Citrin mediated metabolic rewiring in response to altered basal subcellular Ca2+ homeostasis

被引:0
|
作者
Zhanat Koshenov
Furkan E. Oflaz
Martin Hirtl
Benjamin Gottschalk
Rene Rost
Roland Malli
Wolfgang F. Graier
机构
[1] Medical University of Graz,Molecular Biology and Biochemistry, Gottfried Schatz Research Center
[2] BioTechMed Graz,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
In contrast to long-term metabolic reprogramming, metabolic rewiring represents an instant and reversible cellular adaptation to physiological or pathological stress. Ca2+ signals of distinct spatio-temporal patterns control a plethora of signaling processes and can determine basal cellular metabolic setting, however, Ca2+ signals that define metabolic rewiring have not been conclusively identified and characterized. Here, we reveal the existence of a basal Ca2+ flux originating from extracellular space and delivered to mitochondria by Ca2+ leakage from inositol triphosphate receptors in mitochondria-associated membranes. This Ca2+ flux primes mitochondrial metabolism by maintaining glycolysis and keeping mitochondria energized for ATP production. We identified citrin, a well-defined Ca2+-binding component of malate-aspartate shuttle in the mitochondrial intermembrane space, as predominant target of this basal Ca2+ regulation. Our data emphasize that any manipulation of this ubiquitous Ca2+ system has the potency to initiate metabolic rewiring as an instant and reversible cellular adaptation to physiological or pathological stress.
引用
收藏
相关论文
共 50 条
  • [21] Altered Ca2+ homeostasis in the skeletal muscle of DJ-1 null mice
    Shtifman, Alexander
    Zhong, Nan
    Lopez, Jose R.
    Shen, Jie
    Xu, Jin
    NEUROBIOLOGY OF AGING, 2011, 32 (01) : 125 - 132
  • [22] Altered Ca2+ and Na+ Homeostasis in Human Hypertrophic Cardiomyopathy: Implications for Arrhythmogenesis
    Coppini, Raffaele
    Ferrantini, Cecilia
    Mugelli, Alessandro
    Poggesi, Corrado
    Cerbai, Elisabetta
    FRONTIERS IN PHYSIOLOGY, 2018, 9
  • [23] Homeostasis of intracellular Ca2+ in equine chondrocytes:: response to hypotonic shock
    Wilkins, RJ
    Fairfax, TPA
    Davies, ME
    Muzyamba, MC
    Gibson, JS
    EQUINE VETERINARY JOURNAL, 2003, 35 (05) : 439 - 443
  • [24] ALTERED SUBCELLULAR CA2+ REGULATION IN PAPILLARY-MUSCLES FROM CARDIOMYOPATHIC HAMSTER HEARTS
    KELLER, E
    MORAVEC, CS
    BOND, M
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1995, 268 (05): : H1875 - H1883
  • [25] Metabolic factors contributing to altered Ca2+ regulation in skeletal muscle fatigue
    Steele, DS
    Duke, AM
    ACTA PHYSIOLOGICA SCANDINAVICA, 2003, 179 (01): : 39 - 48
  • [26] The effect of boromycin on the Ca2+ homeostasis
    Lakatos, B
    Kaiserová, K
    Simkovic, M
    Orlicky, J
    Knézl, V
    Varecka, L
    MOLECULAR AND CELLULAR BIOCHEMISTRY, 2002, 231 (1-2) : 15 - 22
  • [27] Mitochondrial Ca2+ homeostasis in trypanosomes
    Docampo, Roberto
    Vercesi, Anibal E.
    Huang, Guozhong
    Lander, Noelia
    Chiurillo, Miguel A.
    Bertolini, Mayara
    INTER-ORGANELLAR CA2+ SIGNALING IN HEALTH AND DISEASE - PT A, 2021, 362 : 261 - 289
  • [28] The effect of boromycin on the Ca2+ homeostasis
    B. Lakatoš
    K. Kaiserová
    J. Orlický
    V. Knézl
    L'. Varečka
    Molecular and Cellular Biochemistry, 2002, 231 : 15 - 22
  • [29] THE CONTROL OF NEURONAL CA2+ HOMEOSTASIS
    MILLER, RJ
    PROGRESS IN NEUROBIOLOGY, 1991, 37 (03) : 255 - 285
  • [30] STOP1 regulates CCX1-mediated Ca2+ homeostasis for plant adaptation to Ca2+ deprivation
    Tian, Wen Hao
    Cai, Wen Yan
    Zhu, Chun Quan
    Kong, Ya Li
    Cao, Xiao Chuang
    Zhu, Lian Feng
    Ye, Jia Yuan
    Zhang, Jun Hua
    Zheng, Shao Jian
    JOURNAL OF INTEGRATIVE PLANT BIOLOGY, 2024, 66 (10) : 2126 - 2139