The P-type ATPase transporter ATP7A promotes angiogenesis by limiting autophagic degradation of VEGFR2

被引:0
|
作者
Dipankar Ash
Varadarajan Sudhahar
Seock-Won Youn
Mustafa Nazir Okur
Archita Das
John P. O’Bryan
Maggie McMenamin
Yali Hou
Jack H. Kaplan
Tohru Fukai
Masuko Ushio-Fukai
机构
[1] Medical College of Georgia at Augusta University,Vascular Biology Center
[2] Charlie Norwood Veterans Affairs Medical Center,Department of Physiology and Biophysics
[3] University of Illinois College of Medicine,Laboratory of Molecular Gerontology, National Institute on Aging
[4] National Institutes of Health,Department of Cell and Molecular Pharmacology and Experimental Therapeutics, Hollings Cancer Center
[5] Medical University of South Carolina,Department of Biochemistry and Molecular Genetics
[6] Ralph H. Johnson VA Medical Center,Departments of Pharmacology and Toxicology
[7] University of Illinois College of Medicine,Department of Medicine (Cardiology)
[8] Medical College of Georgia at Augusta University,undefined
[9] Medical College of Georgia at Augusta University,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
VEGFR2 (KDR/Flk1) signaling in endothelial cells (ECs) plays a central role in angiogenesis. The P-type ATPase transporter ATP7A regulates copper homeostasis, and its role in VEGFR2 signaling and angiogenesis is entirely unknown. Here, we describe the unexpected crosstalk between the Copper transporter ATP7A, autophagy, and VEGFR2 degradation. The functional significance of this Copper transporter was demonstrated by the finding that inducible EC-specific ATP7A deficient mice or ATP7A-dysfunctional ATP7Amut mice showed impaired post-ischemic neovascularization. In ECs, loss of ATP7A inhibited VEGF-induced VEGFR2 signaling and angiogenic responses, in part by promoting ligand-induced VEGFR2 protein degradation. Mechanistically, VEGF stimulated ATP7A translocation from the trans-Golgi network to the plasma membrane where it bound to VEGFR2, which prevented autophagy-mediated lysosomal VEGFR2 degradation by inhibiting autophagic cargo/adapter p62/SQSTM1 binding to ubiquitinated VEGFR2. Enhanced autophagy flux due to ATP7A dysfunction in vivo was confirmed by autophagy reporter CAG-ATP7Amut -RFP-EGFP-LC3 transgenic mice. In summary, our study uncovers a novel function of ATP7A to limit autophagy-mediated degradation of VEGFR2, thereby promoting VEGFR2 signaling and angiogenesis, which restores perfusion recovery and neovascularization. Thus, endothelial ATP7A is identified as a potential therapeutic target for treatment of ischemic cardiovascular diseases.
引用
收藏
相关论文
共 50 条
  • [1] The P-type ATPase transporter ATP7A promotes angiogenesis by limiting autophagic degradation of VEGFR2
    Ash, Dipankar
    Sudhahar, Varadarajan
    Youn, Seock-Won
    Okur, Mustafa Nazir
    Das, Archita
    O'Bryan, John P.
    McMenamin, Maggie
    Hou, Yali
    Kaplan, Jack H.
    Fukai, Tohru
    Ushio-Fukai, Masuko
    NATURE COMMUNICATIONS, 2021, 12 (01)
  • [2] Cu Transporter ATP7A Promotes Angiogenesis by Limiting Autophagic Degradation of VEGFR2
    Ash, Dipankar
    Youn, Seock-Won
    Varadarajan, Sudhahar
    Okur, Mustafa N.
    O'Brien, John P.
    Surenkhuu, Bayasgalan
    Fukai, Tohru
    Ushio-Fukai, Masuko
    CIRCULATION, 2017, 136
  • [3] Mutational analysis of the Menkes copper P-type ATPase (ATP7A)
    Voskoboinik, I
    Mar, J
    Camakaris, J
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2003, 301 (02) : 488 - 494
  • [4] Endothelial Cu Transporter Atp7a Promotes Vegfr2 Signaling and Post-ischemic Neovascularization via Regulating Autophagy
    Ash, Dipankar
    Varadarajan, Sudhahar
    Youn, Seock-Won
    Okur, Mustafa N.
    O'Brien, John P.
    McMenamin, Malgorzata
    Fang, Xuexiu
    Hou, Yali
    Kaplan, Jack
    Fukai, Tohru
    Ushio-fukai, Masuko
    CIRCULATION, 2020, 142
  • [5] Structure-function and regulation of the Menkes copper-translocating P-type ATPase (MNK; ATP7A)
    Camakaris, J
    Voskoboinik, I
    Greenough, M
    Lane, C
    JOURNAL OF INORGANIC BIOCHEMISTRY, 2003, 96 (01) : 55 - 55
  • [6] Structural models of the human copper P-type ATPases ATP7A and ATP7B
    Gourdon, Pontus
    Sitsel, Oleg
    Karlsen, Jesper Lykkegaard
    Moller, Lisbeth Birk
    Nissen, Poul
    BIOLOGICAL CHEMISTRY, 2012, 393 (04) : 205 - 216
  • [7] Role of the P-Type ATPases, ATP7A and ATP7B in brain copper homeostasis
    Telianidis, Jonathon
    Hung, Ya Hui
    Materia, Stephanie
    La Fontaine, Sharon
    FRONTIERS IN AGING NEUROSCIENCE, 2013, 5
  • [8] Purification and membrane reconstitution of catalytically active Menkes copper-transporting P-type ATPase (MNK; ATP7A)
    Hung, Ya Hui
    Layton, Meredith J.
    Voskoboinik, Ilia
    Mercer, Julian F. B.
    Camakaris, James
    BIOCHEMICAL JOURNAL, 2007, 401 (02) : 569 - 579
  • [9] Copper Transporter ATP7A (Copper-Transporting P-Type ATPase/Menkes ATPase) Limits Vascular Inflammation and Aortic Aneurysm Development Role of MicroRNA-125b
    Sudhahar, Varadarajan
    Das, Archita
    Horimatsu, Tetsuo
    Ash, Dipankar
    Leanhart, Silvia
    Antipova, Olga
    Vogt, Stefan
    Singla, Bhupesh
    Csanyi, Gabor
    White, Joseph
    Kaplan, Jack H.
    Fulton, David
    Weintraub, Neal L.
    Kim, Ha Won
    Ushio-Fukai, Masuko
    Fukai, Tohru
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2019, 39 (11) : 2320 - 2337
  • [10] Menkes Copper-Translocating P-type ATPase (ATP7A): Biochemical and Cell Biology Properties, and Role in Menkes Disease
    Ilia Voskoboinik
    James Camakaris
    Journal of Bioenergetics and Biomembranes, 2002, 34 : 363 - 371