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Journal Abstract Search


476 related items for PubMed ID: 33382413

  • 1. Mouse Models of Human Proprotein Convertase Insufficiency.
    Shakya M, Lindberg I.
    Endocr Rev; 2021 May 25; 42(3):259-294. PubMed ID: 33382413
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  • 6. Regulation of prohepcidin processing and activity by the subtilisin-like proprotein convertases Furin, PC5, PACE4 and PC7.
    Scamuffa N, Basak A, Lalou C, Wargnier A, Marcinkiewicz J, Siegfried G, Chrétien M, Calvo F, Seidah NG, Khatib AM.
    Gut; 2008 Nov 25; 57(11):1573-82. PubMed ID: 18664504
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  • 8. Osteopontin as a novel substrate for the proprotein convertase 5/6 (PCSK5) in bone.
    Hoac B, Susan-Resiga D, Essalmani R, Marcinkiweicz E, Seidah NG, McKee MD.
    Bone; 2018 Feb 25; 107():45-55. PubMed ID: 29126984
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  • 9. The biology and therapeutic targeting of the proprotein convertases.
    Seidah NG, Prat A.
    Nat Rev Drug Discov; 2012 May 25; 11(5):367-83. PubMed ID: 22679642
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  • 10. Proprotein convertases regulate trafficking and maturation of key proteins within the secretory pathway.
    Cendron L, Rothenberger S, Cassari L, Dettin M, Pasquato A.
    Adv Protein Chem Struct Biol; 2023 May 25; 133():1-54. PubMed ID: 36707198
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  • 11. Proteomic identification of caldesmon as a physiological substrate of proprotein convertase 6 in human uterine decidual cells essential for pregnancy establishment.
    Kilpatrick LM, Stephens AN, Hardman BM, Salamonsen LA, Li Y, Stanton PG, Nie G.
    J Proteome Res; 2009 Nov 25; 8(11):4983-92. PubMed ID: 19764806
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  • 12. How Do Enveloped Viruses Exploit the Secretory Proprotein Convertases to Regulate Infectivity and Spread?
    Seidah NG, Pasquato A, Andréo U.
    Viruses; 2021 Jun 25; 13(7):. PubMed ID: 34202098
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  • 13. Proprotein convertases: lessons from knockouts.
    Scamuffa N, Calvo F, Chrétien M, Seidah NG, Khatib AM.
    FASEB J; 2006 Oct 25; 20(12):1954-63. PubMed ID: 17012247
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  • 14. Subtilisin-like proprotein convertases, PACE4 and PC8, as well as furin, are endogenous proalbumin convertases in HepG2 cells.
    Mori K, Imamaki A, Nagata K, Yonetomi Y, Kiyokage-Yoshimoto R, Martin TJ, Gillespie MT, Nagahama M, Tsuji A, Matsuda Y.
    J Biochem; 1999 Mar 25; 125(3):627-33. PubMed ID: 10050053
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  • 15. Proprotein convertase models based on the crystal structures of furin and kexin: explanation of their specificity.
    Henrich S, Lindberg I, Bode W, Than ME.
    J Mol Biol; 2005 Jan 14; 345(2):211-27. PubMed ID: 15571716
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  • 16. The proprotein convertases furin and PACE4 play a significant role in tumor progression.
    Bassi DE, Mahloogi H, Klein-Szanto AJ.
    Mol Carcinog; 2000 Jun 14; 28(2):63-9. PubMed ID: 10900462
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  • 17. Engineering of alpha1-antitrypsin variants selective for subtilisin-like proprotein convertases PACE4 and PC6: importance of the P2' residue in stable complex formation of the serpin with proprotein convertase.
    Tsuji A, Kanie H, Makise H, Yuasa K, Nagahama M, Matsuda Y.
    Protein Eng Des Sel; 2007 Apr 14; 20(4):163-70. PubMed ID: 17351018
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  • 18. Genetics of the first seven proprotein convertase enzymes in health and disease.
    Turpeinen H, Ortutay Z, Pesu M.
    Curr Genomics; 2013 Nov 14; 14(7):453-67. PubMed ID: 24396277
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  • 19. Neuroinflammation-Induced Interactions between Protease-Activated Receptor 1 and Proprotein Convertases in HIV-Associated Neurocognitive Disorder.
    Kim W, Zekas E, Lodge R, Susan-Resiga D, Marcinkiewicz E, Essalmani R, Mihara K, Ramachandran R, Asahchop E, Gelman B, Cohen ÉA, Power C, Hollenberg MD, Seidah NG.
    Mol Cell Biol; 2015 Nov 14; 35(21):3684-700. PubMed ID: 26283733
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  • 20. A genome-wide expression quantitative trait loci analysis of proprotein convertase subtilisin/kexin enzymes identifies a novel regulatory gene variant for FURIN expression and blood pressure.
    Turpeinen H, Seppälä I, Lyytikäinen LP, Raitoharju E, Hutri-Kähönen N, Levula M, Oksala N, Waldenberger M, Klopp N, Illig T, Mononen N, Laaksonen R, Raitakari O, Kähönen M, Lehtimäki T, Pesu M.
    Hum Genet; 2015 Jun 14; 134(6):627-36. PubMed ID: 25813623
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