Regulation of Plant Glycine Decarboxylase by S-Nitrosylation and Glutathionylation

被引:174
作者
Palmieri, M. Cristina [1 ]
Lindermayr, Christian [1 ]
Bauwe, Hermann [2 ]
Steinhauser, Clara [1 ]
Durner, Joerg [1 ]
机构
[1] Helmholtz Zentrum Munchen, Inst Biochem Plant Pathol, German Res Ctr Environm Hlth, D-85764 Munich, Germany
[2] Univ Rostock, Dept Plant Physiol, Biosci Inst, D-18051 Rostock, Germany
关键词
MITOCHONDRIAL ALTERNATIVE OXIDASE; PROGRAMMED CELL-DEATH; NITRIC-OXIDE; REACTIVE OXYGEN; PERMEABILITY TRANSITION; ARABIDOPSIS-THALIANA; HYDROGEN-PEROXIDE; CYTOCHROME-C; COMPLEX-I; MULTIENZYME COMPLEX;
D O I
10.1104/pp.109.152579
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Mitochondria play an essential role in nitric oxide (NO) signal transduction in plants. Using the biotin-switch method in conjunction with nano-liquid chromatography and mass spectrometry, we identified 11 candidate proteins that were S-nitrosylated and/or glutathionylated in mitochondria of Arabidopsis (Arabidopsis thaliana) leaves. These included glycine decarboxylase complex (GDC), a key enzyme of the photorespiratory C-2 cycle in C3 plants. GDC activity was inhibited by S-nitrosoglutathione due to S-nitrosylation/S-glutathionylation of several cysteine residues. Gas-exchange measurements demonstrated that the bacterial elicitor harpin, a strong inducer of reactive oxygen species and NO, inhibits GDC activity. Furthermore, an inhibitor of GDC, aminoacetonitrile, was able to mimic mitochondrial depolarization, hydrogen peroxide production, and cell death in response to stress or harpin treatment of cultured Arabidopsis cells. These findings indicate that the mitochondrial photorespiratory system is involved in the regulation of NO signal transduction in Arabidopsis.
引用
收藏
页码:1514 / 1528
页数:15
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