4.6 Article

Calcium Signaling in Brain Mitochondria INTERPLAY OF MALATE ASPARTATE NADH SHUTTLE AND CALCIUM UNIPORTER/MITOCHONDRIAL DEHYDROGENASE PATHWAYS

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 284, 期 11, 页码 7091-7099

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M808066200

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资金

  1. Ministerio de Educacion y Ciencia [BFU2005-C02-01, BFU2008-04084/BMC]
  2. Comunidad de Madrid [S-GEN-0269-2006]
  3. European Union [LSHM-CT-2006-518153]

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Ca2+ signaling in mitochondria has been mainly attributed to Ca2+ entry to the matrix through the Ca2+ uniporter and activation of mitochondrial matrix dehydrogenases. However, mitochondria can also sense increases in cytosolic Ca2+ through a mechanism that involves the aspartate-glutamate carriers, extramitochondrial Ca2+ activation of the NADH malate-aspartate shuttle (MAS). Both pathways are linked through the shared substrate alpha-ketoglutarate (alpha KG). Here we have studied the interplay between the two pathways under conditions of Ca2+ activation. We show that alpha KG becomes limiting when Ca2+ enters in brain or heart mitochondria, but not liver mitochondria, resulting in a drop in alpha KG efflux through the oxoglutarate carrier and in a drop in MAS activity. Inhibition of alpha KG efflux and MAS activity by matrix Ca2+ in brain mitochondria was fully reversible upon Ca2+ efflux. Because of their differences in cytosolic calcium concentration requirements, the MAS and Ca2+ uniporter-mitochondrial dehydrogenase pathways are probably sequentially activated during a Ca2+ transient, and the inhibition of MAS at the center of the transient may provide an explanation for part of the increase in lactate observed in the stimulated brain in vivo.

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