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1.
J Exp Bot ; 63(8): 3137-55, 2012 May.
Article in English | MEDLINE | ID: mdl-22355080

ABSTRACT

Plant programmed cell death (PCD) is a genetically controlled process that plays an important role in development and stress responses. Reactive oxygen species (ROS) are key inducers of PCD. The addition of 50 mM H2O2 to tobacco Bright Yellow-2 (TBY-2) cell cultures induces PCD. A comparative proteomic analysis of TBY-2 cells treated with 50 mM H2O2 for 30 min and 3 h was performed. The results showed early down-regulation of several elements in the cellular redox hub and inhibition of the protein repair-degradation system. The expression patterns of proteins involved in the homeostatic response, in particular those associated with metabolism, were consistently altered. The changes in abundance of several cytoskeleton proteins confirmed the active role of the cytoskeleton in PCD signalling. Cells undergoing H2O2-induced PCD fail to cope with oxidative stress. The antioxidant defence system and the anti-PCD signalling cascades are inhibited. This promotes a genetically programmed cell suicide pathway. Fifteen differentially expressed proteins showed an expression pattern similar to that previously observed in TBY-2 cells undergoing heat shock-induced PCD. The possibility that these proteins are part of a core complex required for PCD induction is discussed.


Subject(s)
Apoptosis/drug effects , Hydrogen Peroxide/pharmacology , Nicotiana/cytology , Nicotiana/metabolism , Proteome/metabolism , Ascorbate Peroxidases/metabolism , Cell Survival/drug effects , Cells, Cultured , Cluster Analysis , Electrophoresis, Gel, Two-Dimensional , Homeostasis/drug effects , Oxidation-Reduction/drug effects , Plant Proteins/metabolism , Protein Biosynthesis/drug effects , Proteolysis/drug effects , Solubility/drug effects , Spermidine/pharmacology , Nicotiana/drug effects , Nicotiana/enzymology
2.
Plant Cell Environ ; 33(7): 1161-75, 2010 Jul.
Article in English | MEDLINE | ID: mdl-20199619

ABSTRACT

Tobacco (Nicotiana tabacum) Bright Yellow-2 (TBY-2) cells undergo different fates when exposed for 10 minutes to heat stresses of different severity. A 35 degrees C treatment causes a homeostatic response (HRE) allowing cells to cope with the stress; 55 degrees C triggers processes leading to programmed cell death (PCD), which is complete after 72 h. We have used a proteomic approach to gain insight into the molecular mechanisms defining the fate of TBY-2 cells induced by these two heat stresses. Tandem mass spectrometry (MS/MS) and two-dimensional electrophoresis (2-DE) analysis revealed little overlap of differentially-accumulated proteins: the different severities of heat treatment induced the modulation of specific proteins, some of which are responsible for different cell fates. When the imposed heat shock is beyond a certain threshold, the overall reduced metabolism may be the result of a series of events involving gene expression and oxidative damage that would lead to PCD. Our data suggest that the down-accumulation of several proteins involved in cellular redox homeostasis could provide, until now, an unappreciated contribution to understanding how many partners are involved in promoting the redox impairment leading to PCD. Moreover post-translational modifications seem to play important regulatory roles in the adaptation of TBY-2 cells to different intensities of heat stress.


Subject(s)
Cell Death , Heat-Shock Response , Nicotiana/metabolism , Proteome/metabolism , Cell Line , Electrophoresis, Gel, Two-Dimensional , Homeostasis , Hot Temperature , Protein Processing, Post-Translational , Tandem Mass Spectrometry , Nicotiana/cytology
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