Amyloid precursor protein intracellular domain modulates cellular calcium homeostasis and ATP content
2007
Hamid, Runa | Kilger, Ellen | Willem, Michael | Vassallo, Neville | Kostka, Markus | Bornhövd, Carsten | Reichert, Andreas S. | Kretzschmar, H. A. (Hans A) | Haass, Christian | Herms, Jochen
Consecutive cleavages of amyloid precursor protein (APP) generate APP intracellular domain (AICD). Its cellular function is still unclear. In this study, we investigated the functional role of AICD in cellular Ca²⁺ homeostasis. We could confirm previous observations that endoplasmic reticulum Ca²⁺ stores contain less calcium in cells with reduced APP γ-secretase cleavage products, increased AICD degradation, reduced AICD expression or in cells lacking APP. In addition, we observed an enhanced resting cytosolic calcium concentration under conditions where AICD is decreased or missing. In view of the reciprocal effects of Ca²⁺ on mitochondria and of mitochondria on Ca²⁺ homeostasis, we analysed further the cellular ATP content and the mitochondrial membrane potential. We observed a reduced ATP content and a mitochondrial hyperpolarisation in cells with reduced amounts of AICD. Blockade of mitochondrial oxidative phosphorylation chain in control cells lead to similar alterations as in cells lacking AICD. On the other hand, substrates of Complex II rescued the alteration in Ca²⁺ homeostasis in cells lacking AICD. Based on these observations, our findings indicate that alterations observed in endoplasmic reticulum Ca²⁺ storage in cells with reduced amounts of AICD are reciprocally linked to mitochondrial bioenergetic function.
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