Role of GSH and Iron-Sulfur Glutaredoxins in Iron Metabolism-Review

被引:28
|
作者
Daniel, Trnka [1 ]
Faruq, Hossain Md [1 ]
Magdalena, Jordt Laura [1 ]
Manuela, Gellert [1 ]
Horst, Lillig Christopher [2 ]
机构
[1] Ernst Moritz Arndt Univ Greifswald, Univ Med, Inst Med Biochem & Mol Biol, D-17475 Greifswald, Germany
[2] Univ Med Greifswald, Christopher Horst Lillig Inst Med Biochem & Mol B, Ferdinand Sauerbruch Str, D-17475 Greifswald, Germany
来源
MOLECULES | 2020年 / 25卷 / 17期
关键词
glutathione; glutaredoxin; iron-sulfur cluster; iron; LINKED SIDEROBLASTIC ANEMIA; MONOTHIOL GLUTAREDOXINS; PROTEIN BIOGENESIS; SCAFFOLD PROTEINS; REDOX REGULATION; CLUSTER TRANSFER; 2FE-2S CLUSTER; MOLECULAR-MECHANISMS; CARDIAC-HYPERTROPHY; EXPRESSION PATTERN;
D O I
10.3390/molecules25173860
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
Glutathione (GSH) was initially identified and characterized for its redox properties and later for its contributions to detoxification reactions. Over the past decade, however, the essential contributions of glutathione to cellular iron metabolism have come more and more into focus. GSH is indispensable in mitochondrial iron-sulfur (FeS) cluster biosynthesis, primarily by co-ligating FeS clusters as a cofactor of the CGFS-type (class II) glutaredoxins (Grxs). GSH is required for the export of the yet to be defined FeS precursor from the mitochondria to the cytosol. In the cytosol, it is an essential cofactor, again of the multi-domain CGFS-type Grxs, master players in cellular iron and FeS trafficking. In this review, we summarize the recent advances and progress in this field. The most urgent open questions are discussed, such as the role of GSH in the export of FeS precursors from mitochondria, the physiological roles of the CGFS-type Grx interactions with BolA-like proteins and the cluster transfer between Grxs and recipient proteins.
引用
收藏
页数:26
相关论文
共 50 条
  • [21] Assembly and Transfer of Iron-Sulfur Clusters in the Plastid
    Lu, Yan
    FRONTIERS IN PLANT SCIENCE, 2018, 9
  • [22] Mammalian target of rapamycin coordinates iron metabolism with iron-sulfur cluster assembly enzyme and tristetraprolin
    Guan, Peng
    Wang, Na
    NUTRITION, 2014, 30 (09) : 968 - 974
  • [23] Mitochondria export iron-sulfur and sulfur intermediates to the cytoplasm for iron-sulfur cluster assembly and tRNA thiolation in yeast
    Pandey, Ashutosh K.
    Pain, Jayashree
    Dancis, Andrew
    Pain, Debkumar
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2019, 294 (24) : 9489 - 9502
  • [24] Bacterial Approaches for Assembling Iron-Sulfur Proteins
    Esquilin-Lebron, Karla
    Dubrac, Sarah
    Barras, Frederic
    Boyd, Jeffrey M.
    MBIO, 2021, 12 (06):
  • [25] The Role of GSH in Intracellular Iron Trafficking
    Hider, Robert
    Aviles, Mayra Vera
    Chen, Yu-Lin
    Latunde-Dada, Gladys Oluyemisi
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (03) : 1 - 13
  • [26] The role of iron-sulfur clusters in in vivo hydroxyl radical production
    Liochev, SI
    FREE RADICAL RESEARCH, 1996, 25 (05) : 369 - 384
  • [27] The essential role of mitochondria in the biogenesis of cellular iron-sulfur proteins
    Lill, R
    Diekert, K
    Kaut, A
    Lange, H
    Pelzer, W
    Prohl, C
    Kispal, G
    BIOLOGICAL CHEMISTRY, 1999, 380 (10) : 1157 - 1166
  • [28] Iron-sulfur clusters in mitochondrial metabolism: Multifaceted roles of a simple cofactor
    Stiban, Johnny
    So, Minyoung
    Kaguni, Laurie S.
    BIOCHEMISTRY-MOSCOW, 2016, 81 (10) : 1066 - 1080
  • [29] Iron-sulfur cluster exchange reactions mediated by the human Nfu protein
    Wachnowsky, Christine
    Fidai, Insiya
    Cowan, J. A.
    JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 2016, 21 (07): : 825 - 836
  • [30] Characterization of the human monothiol glutaredoxin 3 (PICOT) as iron-sulfur protein
    Haunhorst, Petra
    Berndt, Carsten
    Eitner, Susanne
    Godoy, Jose R.
    Lillig, Christopher Horst
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2010, 394 (02) : 372 - 376