Studies of the role of tubulin beta II isotype in regulation of mitochondrial respiration in intracellular energetic units in cardiac cells

Author:

Gonzalez-Granillo Marcela,Grichine Alexei,Guzun Rita,Usson Yves,Tepp Kersti,Chekulayev Vladimir,Shevchuk Igor,Karu-Varikmaa Minna,Kuznetsov Andrey V.,Grimm Michael,Saks Valdur,Kaambre Tuuli

Funder

INSERM

CNRS

Estonian Science Foundation

Estonia Ministry of Education and Science

Austrian Science Fund (FWF)

National Council of Science and Technology of Mexico (CONACYT)

Publisher

Elsevier BV

Subject

Cardiology and Cardiovascular Medicine,Molecular Biology

Reference58 articles.

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2. Intracellular compartmentation, structure and function of creatine kinase isoenzymes in tissues with high and fluctuating energy demands: the ‘phosphocreatine circuit’ for cellular energy homeostasis;Wallimann;Biochem J,1992

3. The phosphocreatine circuit: molecular and cellular physiology of creatine kinases, sensitivity to free radicals, and enhancement by creatine supplementation;Wallimann,2007

4. Molecular system bioenergetics,2007

5. The creatine kinase phosphotransfer network: thermodynamic and kinetic considerations, the impact of the mitochondrial outer membrane and modelling approaches;Saks,2007

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