Calmodulin and Cyclic ADP-Ribose Interaction in Ca2+ Signaling Related to Cardiac Sarcoplasmic Reticulum: Superoxide Anion Radical-Triggered Ca2+ Release

被引:40
|
作者
Okabe, Eiichiro [1 ,2 ]
Tsujimoto, Yasuhisa [3 ]
Kobayashi, Yutaka [4 ]
机构
[1] Kanagawa Dent Coll, Dept Pharmacol, Kanagawa 2380003, Japan
[2] Kanagawa Dent Coll, ESR Lab, Kanagawa 2380003, Japan
[3] Nihon Univ, Sch Dent Matsudo, Dept Endodont, Chiba 2710062, Japan
[4] Kanagawa Dent Coll, Dept Physiol, Kanagawa 2380003, Japan
关键词
D O I
10.1089/ars.2000.2.1-47
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
Reactive oxygen species (ROS) are often shown to damage cellular functions. The targets of oxidative on the nature of ROS produced and the site of generation. In contrast, ROS can also regulate signal transduction. In this case, ROS may either induce or enhance events, which lead to forward directions of cellular signaling. The consequences of regulation of signal transduction can be observed in physiological processes such as muscle contraction. Here, we discuss the concentration-dependent effects of superoxide anion radical (center dot O-2(-)) on Ca2+ release from the cardiac sarcoplasmic reticulum (SR). Recent studies suggest that the ADP-ribosyl cyclase pathway, through its production of cyclic adenosine 5'-diphosphoribose (cADPR), may control Ca2+ mobilization in cardiac muscle cells. center dot O-2(-) has dual effects that are concentration dependent. At low concentrations (nearly nanomolar levels), center dot O-2(-) induces Ca2+ release by stimulating synthesis of cADPR, which requires calmodulin for sensitization of ryanodine-sensitive Ca2+-release channels (RyRC). At these low concentrations, center dot O-2(-) is responsible for regulation of cellular signal transduction. At higher concentrations (micromolar levels), center dot O-2(-) produces a loss in the function of calmodulin that is to inhibit RyRC. This results in an increase in Ca2+ release, which is linked to cell injury. The difference in the functions of low and high concentrations of center dot O-2(-) may result in two distinct physiological roles in cardiac muscle Ca2+ signaling. Antiox. Redox Signal. 2, 47-54.
引用
收藏
页码:47 / 54
页数:8
相关论文
共 50 条
  • [31] Dual effects of cyclic ADP-ribose on sarcoplasmic reticulum Ca2+ release and storage in cardiac myocytes isolated from guinea-pig and rat ventricle
    Macgregor, Andrew T.
    Rakovic, Stevan
    Galione, Antony
    Terrar, Derek A.
    CELL CALCIUM, 2007, 41 (06) : 537 - 546
  • [32] Cyclic ADP-ribose increases Ca2+ removal in smooth muscle
    Bradley, KN
    Currie, S
    MacMillan, D
    Muir, TC
    McCarron, JG
    JOURNAL OF CELL SCIENCE, 2003, 116 (21) : 4291 - 4306
  • [33] Spectroscopic determination of sarcoplasmic reticulum Ca2+ uptake and Ca2+ release
    Gilchrist, JSC
    Palahniuk, C
    Bose, R
    MOLECULAR AND CELLULAR BIOCHEMISTRY, 1997, 172 (1-2) : 159 - 170
  • [34] Spectroscopic determination of sarcoplasmic reticulum Ca2+ uptake and Ca2+ release
    James S.C. Gilchrist
    Chris Palahniuk
    Ratna Bose
    Molecular and Cellular Biochemistry, 1997, 172 : 159 - 170
  • [35] Role of cyclic ADP-ribose in Ca2+-induced Ca2+ release and vasoconstriction in small renal arteries
    Teggatz, EG
    Zhang, G
    Zhang, AY
    Yi, F
    Li, NJ
    Zou, AP
    Li, PL
    MICROVASCULAR RESEARCH, 2005, 70 (1-2) : 65 - 75
  • [36] Enhancement of Ca2+-induced Ca2+ release by cyclic ADP-ribose in frog motor nerve terminals
    Hachisuka, J.
    Soga-Sakakibara, S.
    Kubota, M.
    Narita, K.
    Kuba, K.
    NEUROSCIENCE, 2007, 146 (01) : 123 - 134
  • [37] Unbalance Between Sarcoplasmic Reticulum Ca2+ Uptake and Release: A First Step Toward Ca2+ Triggered Arrhythmias and Cardiac Damage
    Federico, Marilen
    Valverde, Carlos A.
    Mattiazzi, Alicia
    Palomeque, Julieta
    FRONTIERS IN PHYSIOLOGY, 2020, 10
  • [38] Ca2+ activation and Ca2+ inactivation of canine reconstituted cardiac sarcoplasmic reticulum Ca2+-release channels
    Schiefer, A
    Meissner, G
    Isenberg, G
    JOURNAL OF PHYSIOLOGY-LONDON, 1995, 489 (02): : 337 - 348
  • [39] Mechanism of calmodulin inhibition of cardiac sarcoplasmic reticulum Ca2+ release channel (ryanodine receptor)
    Xu, L
    Meissner, G
    BIOPHYSICAL JOURNAL, 2004, 86 (02) : 797 - 804
  • [40] Cyclic ADP-ribose induces Ca2+ release from caffeine-insensitive Ca2+ pools in canine salivary gland cells
    Yamaki, H
    Morita, K
    Kitayama, S
    Imai, Y
    Itadani, K
    Akagawa, Y
    Dohi, T
    JOURNAL OF DENTAL RESEARCH, 1998, 77 (10) : 1807 - 1816