Javascript must be enabled to continue!
Osmotic stress‐induced localisation switch of CBR1 from mitochondria to the endoplasmic reticulum triggers ATP production via β‐oxidation to respond to osmotic shock
View through CrossRef
AbstractDrought and high salinity are major environmental factors that reduce plant growth and development, leading to loss of plant productivity in agriculture. Under these stress conditions, photosynthesis is greatly suppressed despite the high cellular energy cost of stress response processes. Currently, the process that allows plants to secure the energy required for osmotic stress responses remains elusive. Here, we provide evidence that cytochrome b5 reductase 1 (CBR1), a cytochrome b5 reductase, plays an important role in ATP production in response to NaCl and dehydration stresses. Overexpression and loss of function of CBR1 led to enhanced resistance and sensitivity, respectively, to osmotic stress. Upon exposure to osmotic stress, CBR1 was localised to the endoplasmic reticulum (ER) instead of to mitochondria, where it was localised under normal conditions. Transgenic plants overexpressing ER‐targeted CBR1 showed enhanced resistance to osmotic stress. Moreover, CBR1‐ER and CBR1‐OX plants, had higher levels of ATP and unsaturated fatty acids under osmotic stress. However, these effects were abrogated by thioridazine and 2‐deoxy glucose, inhibitors of β‐oxidation and glycolysis, respectively. Based on these results, we propose that ER‐localised CBR1 triggers ATP production via the production and β‐oxidation of polyunsaturated fatty acids under osmotic stress.
Title: Osmotic stress‐induced localisation switch of CBR1 from mitochondria to the endoplasmic reticulum triggers ATP production via β‐oxidation to respond to osmotic shock
Description:
AbstractDrought and high salinity are major environmental factors that reduce plant growth and development, leading to loss of plant productivity in agriculture.
Under these stress conditions, photosynthesis is greatly suppressed despite the high cellular energy cost of stress response processes.
Currently, the process that allows plants to secure the energy required for osmotic stress responses remains elusive.
Here, we provide evidence that cytochrome b5 reductase 1 (CBR1), a cytochrome b5 reductase, plays an important role in ATP production in response to NaCl and dehydration stresses.
Overexpression and loss of function of CBR1 led to enhanced resistance and sensitivity, respectively, to osmotic stress.
Upon exposure to osmotic stress, CBR1 was localised to the endoplasmic reticulum (ER) instead of to mitochondria, where it was localised under normal conditions.
Transgenic plants overexpressing ER‐targeted CBR1 showed enhanced resistance to osmotic stress.
Moreover, CBR1‐ER and CBR1‐OX plants, had higher levels of ATP and unsaturated fatty acids under osmotic stress.
However, these effects were abrogated by thioridazine and 2‐deoxy glucose, inhibitors of β‐oxidation and glycolysis, respectively.
Based on these results, we propose that ER‐localised CBR1 triggers ATP production via the production and β‐oxidation of polyunsaturated fatty acids under osmotic stress.
Related Results
Osmotic stress-induced localization switch of CBR1 from mitochondria to the endoplasmic reticulum triggers ATP production via β-oxidation to respond to osmotic shock
Osmotic stress-induced localization switch of CBR1 from mitochondria to the endoplasmic reticulum triggers ATP production via β-oxidation to respond to osmotic shock
Drought and high salinity are major environmental factors that reduce
plant growth and development, leading to loss of plant productivity in
agriculture. Under these stress conditi...
Comparison of Endoplasmic Reticulum Stress Messenger Ribonucleic Acid Expression Between Chronic Otitis Media With and Without Cholesteatoma
Comparison of Endoplasmic Reticulum Stress Messenger Ribonucleic Acid Expression Between Chronic Otitis Media With and Without Cholesteatoma
BACKGROUND: We evaluated and compared the role of endoplasmic reticulum stress in chronic otitis media with cholesteatoma and chronic otitis media without cholesteatoma.
METHODS: ...
The Account of the Effect of Switch Probability on Switch and Mixing Costs: An ERP Study in a Cued Task-switching Paradigm
The Account of the Effect of Switch Probability on Switch and Mixing Costs: An ERP Study in a Cued Task-switching Paradigm
Background:
Whether the effect of switch probability on switch and mixing costs is explained by an activation or preparation account is unclear.
...
Perfluorooctane sulfonate causes damage to L-02 cells via Wnt/β-catenin signal path and endoplasmic reticulum stress pathway
Perfluorooctane sulfonate causes damage to L-02 cells via Wnt/β-catenin signal path and endoplasmic reticulum stress pathway
Perfluorooctane sulfonate (PFOS) is one of the most widely used perfluorinated compounds, and as an environmental endocrine disruptor and environmental persistent pollutant, the th...
H+ and Cation Movements Associated with ADP, ATP Transport in Mitochondria
H+ and Cation Movements Associated with ADP, ATP Transport in Mitochondria
H+ and K+ movement associated with the mitochondrial ADP‐ATP exchange have been measured by glass electrode recordings in order to investigate the energy control of the ADP‐ATP exc...
Contributory Effect of Adenosine Triphosphate (ATP) To Male Infertility
Contributory Effect of Adenosine Triphosphate (ATP) To Male Infertility
Infertility comes at a cost to the couples/spouses as the associated trauma ranges from depression to rejection, emotional imbalance to mention a few. Adenosine triphosphate (ATP) ...
Research hotspots and frontiers of endoplasmic reticulum in glomerular podocytes: a bibliometric and visual analysis from 2005 to 2023
Research hotspots and frontiers of endoplasmic reticulum in glomerular podocytes: a bibliometric and visual analysis from 2005 to 2023
BackgroundThe glomerular podocyte endoplasmic reticulum is a critical component in renal function, yet its research landscape is not fully understood. This study aims to map the ex...
β-Amyloid Peptide, Endoplasmic Reticulum Stress, and Alzheimer’s Disease
β-Amyloid Peptide, Endoplasmic Reticulum Stress, and Alzheimer’s Disease
Accumulation of β-amyloid (Aβ) peptide in the brain is suggested to play a key role in the
pathogenesis of Alzheimer’s disease (AD). Both the inherited familial and the sporadic fo...

