Cytosolic Ca2+ regulates the energization of isolated brain mitochondria by formation of pyruvate through the malate–aspartate shuttle

Author:

Gellerich Frank Norbert123,Gizatullina Zemfira12,Trumbekaite Sonata4,Korzeniewski Bernard5,Gaynutdinov Timur6,Seppet Enn7,Vielhaber Stefan28,Heinze Hans-Jochen128,Striggow Frank38

Affiliation:

1. Department of Behavioral Neurology, Leibniz Institute for Neurobiology, 39118 Magdeburg, Germany

2. Department of Neurology, Otto von Guericke University of Magdeburg, 39120 Magdeburg, Germany

3. KeyNeurotek Pharmaceuticals AG, ZENIT Technology Park, 39120 Magdeburg, Germany

4. Institute of Neuroscience, Lithuanian University of Health Science, LT-50009 Kaunas, Lithuania

5. Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, 30-387 Krakow, Poland

6. Institute of Problems of Ecology and of Bowels of the Earth, Academy of Science of the Republic Tatarstan, 420087 Kazan, Russian Federation

7. Department of Pathophysiology, Institute of General and Molecular Pathology, University of Tartu, 50411 Tartu, Estonia

8. German Center for Neurodegenerative Diseases (DZNE), 39120 Magdeburg, Germany

Abstract

The glutamate-dependent respiration of isolated BM (brain mitochondria) is regulated by Ca2+cyt (cytosolic Ca2+) (S0.5=225±22 nM) through its effects on aralar. We now also demonstrate that the α-glycerophosphate-dependent respiration is controlled by Ca2+cyt (S0.5=60±10 nM). At higher Ca2+cyt (>600 nM), BM accumulate Ca2+ which enhances the rate of intramitochondrial dehydrogenases. The Ca2+-induced increments of state 3 respiration decrease with substrate in the order glutamate>α-oxoglutarate>isocitrate>α-glycerophosphate>pyruvate. Whereas the oxidation of pyruvate is only slightly influenced by Ca2+cyt, we show that the formation of pyruvate is tightly controlled by Ca2+cyt. Through its common substrate couple NADH/NAD+, the formation of pyruvate by LDH (lactate dehydrogenase) is linked to the MAS (malate–aspartate shuttle) with aralar as a central component. A rise in Ca2+cyt in a reconstituted system consisting of BM, cytosolic enzymes of MAS and LDH causes an up to 5-fold enhancement of OXPHOS (oxidative phosphorylation) rates that is due to an increased substrate supply, acting in a manner similar to a ‘gas pedal’. In contrast, Ca2+mit (intramitochondrial Ca2+) regulates the oxidation rates of substrates which are present within the mitochondrial matrix. We postulate that Ca2+cyt is a key factor in adjusting the mitochondrial energization to the requirements of intact neurons.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference55 articles.

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