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Signal transduction to the permeability transition pore.
scientific article published on 11 February 2010
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Europe PubMed Central
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2866765
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https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:20153328%20AND%20SRC:MED&resulttype=core&format=json
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18 January 2020
review article
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title
Signal transduction to the permeability transition pore
(English)
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Europe PubMed Central
PMCID
2866765
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https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:20153328%20AND%20SRC:MED&resulttype=core&format=json
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18 January 2020
author
Andrea Rasola
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1
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Europe PubMed Central
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2866765
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https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:20153328%20AND%20SRC:MED&resulttype=core&format=json
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18 January 2020
Paolo Bernardi
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4
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Europe PubMed Central
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2866765
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https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:20153328%20AND%20SRC:MED&resulttype=core&format=json
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18 January 2020
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Marco Sciacovelli
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2
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2866765
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18 January 2020
Boris Pantic
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3
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2866765
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18 January 2020
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English
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publication date
11 February 2010
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Europe PubMed Central
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2866765
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18 January 2020
published in
FEBS Letters
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Europe PubMed Central
PMCID
2866765
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:20153328%20AND%20SRC:MED&resulttype=core&format=json
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18 January 2020
volume
584
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Europe PubMed Central
PMCID
2866765
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18 January 2020
issue
10
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Europe PubMed Central
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2866765
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18 January 2020
page(s)
1989-1996
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Europe PubMed Central
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2866765
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18 January 2020
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Ser9 phosphorylation of mitochondrial GSK-3beta is a primary mechanism of cardiomyocyte protection by erythropoietin against oxidant-induced apoptosis
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The mitochondrial phosphate carrier interacts with cyclophilin D and may play a key role in the permeability transition
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GM1-ganglioside accumulation at the mitochondria-associated ER membranes links ER stress to Ca(2+)-dependent mitochondrial apoptosis
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SHP-1 exhibits a pro-apoptotic function in antigen-stimulated mast cells: positive regulation of mitochondrial death pathways and negative regulation of survival signaling pathways
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Bad targets the permeability transition pore independent of Bax or Bak to switch between Ca2+-dependent cell survival and death
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Cyclophilin D gene ablation protects mice from ischemic renal injury.
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Quercetin can act either as an inhibitor or an inducer of the mitochondrial permeability transition pore: A demonstration of the ambivalent redox character of polyphenols.
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1 September 2018
Modulation of mitochondrial K(+) permeability and reactive oxygen species production by the p13 protein of human T-cell leukemia virus type 1.
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Functional characterization of the thylakoid Ndh complex phosphorylation by site-directed mutations in the ndhF gene
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Snake phospholipase A2 neurotoxins enter neurons, bind specifically to mitochondria, and open their transition pores.
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1 September 2018
Hypoxia increases activity of the BK-channel in the inner mitochondrial membrane and reduces activity of the permeability transition pore.
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1 September 2018
Glycogen synthase kinase-3 inactivation is not required for ischemic preconditioning or postconditioning in the mouse
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1 September 2018
25-hydroxycholesterol induces mitochondria-dependent apoptosis via activation of glycogen synthase kinase-3beta in PC12 cells
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1 September 2018
Inhibition of GSK3beta by postconditioning is required to prevent opening of the mitochondrial permeability transition pore during reperfusion
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1 September 2018
Limitation of infarct size by erythropoietin is associated with translocation of Akt to the mitochondria after reperfusion
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1 September 2018
Delayed cardioprotection afforded by the glycogen synthase kinase 3 inhibitor SB-216763 occurs via a KATP- and MPTP-dependent mechanism at reperfusion
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PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=2866765
retrieved
1 September 2018
Akt mediates mitochondrial protection in cardiomyocytes through phosphorylation of mitochondrial hexokinase-II.
1 reference
stated in
PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=2866765
retrieved
1 September 2018
Apoptosis-inducing antitumor efficacy of hexokinase II inhibitor in hepatocellular carcinoma.
1 reference
stated in
PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=2866765
retrieved
1 September 2018
High cyclophilin D content of synaptic mitochondria results in increased vulnerability to permeability transition.
1 reference
stated in
PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=2866765
retrieved
1 September 2018
Modulation of the permeability transition pore by inhibition of the mitochondrial K(ATP) channel in liver vs. brain mitochondria.
1 reference
stated in
PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=2866765
retrieved
1 September 2018
Modulation of the mitochondrial cyclosporin A-sensitive permeability transition pore by matrix pH. Evidence that the pore open-closed probability is regulated by reversible histidine protonation.
1 reference
stated in
PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=2866765
retrieved
1 September 2018
A maxi-chloride channel in the inner membrane of mammalian mitochondria
1 reference
stated in
Crossref
reference URL
https://api.crossref.org/works/10.1016%2FJ.FEBSLET.2010.02.022
retrieved
21 January 2018
Activation of glycogen synthase kinase 3beta disrupts the binding of hexokinase II to mitochondria by phosphorylating voltage-dependent anion channel and potentiates chemotherapy-induced cytotoxicity
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/20153328
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Overexpression of Bcl-2 suppresses the calcium activation of a mitochondrial megachannel
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/20153328
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Identifiers
DOI
10.1016/J.FEBSLET.2010.02.022
1 reference
stated in
Europe PubMed Central
PMCID
2866765
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:20153328%20AND%20SRC:MED&resulttype=core&format=json
retrieved
18 January 2020
Fatcat ID
release_fysi6dnb7rbpdjsdkn4ax43xqq
1 reference
stated in
Fatcat
reference URL
https://api.fatcat.wiki/v0/release/fysi6dnb7rbpdjsdkn4ax43xqq
retrieved
24 November 2022
based on heuristic
mapped directly with Wikidata item
PMCID
2866765
1 reference
stated in
Europe PubMed Central
PMCID
2866765
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:20153328%20AND%20SRC:MED&resulttype=core&format=json
retrieved
18 January 2020
PubMed ID
20153328
1 reference
stated in
Europe PubMed Central
PMCID
2866765
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:20153328%20AND%20SRC:MED&resulttype=core&format=json
retrieved
18 January 2020
ResearchGate publication ID
41427732
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