dc.creator | Karra A.G., Sioutopoulou A., Gorgogietas V., Samiotaki M., Panayotou G., Psarra A.-M.G. | en |
dc.date.accessioned | 2023-01-31T08:32:32Z | |
dc.date.available | 2023-01-31T08:32:32Z | |
dc.date.issued | 2022 | |
dc.identifier | 10.1016/j.jprot.2022.104509 | |
dc.identifier.issn | 18743919 | |
dc.identifier.uri | http://hdl.handle.net/11615/74531 | |
dc.description.abstract | Glucocorticoids are steroid hormones that regulate plethora biological actions such as growth and metabolism, immune response, and apoptosis. Glucocorticoids actions are mediated via glucocorticoid receptors which act mainly as transcription factors, but it is also found to be localized in mitochondria. Mitochondrial localization of the receptor indicates novel functions of the receptor. Characterization of the mitochondrial glucocorticoid receptor (mtGR) interacting proteins will shed light on these actions and the biochemical mechanisms that underlie mitochondrial glucocorticoid receptor import and functions. In this study, applying immunoprecipitation, mass spectrometry and Western blot analysis of the GR interacting proteins in total or mitochondrial extracts of HepG2 cells and of HepG2 cells overexpressing a mitochondrial targeted GR we found pyruvate dehydrogenase (PDH), chaperones such as and heat shock protein (HSP) −60, −70, −75 and −90, and 78 kDa glucose-regulated protein, mitochondrial transcription factors and enzymes involved in the regulation of the mitochondrial protein biosynthesis, lipid metabolism, ATP production and apoptosis as glucocorticoid receptor interacting proteins. Our results uncover potential novel mitochondrial partners of the receptor, suggesting possible new regulatory roles of mtGR in the control of mitochondrial-associated functions of the cell. Significance: In this study the mitochondrial GR interacting proteins were characterized highlighting novel regulatory roles of the receptor in mitochondria. Detection of the mtGR/PDH and mtGR/HSP60 interaction in almost all the analyses performed uncovered PDH and HSP60 proteins as potent mtGR binding partners. The interesting finding of the PDH/mtGR interaction possibly indicates involvement of mtGR in the regulation of the balance between glycolytic and oxidative phosphorylation energy production. Characterization of the mitochondrial heat shock −60, −70, −75 and 78 proteins as mtGR binding partners contribute to the characterization of the biochemical mechanisms of the mitochondrial import of the receptor. Moreover, identification of mitochondrial heat shock proteins, metabolic enzymes, transcription factors, OXPHOS, and regulatory molecules in mitochondrial protein biosynthesis as mtGR binding partners indicates possible new regulatory roles of mtGR in the glucocorticoids-induced regulation and orchestration of nuclear and mitochondrial functions, the exact biochemical mechanism of which remain to be established. The study discloses potential new regulatory roles of the receptor in mitochondria, pointing out its importance as a promising target molecule for the control of the mitochondria-associated pathophysiology of the cell. © 2022 | en |
dc.language.iso | en | en |
dc.source | Journal of Proteomics | en |
dc.source.uri | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85124190185&doi=10.1016%2fj.jprot.2022.104509&partnerID=40&md5=ad56244bdb00fed75a0ed5ff4eafa5cb | |
dc.subject | 78 glucose regulated protein | en |
dc.subject | actin | en |
dc.subject | acyl coenzyme A dehydrogenase | en |
dc.subject | adenosine triphosphatase (potassium sodium) | en |
dc.subject | adenosine triphosphate | en |
dc.subject | atp synthase subunit alpha mitochondrial | en |
dc.subject | beta tubulin | en |
dc.subject | calgranulin A | en |
dc.subject | carboxylic acid | en |
dc.subject | chaperone | en |
dc.subject | chaperonin 60 | en |
dc.subject | cytochrome P450 reductase | en |
dc.subject | cytoplasmic 2 | en |
dc.subject | dermcidin | en |
