Reconstitution of ceruloplasmin by the Cu(I)-glutathione complex - Evidence for a role of Mg2+ and ATP

被引:47
|
作者
Musci, G
DiMarco, S
Bellenchi, GC
Calabrese, L
机构
[1] UNIV ROMA LA SAPIENZA, DEPT BIOCHEM SCI, I-00185 ROME, ITALY
[2] UNIV MESSINA, DEPT ORGAN & BIOL CHEM, I-98166 MESSINA, ITALY
[3] CIBA GEIGY LTD, DIV PHARMACEUT, DEPT CORE DRUG DISCOVERY TECHNOL, CH-4002 BASEL, SWITZERLAND
[4] THIRD UNIV ROME, DEPT BIOL, I-00154 ROME, ITALY
关键词
D O I
10.1074/jbc.271.4.1972
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
The copper-glutathione complex (Cu(I)-GSH) efficiently acted in vitro as the source of Cu(I) in the reconstitution of apoceruloplasmin. Copper was found to reinstate in the various sites in a multistep process, with metal entry into the protein in a first phase, and a second step involving conformational changes of the protein leading to the recovery of the native structural and functional properties. This latter phase was found to be strongly facilitated by Mg2+ or Ca2+ and by ATP. Both Mg2+ and ATP had to be present for optimal reconstitution. These results may shed some light on the mechanisms governing the biosynthesis of ceruloplasmin in vivo. Cu(I)-GSH was the only complex able to reconstitute ceruloplasmin at neutral pH. Glutathione may thus function to shuttle the metal from the membrane copper pump, as the Wilson disease ATPase, and ceruloplasmin in the secretory compartments of the cell. The finding that ceruloplasmin acquires the native conformation after metal entry through a complex pathway triggered by Mg2+ and ATP suggests that they may act as physiological modulators of this process in vivo.
引用
收藏
页码:1972 / 1978
页数:7
相关论文
共 50 条
  • [21] The role of Mg2+ in immune cells
    Brandao, Katherine
    Deason-Towne, Francina
    Perraud, Anne-Laure
    Schmitz, Carsten
    IMMUNOLOGIC RESEARCH, 2013, 55 (1-3) : 261 - 269
  • [22] KINETIC EFFECTS OF CA2+ AND MG2+ ON ATP HYDROLYSIS BY THE PURIFIED ATP DIPHOSPHOHYDROLASE
    LALIBERTE, JF
    STJEAN, P
    BEAUDOIN, AR
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1982, 257 (07) : 3869 - 3874
  • [23] Is ATP Required For Activities Of The Na+/Mg2+ Exchange?
    Tashiro, Michiko
    BIOPHYSICAL JOURNAL, 2009, 96 (03) : 685A - 685A
  • [24] AN X-RAY-ABSORPTION STUDY OF THE RECONSTITUTION PROCESS OF BOVINE CU,ZN SUPEROXIDE-DISMUTASE BY CU(I)-GLUTATHIONE COMPLEX
    ASCONE, I
    LONGO, A
    DEXPERT, H
    CIRIOLO, MR
    ROTILIO, G
    DESIDERI, A
    FEBS LETTERS, 1993, 322 (02) : 165 - 167
  • [25] CONTROLLING EFFECTS OF ATP MG2+ AND CTP IN BIOSYNTHESIS OF LIPIDS
    ERBLAND, JF
    BROSSARD, M
    MARINETT.GV
    BIOCHIMICA ET BIOPHYSICA ACTA, 1967, 137 (01) : 23 - &
  • [26] DEPENDENCY OF CYTOPLASMIC STREAMING ON INTRACELLULAR ATP AND MG2+ CONCENTRATIONS
    SHIMMEN, T
    CELL STRUCTURE AND FUNCTION, 1978, 3 (02) : 113 - 121
  • [27] KINETICS OF ATP-DEPENDENT MG2+ FLUX IN MITOCHONDRIA
    KUN, E
    BIOCHEMISTRY, 1976, 15 (11) : 2328 - 2336
  • [28] ATP-dependent modulation of MgtE in Mg2+ homeostasis
    Atsuhiro Tomita
    Mingfeng Zhang
    Fei Jin
    Wenhui Zhuang
    Hironori Takeda
    Tatsuro Maruyama
    Masanori Osawa
    Ken-ichi Hashimoto
    Hisashi Kawasaki
    Koichi Ito
    Naoshi Dohmae
    Ryuichiro Ishitani
    Ichio Shimada
    Zhiqiang Yan
    Motoyuki Hattori
    Osamu Nureki
    Nature Communications, 8
  • [29] ATP, Mg2+, Nuclear Phase Separation, and Genome Accessibility
    Wright, Roni H. G.
    Le Dily, Francois
    Beato, Miguel
    TRENDS IN BIOCHEMICAL SCIENCES, 2019, 44 (07) : 565 - 574
  • [30] INFLUENCE OF MG2+ AND ATP ON SUPERPRECIPITATION OF INSECT DESENSITIZED ACTOMYOSIN
    BODE, HJ
    MOSER, JG
    COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY B-BIOCHEMISTRY & MOLECULAR BIOLOGY, 1975, 51 (04): : 393 - 398