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prpC-related signal transduction is influenced by copper, membrane integrity and the alpha cleavage site

         

摘要

The copper-binding, membrane-anchored, cellular prion protein (PrPC) has two constitutive cleavage sites pro-ducing distinct N- and C-terminal fragments (N1/C1 and N2/C2). Using RKI3 cells expressing either human PrPC, mouse PrPC or mouse PrPC carrying the 3F4 epitope, this study explored the influence of the PrPC primary sequence on endoproteolytic cleavage and one putative PrPC function, MAP kinase signal transduction, in response to exoge-nous copper with or without a perturbed membrane environment. PrPC primary sequence, especially that around the N1/C1 cleavage site, appeared to influence basal levels of proteolysis at this location and extracellular signal-regulat-ed kinase 1/2 (ERK1/2) phosphorylation, with increased processing demonstrating an inverse relationship with basal ERK1/2 activation. Human PrPC showed increased N1/C1 cleavage in response to copper alone, accompanied by spe-cific p38 and JNK/SAPK phosphorylation. Combined exposure to copper plus the cholesterol-sequestering antibiotic filipin resulted in a mouse PrPC-specific substantial increase in signal protein phosphorylation, accompanied by an increase in N1/C1 cleavage. Mouse PrPC harboring the human N1/C1 cleavage site assumed more human-like profiles basally and in response to copper and altered membrane environments. Our results demonstrate that the PrPC pri-mary sequence around the N1/C1 cleavage site influences endoproteolytic processing at this location, which appears linked to MAP kinase signal transduction both basally and in response to copper. Further, the primary sequence ap-pears to confer a mutual dependence of N1/C1 cleavage and membrane integrity on the fidelity of prpC-related signal transduction in response to exogenous stimuli.

著录项

  • 来源
    《细胞研究(英文版)》 |2009年第9期|1062-1078|共17页
  • 作者单位

    Department of Pathology;

    Mental Health Research Institute;

    Department of Pathology;

    Mental Health Research Institute;

    Department of Pathology;

    Mental Health Research Institute;

    Bio21 Molecular Science and Biotechnology Institute, 30 Flemington Road;

    Mental Health Research Institute;

    Centre for Neuroscience, The University of Melbourne, Parkville, Melbourne, 3010, Australia;

    Mental Health Research Institute;

    The Department of Biochemistry and Molecular Biology;

    Bio21 Molecular Science and Biotechnology Institute, 30 Flemington Road;

    Department of Pathology;

    Mental Health Research Institute;

    Department of Pathology;

    Mental Health Research Institute;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 细胞生物学;
  • 关键词

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