Source:http://linkedlifedata.com/resource/pubmed/id/15339793
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rdf:type | |
lifeskim:mentions | |
pubmed:issue |
1
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pubmed:dateCreated |
2004-12-7
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pubmed:abstractText |
Cd(2+) induces apoptosis of kidney proximal tubule (PT) cells. Mitochondria play a pivotal role in toxic compound-induced apoptosis by releasing cytochrome c. Our objective was to investigate the mechanisms underlying Cd(2+)-induced cytochrome c release from mitochondria in rat PT cells. Using Hoechst 33342 or MTT assay, 10 muM Cd(2+) induced approximately 5-10% apoptosis in PT cells at 6 and 24 h, which was associated with cytochrome c and apoptosis-inducing factor release at 24 h only. This correlated with previously described maximal intracellular Cd(2+) concentrations at 24 h, suggesting that elevated Cd(2+) may directly induce mitochondrial liberation of proapoptotic factors. Indeed, Cd(2+) caused swelling of energized isolated kidney cortex mitochondria (EC(50) approximately 9 muM) and cytochrome c release, which were independent of permeability transition pore (PTP) opening since PTP inhibitors cyclosporin A or bongkrekic acid had no effect. On the contrary, Cd(2+) inhibited swelling and cytochrome c release induced by PTP openers (PO(4)(3-) or H(2)O(2)+Ca(2+)). The mitochondrial Ca(2+) uniporter (MCU) played a key role in mitochondrial damage: 1) MCU inhibitors (La(3+), ruthenium red, Ru360) prevented swelling and cytochrome c release; and 2) ruthenium red attenuated Cd(2+) inhibition of PO(4)(3-)-induced swelling. Using the Cd(2+)-sensitive fluorescent indicator FluoZin-1, Cd(2+) was also taken up by mitoplasts. The aquaporin inhibitor AgNO(3) abolished Cd(2+)-induced swelling of mitoplasts. This could be partially mediated by activation of the mitoplast-enriched water channel aquaporin-8. Thus cytosolic Cd(2+) concentrations exceeding a certain threshold may directly cause mitochondrial damage and apoptotic development by interacting with MCU and water channels in the inner mitochondrial membrane.
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pubmed:language |
eng
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pubmed:journal | |
pubmed:citationSubset |
IM
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pubmed:chemical |
http://linkedlifedata.com/resource/pubmed/chemical/Cadmium,
http://linkedlifedata.com/resource/pubmed/chemical/Calcium Channels,
http://linkedlifedata.com/resource/pubmed/chemical/Calcium-Binding Proteins,
http://linkedlifedata.com/resource/pubmed/chemical/Cytochromes c,
http://linkedlifedata.com/resource/pubmed/chemical/Ion Channels,
http://linkedlifedata.com/resource/pubmed/chemical/Mitochondrial Membrane Transport...,
http://linkedlifedata.com/resource/pubmed/chemical/mitochondrial calcium uniporter,
http://linkedlifedata.com/resource/pubmed/chemical/mitochondrial permeability...
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pubmed:status |
MEDLINE
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pubmed:month |
Jan
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pubmed:issn |
1931-857X
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pubmed:author | |
pubmed:issnType |
Print
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pubmed:volume |
288
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pubmed:owner |
NLM
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pubmed:authorsComplete |
Y
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pubmed:pagination |
F27-39
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pubmed:dateRevised |
2011-4-28
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pubmed:meshHeading |
pubmed-meshheading:15339793-Animals,
pubmed-meshheading:15339793-Apoptosis,
pubmed-meshheading:15339793-Cadmium,
pubmed-meshheading:15339793-Calcium Channels,
pubmed-meshheading:15339793-Calcium-Binding Proteins,
pubmed-meshheading:15339793-Cell Line,
pubmed-meshheading:15339793-Cytochromes c,
pubmed-meshheading:15339793-Intracellular Membranes,
pubmed-meshheading:15339793-Ion Channels,
pubmed-meshheading:15339793-Kidney Tubules, Proximal,
pubmed-meshheading:15339793-Male,
pubmed-meshheading:15339793-Mitochondrial Membrane Transport Proteins,
pubmed-meshheading:15339793-Mitochondrial Swelling,
pubmed-meshheading:15339793-Permeability,
pubmed-meshheading:15339793-Rats,
pubmed-meshheading:15339793-Rats, Sprague-Dawley,
pubmed-meshheading:15339793-Time Factors
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pubmed:year |
2005
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pubmed:articleTitle |
Cd(2+)-induced cytochrome c release in apoptotic proximal tubule cells: role of mitochondrial permeability transition pore and Ca(2+) uniporter.
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pubmed:affiliation |
Department of Physiology and Pathophysiology, Faculty of Medicine, University of Witten/Herdecke, D-58448 Witten, Germany.
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pubmed:publicationType |
Journal Article,
Research Support, Non-U.S. Gov't
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