
Mutus, B .
DIABETOLOGIA, 1999, 42 (05) :539-544
[40]   Increased nitrotyrosine staining in kidneys from patients with diabetic nephropathy [J].
Thuraisingham, RC ;
Nott, CA ;
Dodd, SM ;
Yaqoob, MM .
KIDNEY INTERNATIONAL, 2000, 57 (05) :1968-1972