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MICU1 controls cristae junction and spatially anchors mitochondrial Ca2+ uniporter complex

Nat Commun.. 2019; 
Gottschalk B1, Klec C1, Leitinger G2, Bernhart E1, Rost R1, Bischof H1, Madreiter-Sokolowski CT1, Radulović S1,2, Eroglu E1, Sattler W1,3, Waldeck-Weiermair M1, Malli R1,3, Graier WF4,5.
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摘要

Recently identified core proteins (MICU1, MCU, EMRE) forming the mitochondrial Ca2+ uniporter complex propelled investigations into its physiological workings. Here, we apply structured illumination microscopy to visualize and localize these proteins in living cells. Our data show that MICU1 localizes at the inner boundary membrane (IBM) due to electrostatic interaction of its polybasic domain. Moreover, this exclusive localization of MICU1 is important for the stability of cristae junctions (CJ), cytochrome c release and mitochondrial membrane potential. In contrast to MICU1, MCU and EMRE are homogeneously distributed at the inner mitochondrial membrane under resting conditions. However, upon Ca2+ elevation MC... More

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