Peroxiredoxin 6 homodimerization and heterodimerization with glutathione S-transferase pi are required for its peroxidase but not phospholipase A2 activity

被引:40
|
作者
Zhou, Suiping [1 ]
Sorokina, Elena M. [1 ]
Harper, Sandra [2 ]
Li, Haitao [1 ]
Ralat, Luis [1 ]
Dodia, Chandra [1 ]
Speicher, David W. [2 ]
Feinstein, Sheldon I. [1 ]
Fisher, Aron B. [1 ]
机构
[1] Univ Penn, Perelman Sch Med, Inst Environm Med, Philadelphia, PA 19104 USA
[2] Wistar Inst Anat & Biol, Ctr Syst & Computat Biol, 3601 Spruce St, Philadelphia, PA 19104 USA
基金
美国国家卫生研究院;
关键词
Duolink assay; Sulfenylamide; Phospholipid hydroperoxide glutathione; peroxidase activity; Sedimentation equilibrium analysis; Hydrophobic interactions; Mass spectroscopy; Leucine mutation; 1-CYS PEROXIREDOXIN; ANTIOXIDANT ENZYME; MESSENGER-RNA; CROSS-LINKING; PROTEIN; COMPLEX; PROTECTION; REDUCTION; STRESS; SITES;
D O I
10.1016/j.freeradbiomed.2016.02.012
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
Peroxiredoxin 6 (Prdx6) is a unique 1-Cys member of the peroxiredoxin family with both GSH peroxidase and phospholipase A(2) (PLA(2)) activities. It is highly expressed in the lung where it plays an important role in antioxidant defense and lung surfactant metabolism. Glutathionylation of Prdx6 mediated by its heterodimerization with GSH S-transferase pi (pi GST) is required for its peroxidatic catalytic cycle. Recombinant human Prdx6 crystallizes as a homodimer and sedimentation equilibrium analysis confirmed that this protein exists as a high affinity dimer in solution. Based on measurement of molecular mass, dimeric Prdx6 that was oxidized to the sulfenic acid formed a sulfenylamide during storage. After examination of the dimer interface in the crystal structure, we postulated that the hydrophobic amino acids L145 and L148 play an important role in homodimerization of Prdx6 as well as in its heterodimerization with pi GST. Oxidation of Prdx6 also was required for its heterodimerization. Sedimentation equilibrium analysis and the Duolink proximity ligation assay following mutation of the L145 and L148 residues of Prdx6 to Glu indicated greatly decreased dimerization propensity reflecting the loss of hydrophobic interactions between the protein monomers. Peroxidase activity was markedly reduced by mutation at either of the Leu sites and was essentially abolished by the double mutation, while PLA(2) activity was unaffected. Decreased peroxidase activity following mutation of the interfacial leucines presumably is mediated via impaired heterodimerization of Prdx6 with pi GST that is required for reduction and reactivation of the oxidized enzyme. (C) 2016 Elsevier Inc. All rights reserved.
引用
下载
收藏
页码:145 / 156
页数:12
相关论文
共 50 条
  • [21] Both Peroxidase and Phospholipase A2 Activities of Peroxiredoxin 6 Play a Role in its Protection against Oxidative Stress
    Lien, Yu-Chin
    Gao, Ling
    Gonder, Daniel S.
    Feinstein, Sheldon I.
    Fisher, Aron B.
    FASEB JOURNAL, 2009, 23
  • [22] Interaction of surfactant protein a with peroxiredoxin 6 regulates phospholipase A2 activity
    Wu, YZ
    Manevich, Y
    Baldwin, JL
    Dodia, C
    Yu, K
    Feinstein, SI
    Fisher, AB
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (11) : 7515 - 7525
  • [23] Oxidation of Peroxiredoxin 6 in the Presence of GSH Increases its Phospholipase A2 Activity at Cytoplasmic pH
    Zhou, Suiping
    Dodia, Chandra
    Feinstein, Sheldon I.
    Harper, Sandra
    Forman, Henry J.
    Speicher, David W.
    Fisher, Aron B.
    ANTIOXIDANTS, 2019, 8 (01)
  • [24] Induction of hepatic glutathione S-transferase (Pi) activity in rhesus monkey by cadmium
    Sidhu, M
    Nath, R
    JOURNAL OF TRACE ELEMENTS IN EXPERIMENTAL MEDICINE, 1996, 9 (01): : 41 - 46
  • [25] Activity and expression of glutathione S-transferase pi in patients with amyotrophic lateral sclerosis
    Kuzma, M
    Jamrozik, Z
    Baranczyk-Kuzma, A
    CLINICA CHIMICA ACTA, 2006, 364 (1-2) : 217 - 221
  • [26] Transcriptional regulation of the glutathione S-transferase A2 gene by oxidative stress
    Nguyen, T
    Favreau, L
    Liu, SX
    Pickett, CB
    NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 1998, 358 (01) : R388 - R388
  • [27] Isolation and characterization of a microsomal glutathione S-transferase with glutathione-peroxidase activity from human liver
    Prabbu, KS
    Reddy, PV
    Jones, EC
    Thompson, JT
    Liken, AD
    Arner, RJ
    Reddy, CC
    FASEB JOURNAL, 2001, 15 (04): : A536 - A536
  • [28] NONSELENIUM GLUTATHIONE-PEROXIDASE WITHOUT GLUTATHIONE S-TRANSFERASE ACTIVITY FROM BOVINE CILIARY BODY
    SHICHI, H
    DEMAR, JC
    EXPERIMENTAL EYE RESEARCH, 1990, 50 (05) : 513 - 520
  • [29] Anatoxin-a elicits an increase in peroxidase and glutathione S-transferase activity in aquatic plants
    Mitrovic, S. M.
    Stephan, Pflugmacher S.
    James, K. J.
    Furey, A.
    CYANOBACTERIAL HARMFUL ALGAL BLOOMS: STATE OF THE SCIENCE AND RESEARCH NEEDS, 2008, 619 : 567 - 568
  • [30] Anatoxin-a elicits an increase in peroxidase and glutathione S-transferase activity in aquatic plants
    Mitrovic, SM
    Pflugmacher, S
    James, KJ
    Furey, A
    AQUATIC TOXICOLOGY, 2004, 68 (02) : 185 - 192