AI Article Synopsis

  • Both voltage-dependent anion channel (VDAC) and glucose-regulated protein 78 (GRP78) serve as receptors for plasminogen kringle 5 on endothelial cells, with kringle 5 binding to the N-terminal domain of GRP78.
  • Both plasminogen fragments (kringle 5 and microplasminogen) trigger calcium signaling cascades through different pathways: kringle 5 activates VDAC, while microplasminogen engages GRP78.
  • The study shows that kringle 5 inhibits the proliferation of 1-LN prostate tumor cells and enhances caspase-7 activity, which requires its attachment to VDAC and is prevented by human hexokinase I.

Article Abstract

Both the voltage-dependent anion channel and the glucose-regulated protein 78 have been identified as plasminogen kringle 5 receptors on endothelial cells. In this study, we demonstrate that kringle 5 binds to a region localized in the N-terminal domain of the glucose-regulated protein 78, whereas microplasminogen does so through the C-terminal domain of the glucose-regulated protein 78. Both plasminogen fragments induce Ca(2+) signaling cascades; however, kringle 5 acts through voltage-dependent anion channel and microplasminogen does so via the glucose-regulated protein 78. Because trafficking of voltage-dependent anion channel to the cell surface is associated with heat shock proteins, we investigated a possible association between voltage-dependent anion channel and glucose-regulated protein 78 on the surface of 1-LN human prostate tumor cells. We demonstrate that these proteins co-localize, and changes in the expression of the glucoseregulated protein 78 affect the expression of voltage-dependent anion channel. To differentiate the functions of these receptor proteins, either when acting singly or as a complex, we employed human hexokinase I as a specific ligand for voltage-dependent anion channel, in addition to kringle 5. We show that kringle 5 inhibits 1-LN cell proliferation and promotes caspase-7 activity by a mechanism that requires binding to cell surface voltage-dependent anion channel and is inhibited by human hexokinase I.

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Source
http://dx.doi.org/10.1074/jbc.M703342200DOI Listing

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