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1.
J Biol Chem ; 290(51): 30375-89, 2015 Dec 18.
Article in English | MEDLINE | ID: mdl-26511318

ABSTRACT

Hyperosmotic shock induces early calpain activation, Smac/DIABLO release from the mitochondria, and p38/JNK activation in Xenopus oocytes. These pathways regulate late cytochrome c release and caspase-3 activation. Here, we show that JNK1-1 and JNK1-2 are activated early by osmostress, and sustained activation of both isoforms accelerates the apoptotic program. When caspase-3 is activated, JNK1-2 is proteolyzed at Asp-385 increasing the release of cytochrome c and caspase-3 activity, thereby creating a positive feedback loop. Expression of Bcl-xL markedly reduces hyperosmotic shock-induced apoptosis. In contrast, expression of Bid induces rapid caspase-3 activation, even in the absence of osmostress, which is blocked by Bcl-xL co-expression. In these conditions a significant amount of Bid in the cytosol is mono- and bi-ubiquitinated. Caspase-3 activation by hyperosmotic shock induces proteolysis of Bid and mono-ubiquitinated Bid at Asp-52 increasing the release of cytochrome c and caspase-3 activation, and thus creating a second positive feedback loop. Revealing the JNK isoforms and the loops activated by osmostress could help to design better treatments for human diseases caused by perturbations in fluid osmolarity.


Subject(s)
Apoptosis Regulatory Proteins/metabolism , Caspase 3/metabolism , Mitogen-Activated Protein Kinase 8/metabolism , Oocytes/metabolism , Osmotic Pressure/physiology , Proteolysis , Signal Transduction , Xenopus Proteins/metabolism , Animals , Apoptosis Regulatory Proteins/genetics , Caspase 3/genetics , Enzyme Activation , Humans , Isoenzymes/genetics , Isoenzymes/metabolism , Mitogen-Activated Protein Kinase 8/genetics , Oocytes/cytology , Xenopus Proteins/genetics , Xenopus laevis
2.
PLoS One ; 10(9): e0135249, 2015.
Article in English | MEDLINE | ID: mdl-26335493

ABSTRACT

Some properties of signaling systems, like ultrasensitivity, hysteresis (a form of biochemical memory), and all-or-none responses at a single cell level, are important to understand the regulation of irreversible processes. Xenopus oocytes are a suitable cell model to study these properties. The p38 MAPK (mitogen-activated protein kinase) pathway is activated by different stress stimuli, including osmostress, and regulates multiple biological processes, from immune response to cell cycle. Recently, we have reported that activation of p38 and JNK regulate osmostress-induced apoptosis in Xenopus oocytes and that sustained activation of p38 accelerates cytochrome c release and caspase-3 activation. However, the signaling properties of p38 in response to hyperosmotic shock have not been studied. Here we show, using Xenopus oocytes as a cell model, that hyperosmotic shock activates the p38 signaling pathway with an ultrasensitive and bimodal response in a time-dependent manner, and with low hysteresis. At a single cell level, p38 activation is not well correlated with cytochrome c release 2 h after hyperosmotic shock, but a good correlation is observed at 4 h after treatment. Interestingly, cytochrome c microinjection induces p38 phosphorylation through caspase-3 activation, and caspase inhibition reduces p38 activation induced by osmostress, indicating that a positive feedback loop is engaged by hyperosmotic shock. To know the properties of the stress protein kinases activated by hyperosmotic shock will facilitate the design of computational models to predict cellular responses in human diseases caused by perturbations in fluid osmolarity.


Subject(s)
Signal Transduction , p38 Mitogen-Activated Protein Kinases/metabolism , Animals , Cytochromes c/metabolism , Female , Oocytes/enzymology , Osmotic Pressure , Xenopus laevis
3.
PLoS One ; 10(4): e0124482, 2015.
Article in English | MEDLINE | ID: mdl-25866890

ABSTRACT

Hyperosmotic shock induces cytochrome c release and caspase-3 activation in Xenopus oocytes, but the regulators and signaling pathways involved are not well characterized. Here we show that hyperosmotic shock induces rapid calpain activation and high levels of Smac/DIABLO release from the mitochondria before significant amounts of cytochrome c are released to promote caspase-3 activation. Calpain inhibitors or EGTA microinjection delays osmostress-induced apoptosis, and blockage of Smac/DIABLO with antibodies markedly reduces cytochrome c release and caspase-3 activation. Hyperosmotic shock also activates the p38 and JNK signaling pathways very quickly. Simultaneous inhibition of both p38 and JNK pathways reduces osmostress-induced apoptosis, while sustained activation of these kinases accelerates the release of cytochrome c and caspase-3 activation. Therefore, at least four different pathways early induced by osmostress converge on the mitochondria to trigger apoptosis. Deciphering the mechanisms of hyperosmotic shock-induced apoptosis gives insight for potential treatments of human diseases that are caused by perturbations in fluid osmolarity.


Subject(s)
Apoptosis , Calpain/metabolism , MAP Kinase Kinase 4/metabolism , Mitochondrial Proteins/metabolism , Oocytes/cytology , Xenopus Proteins/metabolism , p38 Mitogen-Activated Protein Kinases/metabolism , Animals , Female , Osmotic Pressure , Signal Transduction , Xenopus laevis
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