4.8 Article

Matrix alkalinization: a novel mitochondrial signal for sustained pancreatic β-cell activation

期刊

EMBO JOURNAL
卷 28, 期 4, 页码 417-428

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/emboj.2008.302

关键词

ATP synthesis rates; beta-cell; insulin secretion; metabolism; mtAlpHi

资金

  1. Swiss National Foundation [310000-116750/1]
  2. EuroDia [LSHM-CT-2006-518153]
  3. European-Community
  4. NIH/NIDDK [R01 DK0710771]

向作者/读者索取更多资源

Nutrient secretagogues activate mitochondria of the pancreatic beta-cell through the provision of substrate, hyperpolarisation of the inner mitochondrial membrane and mitochondrial calcium rises. We report that mitochondrial matrix pH, a parameter not previously studied in the beta-cell, also exerts an important control function in mitochondrial metabolism. During nutrient stimulation matrix pH alkalinises, monitored by the mitochondrial targeted fluorescent pH-sensitive protein mtAlpHi or (31)P-NMR inorganic phosphate chemical shifts following saturation transfer. Compared with other cell types, the resting mitochondrial pH was surprisingly low, rising from pH 7.25 to 7.7 during nutrient stimulation of rat beta-cells. As cytosolic alkalinisation to the nutrient was of much smaller amplitude, the matrix alkalinisation was accompanied by a pronounced increase of the Delta pH across the inner mitochondrial membrane. Furthermore, matrix alkalinisation closely correlates with the cytosolic ATP net increase, which is also associated with elevated ATP synthesis rates in mitochondria. Preventing Delta pH increases in permeabilised cells abrogated substrate-driven ATP synthesis. We propose that the mitochondrial pH and Delta pH are key determinants of mitochondrial energy metabolism and metabolite transport important for cell activation.

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