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Difference between revisions of "Konrad 2012 PLoS One"

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{{Publication
{{Publication
|title=Konrad C, Kiss G, Torocsik B, Adam-Vizi V, Chinopoulos C (2012) Absence of Ca<sup>2+</sup>-Induced Mitochondrial Permeability Transition but Presence of Bongkrekate-Sensitive Nucleotide Exchange in ''C. crangon'' and ''P. serratus''. PLoS One 7: e39839.
|title=Konrad C, Kiss G, Torocsik B, Adam-Vizi V, Chinopoulos C (2012) Absence of Ca<sup>2+</sup>-induced mitochondrial permeability transition but presence of bongkrekate-sensitive nucleotide exchange in ''C. crangon'' and ''P. serratus''. PLoS One 7: e39839.
|info=[http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3387235/?tool=pubmed PMID: 22768139 Open Access]
|info=[http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3387235/?tool=pubmed PMID: 22768139 Open Access]
|authors=Konrad C, Kiss G, Torocsik B, Adam-Vizi V, Chinopoulos C
|authors=Konrad C, Kiss G, Torocsik B, Adam-Vizi V, Chinopoulos C

Revision as of 21:08, 11 July 2012

Publications in the MiPMap
Konrad C, Kiss G, Torocsik B, Adam-Vizi V, Chinopoulos C (2012) Absence of Ca2+-induced mitochondrial permeability transition but presence of bongkrekate-sensitive nucleotide exchange in C. crangon and P. serratus. PLoS One 7: e39839.

Β» PMID: 22768139 Open Access

Konrad C, Kiss G, Torocsik B, Adam-Vizi V, Chinopoulos C (2012) PLoS One

Abstract: Mitochondria from the embryos of brine shrimp (Artemia franciscana) do not undergo Ca2+-induced permeability transition in the presence of a profound Ca2+ uptake capacity. Furthermore, this crustacean is the only organism known to exhibit bongkrekate-insensitive mitochondrial adenine nucleotide exchange, prompting the conjecture that refractoriness to bongkrekate and absence of Ca2+-induced permeability transition are somehow related phenomena. Here we report that mitochondria isolated from two other crustaceans, brown shrimp (Crangon crangon) and common prawn (Palaemon serratus) exhibited bongkrekate-sensitive mitochondrial adenine nucleotide transport, but lacked a Ca2+-induced permeability transition. Ca2+ uptake capacity was robust in the absence of adenine nucleotides in both crustaceans, unaffected by either bongkrekate or cyclosporin A. Transmission electron microscopy images of Ca2+-loaded mitochondria showed needle-like formations of electron-dense material strikingly similar to those observed in mitochondria from the hepatopancreas of blue crab (Callinectes sapidus) and the embryos of Artemia franciscana. Alignment analysis of the partial coding sequences of the adenine nucleotide translocase (ANT) expressed in Crangon crangon and Palaemon serratus versus the complete sequence expressed in Artemia franciscana reappraised the possibility of the 208-214 amino acid region for conferring sensitivity to bongkrekate. However, our findings suggest that the ability to undergo Ca2+-induced mitochondrial permeability transition and the sensitivity of adenine nucleotide translocase to bongkrekate are not necessarily related phenomena. β€’ Keywords: Crustaceans, permeability transition pore, cyclosporin A

β€’ O2k-Network Lab: HU Budapest Chinopoulos C


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Organism: Other Non-Mammal"Other Non-Mammal" is not in the list (Human, Pig, Mouse, Rat, Guinea pig, Bovines, Horse, Dog, Rabbit, Cat, ...) of allowed values for the "Mammal and model" property. 

Preparation: Isolated Mitochondria"Isolated Mitochondria" is not in the list (Intact organism, Intact organ, Permeabilized cells, Permeabilized tissue, Homogenate, Isolated mitochondria, SMP, Chloroplasts, Enzyme, Oxidase;biochemical oxidation, ...) of allowed values for the "Preparation" property. 

Regulation: Coupling; Membrane Potential"Coupling; Membrane Potential" is not in the list (Aerobic glycolysis, ADP, ATP, ATP production, AMP, Calcium, Coupling efficiency;uncoupling, Cyt c, Flux control, Inhibitor, ...) of allowed values for the "Respiration and regulation" property. 


HRR: Oxygraph-2k, Ca