dc.subject | dihydrolipoamide acetyltransferase | en |
dc.subject | dimethylglycine dehydrogenase | en |
dc.subject | dolichyl diphosphooligosaccharide protein glycosyltransferase subunit 1 | en |
dc.subject | dolichyl diphosphooligosaccharide protein glycosyltransferase subunit 2 | en |
dc.subject | elongation factor | en |
dc.subject | elongation factor 1alpha | en |
dc.subject | elongation factor Tu | en |
dc.subject | endoplasmic reticulum chaperone BiP | en |
dc.subject | enoyl coenzyme A hydratase | en |
dc.subject | glucocorticoid | en |
dc.subject | glucocorticoid receptor | en |
dc.subject | glucose regulated protein | en |
dc.subject | glucose regulated protein 94 | en |
dc.subject | green fluorescent protein | en |
dc.subject | heat shock protein | en |
dc.subject | heat shock protein 70 | en |
dc.subject | heat shock protein 75 | en |
dc.subject | heat shock protein 90 | en |
dc.subject | heterogeneous nuclear ribonucleoprotein D0 | en |
dc.subject | long chain 3 hydroxyacyl coenzyme A dehydrogenase | en |
dc.subject | long chain enoyl coa hydratase | en |
dc.subject | long chain fatty acid coa ligase 4 | en |
dc.subject | long chain fatty acid coenzyme A ligase | en |
dc.subject | mitochondrial 60 kda heat shock protein | en |
dc.subject | mitochondrial protein | en |
dc.subject | mitochondrial transcription factor A | en |
dc.subject | phosphate | en |
dc.subject | prenylcysteine oxidase 1 | en |
dc.subject | protein bcl 2 | en |
dc.subject | protein disulfide isomerase | en |
dc.subject | proton transporting adenosine triphosphate synthase | en |
dc.subject | pyruvate dehydrogenase | en |
dc.subject | pyruvate dehydrogenase complex | en |
dc.subject | reduced nicotinamide adenine dinucleotide phosphate | en |
dc.subject | sodium potassium transporting atpase subunit alpha 1 | en |
dc.subject | transcription factor | en |
dc.subject | trifunctional enzyme subunit beta | en |
dc.subject | tubulin beta 2a chain | en |
dc.subject | tubulin beta 2b chain | en |
dc.subject | tubulin beta 3 chain | en |
dc.subject | unclassified drug | en |
dc.subject | voltage dependent anion channel | en |
dc.subject | glucocorticoid | en |
dc.subject | glucocorticoid receptor | en |
dc.subject | heat shock protein | en |
dc.subject | mitochondrial protein | en |
dc.subject | oxidoreductase | en |
dc.subject | pyruvic acid | en |
dc.subject | transcription factor | en |
dc.subject | apoptosis | en |
dc.subject | Article | en |
dc.subject | biochemical analysis | en |
dc.subject | biosynthesis | en |
dc.subject | controlled study | en |
dc.subject | energy metabolism | en |
dc.subject | energy yield | en |
dc.subject | gene overexpression | en |
dc.subject | Hep-G2 cell line | en |
dc.subject | human | en |
dc.subject | human cell | en |
dc.subject | immunoprecipitation | en |
dc.subject | lipid metabolism | en |
dc.subject | mass spectrometry | en |
dc.subject | mitochondrion | en |
dc.subject | oxidative phosphorylation | en |
dc.subject | protein analysis | en |
dc.subject | protein binding | en |
dc.subject | protein phosphorylation | en |
dc.subject | protein protein interaction | en |
dc.subject | protein synthesis | en |
dc.subject | proteomics | en |
dc.subject | regulatory mechanism | en |
dc.subject | Western blotting | en |
dc.subject | metabolism | en |
dc.subject | proteomics | en |
dc.subject | Glucocorticoids | en |
dc.subject | Heat-Shock Proteins | en |
dc.subject | Mitochondria | en |
dc.subject | Mitochondrial Proteins | en |
dc.subject | Oxidoreductases | en |
dc.subject | Proteomics | en |
dc.subject | Pyruvates | en |
dc.subject | Receptors, Glucocorticoid | en |
dc.subject | Transcription Factors | en |
dc.subject | Elsevier B.V. | en |
dc.title | Proteomic analysis of the mitochondrial glucocorticoid receptor interacting proteins reveals pyruvate dehydrogenase and mitochondrial 60 kDa heat shock protein as potent binding partners | en |
dc.type | journalArticle | en |