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Klocker Helmut

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COST Action CA15203 (2016-2021): MitoEAGLE
Evolution-Age-Gender-Lifestyle-Environment: mitochondrial fitness mapping


Klocker Helmut


MitoPedia topics: EAGLE 

COST: Member COST WG1: WG1


Name Klocker Helmut, Prof., MD
Institution
Address Department of Urology, Medical University of Innsbruck,
City Innsbruck
State/Province
Country Austria
Email
Weblink
O2k-Network Lab


Labels: Field of research: Clinical 



Publications

 PublishedReference
Bastos Sant'Anna Silva 2021 Cancers (Basel)2021Bastos Sant'Anna Silva AC, Perez Valencia JA, Sciacovelli M, Lalou C, Sarlak S, Tronci L, Nikitopoulou E, Meszaros AT, Frezza C, Rossignol R, Gnaiger E, Klocker H (2021) Succinate anaplerosis has an onco-driving potential in prostate cancer cells. https://doi.org/10.3390/cancers13071727
Schoepf 2020 Nat Commun2020Schöpf Bernd, Weissensteiner Hansi, Schäfer Georg, Fazzini Federica, Charoentong Pornpimol, Naschberger Andreas, Rupp Bernhard, Fendt Liane, Bukur Valesca, Giese Irina, Sorn Patrick, Sant’Anna-Silva Ana Carolina, Iglesias-Gonzalez Javier, Sahin Ugur, Kronenberg Florian, Gnaiger Erich, Klocker Helmut (2020) OXPHOS remodeling in high-grade prostate cancer involves mtDNA mutations and increased succinate oxidation. https://doi.org/10.1038/s41467-020-15237-5
BEC 2020.1 doi10.26124bec2020-0001.v12020Gnaiger E et al ― MitoEAGLE Task Group (2020) Mitochondrial physiology. Bioenerg Commun 2020.1. https://doi.org/10.26124/bec:2020-0001.v1
Weber 2018 Int J Mol Sci2018Weber A, Klocker H, Oberacher H, Gnaiger E, Neuwirt H, Sampson N, Eder IE (2018) Succinate accumulation is associated with a shift of mitochondrial respiratory control and HIF-1α upregulation in PTEN negative prostate cancer cells. Int J Mol Sci 19:2129.
Schoepf 2016 FEBS J2016Schöpf B, Schäfer G, Weber A, Talasz H, Eder IE, Klocker H, Gnaiger E (2016) Oxidative phosphorylation and mitochondrial function differ between human prostate tissue and cultured cells. https://doi.org/10.1111/febs.13733
Dueregger 2015 PLoS One2015Dueregger A, Schöpf B, Eder T, Höfer J, Gnaiger E, Aufinger A, Kenner L, Perktold B, Ramoner R, Klocker H, Eder IE (2015) Differential utilization of dietary fatty acids in benign and malignant cells of the prostate. PLoS One 10(8):e0135704.
Ofer 2015 Mol Endocrinol2015Ofer P, Heidegger I, Eder IE, Schöpf B, Neuwirt H, Geley S, Klocker H, Massoner P (2015) Both IGF1R and INSR knockdown exert anti-tumorigenic effects in prostate cancer in vitro and in vivo. Mol Endocrinol 29:1694-707.

Abstracts

 PublishedReference
Bastos Sant'Anna Silva 2019 Life Sciences Meeting 2019 Innsbruck AT2019Cellular succinate transport and mitochondrial respiratory function in prostate cancer.
Schoepf 2018 33rd Annual EAU Congress Copenhagen2018Shift of mitochondrial oxidative phosphorylation is associated with mtDNA mutational load in primary prostate cancer tissue.
Bastos Sant'Anna Silva 2018 TRANSMIT Bertinoro di Romagna IT2018Cellular succinate transport and mitochondrial respiratory function in prostate cancer.
Bastos Sant'Anna Silva 2018 MiPschool Tromso C42018
Ana Bastos Sant'Anna
Role of succinate in prostate cancer cells: uptake and mitochondrial respiratory function.
Gnaiger 2017 Abstract EUROMIT2017 Cologne2017
EUROMIT2017
Again not a Warburg effect - mitochondrial function in primary prostate cancer.
Schoepf 2016 Abstract Mito Xmas Meeting Innsbruck2016Mitochondrial function in primary prostate cancer.
Gnaiger 2016 Abstract UMDF20162016Schöpf B, Schäfer G, Weber A, Talasz H, Eder IE, Klocker H, Gnaiger E (2016) Oxidative phosphorylation and mitochondrial function differ between human prostate tissue and cultured cells.
Schoepf 2016 Abstract Androgens 20162016Mitochondrial function and mitochondrial heteroplasmy levels differ between benign and malignant prostate tissue.
Weber 2016 Abstract Mito Xmas Meeting Innsbruck2016Loss of PTEN in prostate cancer cells leads to a switch to succinate-mediated mitochondrial respiration associated with increased expression of NaDC3 and HIF-1alpha.
Schoepf 2014 Abstract MiP20142014OXPHOS analysis in small prostate biopsies.