A Systems Biology Approach to Investigating Apoptotic Stimuli as Effectors of Cell Metabolism: Practical Application of Top-Down Control Analysis to Attached Neurons
Reduced glycolytic and mitochondrial respiration rates are common features of apoptosis that may reflect key events contributing to cell death. However, it is unclear to what extent the rate changes can be explained by direct alterations in the kinetics of the participating reactions, as changes in...
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Online Access: | http://www.mdpi.com/1422-0067/10/2/702/ |
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doaj-b1c74bf7f7c2441f880e27d7c34f518c2020-11-24T21:17:42ZengMDPI AGInternational Journal of Molecular Sciences1422-00672009-02-0110270272210.3390/ijms10020702A Systems Biology Approach to Investigating Apoptotic Stimuli as Effectors of Cell Metabolism: Practical Application of Top-Down Control Analysis to Attached NeuronsMika B. JekabsonsReduced glycolytic and mitochondrial respiration rates are common features of apoptosis that may reflect key events contributing to cell death. However, it is unclear to what extent the rate changes can be explained by direct alterations in the kinetics of the participating reactions, as changes in the concentrations of intermediates also affect reaction rates. Direct kinetic changes can be identified, ranked, and compared to the indirect effects mediated by the intermediates using top-down control analysis. Flux changes that are explained primarily by direct effects are likely to be prime targets of the pathways that signal death, and thus important contributors to apoptosis. Control analysis concepts relevant to identifying such effects are reviewed. Metabolic flux measurements are essential for this approach, but can be technically difficult, particularly when using adherent cells such as neurons. A simple method is described that renders such measurements feasible. http://www.mdpi.com/1422-0067/10/2/702/Apoptosisglycolysismitochondria |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mika B. Jekabsons |
spellingShingle |
Mika B. Jekabsons A Systems Biology Approach to Investigating Apoptotic Stimuli as Effectors of Cell Metabolism: Practical Application of Top-Down Control Analysis to Attached Neurons International Journal of Molecular Sciences Apoptosis glycolysis mitochondria |
author_facet |
Mika B. Jekabsons |
author_sort |
Mika B. Jekabsons |
title |
A Systems Biology Approach to Investigating Apoptotic Stimuli as Effectors of Cell Metabolism: Practical Application of Top-Down Control Analysis to Attached Neurons |
title_short |
A Systems Biology Approach to Investigating Apoptotic Stimuli as Effectors of Cell Metabolism: Practical Application of Top-Down Control Analysis to Attached Neurons |
title_full |
A Systems Biology Approach to Investigating Apoptotic Stimuli as Effectors of Cell Metabolism: Practical Application of Top-Down Control Analysis to Attached Neurons |
title_fullStr |
A Systems Biology Approach to Investigating Apoptotic Stimuli as Effectors of Cell Metabolism: Practical Application of Top-Down Control Analysis to Attached Neurons |
title_full_unstemmed |
A Systems Biology Approach to Investigating Apoptotic Stimuli as Effectors of Cell Metabolism: Practical Application of Top-Down Control Analysis to Attached Neurons |
title_sort |
systems biology approach to investigating apoptotic stimuli as effectors of cell metabolism: practical application of top-down control analysis to attached neurons |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1422-0067 |
publishDate |
2009-02-01 |
description |
Reduced glycolytic and mitochondrial respiration rates are common features of apoptosis that may reflect key events contributing to cell death. However, it is unclear to what extent the rate changes can be explained by direct alterations in the kinetics of the participating reactions, as changes in the concentrations of intermediates also affect reaction rates. Direct kinetic changes can be identified, ranked, and compared to the indirect effects mediated by the intermediates using top-down control analysis. Flux changes that are explained primarily by direct effects are likely to be prime targets of the pathways that signal death, and thus important contributors to apoptosis. Control analysis concepts relevant to identifying such effects are reviewed. Metabolic flux measurements are essential for this approach, but can be technically difficult, particularly when using adherent cells such as neurons. A simple method is described that renders such measurements feasible. |
topic |
Apoptosis glycolysis mitochondria |
url |
http://www.mdpi.com/1422-0067/10/2/702/ |
work_keys_str_mv |
AT mikabjekabsons asystemsbiologyapproachtoinvestigatingapoptoticstimuliaseffectorsofcellmetabolismpracticalapplicationoftopdowncontrolanalysistoattachedneurons AT mikabjekabsons systemsbiologyapproachtoinvestigatingapoptoticstimuliaseffectorsofcellmetabolismpracticalapplicationoftopdowncontrolanalysistoattachedneurons |
_version_ |
1726012646214336512 |