Mitochondria control store-operated Ca2+ entry through Na+ and redox signals

被引:83
作者
Nissim, Tsipi Ben-Kasus [1 ]
Zhang, Xuexin [2 ]
Elazar, Assaf [1 ]
Roy, Soumitra [1 ]
Stolwijk, Judith A. [2 ]
Zhou, Yandong [2 ]
Motiani, Rajender K. [2 ,4 ]
Gueguinou, Maxime [2 ]
Hempel, Nadine [3 ]
Hershfinkel, Michal [1 ]
Gill, Donald L. [2 ]
Trebak, Mohamed [2 ]
Sekler, Israel [1 ]
机构
[1] Ben Gurion Univ Negev, Fac Hlth Sci, Dept Physiol & Cell Biol, Beer Sheva, Israel
[2] Penn State Univ, Coll Med, Dept Cellular & Mol Physiol, Hershey, PA USA
[3] Penn State Univ, Coll Med, Dept Pharmacol, Hershey, PA USA
[4] CSIR, Inst Genom & Integrat Biol, Syst Biol Grp, New Delhi, India
关键词
CRAC channel; mitochondrial redox; NCLX; SOCE; sodium signaling; SODIUM-CALCIUM EXCHANGE; HEART-MITOCHONDRIA; ESSENTIAL COMPONENT; OXIDATIVE STRESS; STIM1; ACTIVATION; ORAI1; CRAC; CHANNELS; MUSCLE;
D O I
10.15252/embj.201592481
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mitochondria exert important control over plasma membrane (PM) Orai1 channels mediating store-operated Ca2+ entry (SOCE). Although the sensing of endoplasmic reticulum (ER) Ca2+ stores by STIM proteins and coupling to Orai1 channels is well understood, how mitochondria communicate with Orai1 channels to regulate SOCE activation remains elusive. Here, we reveal that SOCE is accompanied by a rise in cytosolic Na+ that is critical in activating the mitochondrial Na+/Ca2+ exchanger (NCLX) causing enhanced mitochondrial Na+ uptake and Ca2+ efflux. Omission of extracellular Na+ prevents the cytosolic Na+ rise, inhibits NCLX activity, and impairs SOCE and Orai1 channel current. We show further that SOCE activates a mitochondrial redox transient which is dependent on NCLX and is required for preventing Orai1 inactivation through oxidation of a critical cysteine (Cys195) in the third transmembrane helix of Orai1. We show that mitochondrial targeting of catalase is sufficient to rescue redox transients, SOCE, and Orai1 currents in NCLX-deficient cells. Our findings identify a hitherto unknown NCLX-mediated pathway that coordinates Na+ and Ca2+ signals to effect mitochondrial redox control over SOCE.
引用
收藏
页码:797 / 815
页数:19
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