Fluorescence resonance energy transfer links membrane ferroportin, hephaestin but not ferroportin, amyloid precursor protein complex with iron efflux

被引:38
|
作者
Dlouhy, Adrienne C. [1 ]
Bailey, Danielle K. [1 ]
Steimle, Brittany L. [1 ]
Parker, Haley V. [1 ]
Kosman, Daniel J. [1 ]
机构
[1] SUNY Buffalo, Jacobs Sch Med & Biomed Sci, Dept Biochem, Buffalo, NY 14203 USA
基金
美国国家卫生研究院;
关键词
iron metabolism; metal homeostasis; amyloid precursor protein (APP); membrane transport; fluorescence resonance energy transfer (FRET); ferroportin; hephaestin; iron efflux; FERROXIDASE ACTIVITY; ENDOTHELIAL-CELLS; TRANSPORT; BINDING; APP; MECHANISMS; EXPRESSION; INTERNALIZATION; ACCUMULATION; DIMERIZATION;
D O I
10.1074/jbc.RA118.005142
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
Iron efflux from mammalian cells is supported by the synergistic actions of the ferrous iron efflux transporter, ferroportin (Fpn) and a multicopper ferroxidase, that is, hephaestin (Heph), ceruloplasmin (Cp) or both. The two proteins stabilize Fpn in the plasma membrane and catalyze extracellular Fe3+ release. The membrane stabilization of Fpn is also stimulated by its interaction with a 22-amino acid synthetic peptide based on a short sequence in the extracellular E2 domain of the amyloid precursor protein (APP). However, whether APP family members interact with Fpn in vivo is unclear. Here, using cyan fluorescent protein (CFP)-tagged Fpn in conjunction with yellow fluorescent protein (YFP) fusions of Heph and APP family members APP, APLP1, and APLP2 in HEK293T cells we used fluorescence and surface biotinylation to quantify Fpn membrane occupancy and also measured Fe-59 efflux. We demonstrate that Fpn and Heph co-localize, and FRET analysis indicated that the two proteins form an iron-efflux complex. In contrast, none of the full-length, cellular APP proteins exhibited Fpn co-localization or FRET. Moreover, iron supplementation increased surface expression of the iron-efflux complex, and copper depletion knocked down Heph activity and decreased Fpn membrane localization. Whereas cellular APP species had no effects on Fpn and Heph localization, addition of soluble E2 elements derived from APP and APLP2, but not APLP1, increased Fpn membrane occupancy. We conclude that a ferroportin-targeting sequence, (K/R)EWEE, present in APP and APLP2, but not APLP1, helps modulate Fpn-dependent iron efflux in the presence of an active multicopper ferroxidase.
引用
收藏
页码:4202 / 4214
页数:13
相关论文
共 19 条
  • [1] The Ferroxidase Hephaestin But Not Amyloid Precursor Protein is Required for Ferroportin-Supported Iron Efflux in Primary Hippocampal Neurons
    Changyi Ji
    Brittany L. Steimle
    Danielle K. Bailey
    Daniel J. Kosman
    Cellular and Molecular Neurobiology, 2018, 38 : 941 - 954
  • [2] The Ferroxidase Hephaestin But Not Amyloid Precursor Protein is Required for Ferroportin-Supported Iron Efflux in Primary Hippocampal Neurons
    Ji, Changyi
    Steimle, Brittany L.
    Bailey, Danielle K.
    Kosman, Daniel J.
    CELLULAR AND MOLECULAR NEUROBIOLOGY, 2018, 38 (04) : 941 - 954
  • [3] β-Amyloid Precursor Protein Does Not Possess Ferroxidase Activity but Does Stabilize the Cell Surface Ferrous Iron Exporter Ferroportin
    Wong, Bruce X.
    Tsatsanis, Andrew
    Lim, Linh Q.
    Adlard, Paul A.
    Bush, Ashley I.
    Duce, James A.
    PLOS ONE, 2014, 9 (12):
  • [4] Wild-type ferroportin is not impeded in maturation, cell surface expression or iron export function by mutant ferroportin, and bio-luminescence resonance energy transfer (BRET) experiments indicate monomeric form in cell membranes
    Schimanski, L. M.
    Drakesmith, H.
    Talbot, C.
    Horne, K.
    James, J. R.
    Sweetland, E.
    Bastin, J. M.
    Cowley, D.
    Davis, S. J.
    Townsend, A. R. M.
    AMERICAN JOURNAL OF HEMATOLOGY, 2007, 82 (06) : 529 - 529
  • [5] Fluorescence nanotomography using resonance energy transfer: demonstration with a protein-sugar complex
    Rolinski, OJ
    Birch, DJS
    McCartney, LJ
    Pickup, JC
    PHYSICS IN MEDICINE AND BIOLOGY, 2001, 46 (09): : N221 - N226
  • [6] Detection of DNA bending in a DNA-PAP1 protein complex by fluorescence resonance energy transfer
    Ozaki, H
    Iwase, N
    Sawai, H
    Kodama, T
    Kyogoku, Y
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1997, 231 (03) : 553 - 556
  • [7] Self-interactions and protein-membrane interactions of ICln assessed by fluorescence resonance energy transfer (FRET)
    Ritter, M
    Ravasio, A
    Furst, J
    Jakab, M
    Chwatal, S
    Paulmichl, M
    BIOPHYSICAL JOURNAL, 2004, 86 (01) : 348A - 348A
  • [8] Interaction Between Latent Membrane Protein-1 and Vimentin Based on Quantitative Fluorescence Resonance Energy Transfer
    Wu, Zhiwei
    Zhang, Xianzeng
    Xie, Shusen
    Guangxue Xuebao/Acta Optica Sinica, 2024, 44 (20):
  • [9] Detection of protein–protein interactions by a combination of a novel cytoplasmic membrane targeting system of recombinant proteins and fluorescence resonance energy transfer
    Seiji Shibasaki
    Kouichi Kuroda
    Hoang Duc Nguyen
    Tomoaki Mori
    Wen Zou
    Mitsuyoshi Ueda
    Applied Microbiology and Biotechnology, 2006, 70 : 451 - 457
  • [10] Demonstration by fluorescence resonance energy transfer of two sites of interaction between the low-density lipoprotein receptor-related protein and the amyloid precursor protein: Role of the intracellular adapter protein Fe65
    Kinoshita, A
    Whelan, CM
    Smith, CJ
    Mikhailenko, I
    Rebeck, GW
    Strickland, DK
    Hyman, BT
    JOURNAL OF NEUROSCIENCE, 2001, 21 (21): : 8354 - 8361