Posttranslational glutathiolation of aldose reductase (AKR1B1): A possible mechanism of protein recovery from S-nitrosylation

被引:30
作者
Baba, Shahid Pervez [1 ]
Wetzelberger, Karin [1 ]
Hoetker, Joseph David [1 ]
Bhatnagar, Aruni [1 ]
机构
[1] Univ Louisville, Inst Mol Cardiol, Louisville, KY 40202 USA
关键词
Aldose reductase; Nitrosylation; Glutathiolation; Deglutathiolation; SMOOTH-MUSCLE-CELLS; NITRIC-OXIDE DONORS; ISCHEMIC-HEART; INHIBITION; ACTIVATION; NITROSATION; INVOLVEMENT; EXPRESSION; RESIDUES; CYS-298;
D O I
10.1016/j.cbi.2008.11.007
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
Nitric oxide (NO) is an important regulator of the catalytic activity of aldose reductase (AR). It reacts with the active site cysteines of AR and this reaction results in the formation of several kinetically distinct forms of the protein. The catalytic activity of AR is increased in the ischemic heart and this increase in activity is associated with NO-dependent modification of AR. During reperfusion, the enzyme reverts back to its un-activated form. Although, AR activation has been linked to thiol oxidation, the mechanisms of de-activation remain unclear. Here we report that treatment of recombinant human AR (AKR1B1) by a non-thiol-based NO-donor (DEANO) results in activation and S-nitrosylation of the protein. The nitrosylated (ARSNO), but not the reduced (ARSH), protein reacted with reduced glutathione (GSH) and this reaction resulted in the formation of glutathiolated AR (ARSSG). The modification of AR by NO was site-specific at Cys-298 and was not affected by selective mutation of the neighboring residue, Cys-303 to an alanine. Incubation of the glutathiolated AR (ARSSG) with GSH resulted in the regeneration of the reduced form of the protein (ARSH). Treatment of nitrosylated AR (ARSNO) with ascorbic acid also led to the conversion of the protein to its reduced form. These observations suggest that intracellular reductants such as GSH and ascorbate could convert the nitrosylated form of AR to its basal or reduced state. In general, such reductive reactions might represent a common mechanism for denitrosylating proteins or an "off" switch in NO-mediated signaling pathways involving protein S-nitrosylation reactions. (C) 2008 Published by Elsevier Ireland Ltd.
引用
收藏
页码:250 / 258
页数:9
相关论文
共 35 条
[1]   A central role for S-nitrosylation in apoptosis [J].
Benhar, M ;
Stamler, JS .
NATURE CELL BIOLOGY, 2005, 7 (07) :645-646
[2]   HUMAN PLACENTAL ALDOSE REDUCTASE - ROLE OF CYS-298 IN SUBSTRATE AND INHIBITOR BINDING [J].
BHATNAGAR, A ;
LIU, SQ ;
UENO, N ;
CHAKRABARTI, B ;
SRIVASTAVA, SK .
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEIN STRUCTURE AND MOLECULAR ENZYMOLOGY, 1994, 1205 (02) :207-214
[3]  
BHATNAGAR A, 1989, MOL PHARMACOL, V36, P825
[4]   Direct evidence for S-nitrosation of mitochondrial complex I [J].
Burwell, LS ;
Nadtochiy, SM ;
Tompkins, AJ ;
Young, S ;
Brookes, PS .
BIOCHEMICAL JOURNAL, 2006, 394 :627-634
[5]   Active site modification of aldose reductase by nitric oxide donors [J].
Chandra, A ;
Srivastava, S ;
Petrash, JM ;
Bhatnagar, A ;
Srivastava, SK .
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEIN STRUCTURE AND MOLECULAR ENZYMOLOGY, 1997, 1341 (02) :217-222
[6]   Modification of aldose reductase by S-nitrosoglutathione [J].
Chandra, A ;
Srivastava, S ;
Petrash, JM ;
Bhatnagar, A ;
Srivastava, SK .
BIOCHEMISTRY, 1997, 36 (50) :15801-15809
[7]   Nitric oxide prevents aldose reductase activation and sorbitol accumulation during diabetes [J].
Chandra, D ;
Jackson, EB ;
Ramana, KV ;
Kelley, R ;
Srivastava, SK ;
Bhatnagar, A .
DIABETES, 2002, 51 (10) :3095-3101
[8]   Aldose reductase in diabetic microvascular complications [J].
Chung, SSM ;
Chung, SK .
CURRENT DRUG TARGETS, 2005, 6 (04) :475-486
[9]   Metabolic regulation of aldose reductase activity by nitric oxide donors [J].
Dixit, BL ;
Ramana, KV ;
Chandra, D ;
Jackson, EB ;
Srivastava, S ;
Bhatnagar, A ;
Srivastava, SK .
CHEMICO-BIOLOGICAL INTERACTIONS, 2001, 130 (1-3) :573-581
[10]   Assessment and application of the biotin switch technique for examining protein S-nitrosylation under conditions of pharmacologically induced oxidative stress [J].
Forrester, Michael T. ;
Foster, Matthew W. ;
Stamler, Jonathan S. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (19) :13977-13983