4.6 Article

Plasminogen Kringle 5 Induces Endothelial Cell Apoptosis by Triggering a Voltage-dependent Anion Channel 1 (VDAC1) Positive Feedback Loop

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 289, Issue 47, Pages -

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M114.567792

Keywords

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Funding

  1. National Nature Science Foundation of China [30973449, 81172163, 81272515, 81272338, 81200706, 81471033, 81400639]
  2. National Key Sci-Tech Special Project of China [2009ZX09103-642, 2013ZX09102053]
  3. Program for Doctoral Station in University [20120171110053, 20130171110053]
  4. Key Project of Nature Science Foundation of Guangdong Province [10251008901000009]
  5. Key Sci-tech Research Project of Guangdong Province [2011B031200006]
  6. Guandong Natural Science Fund [S2012010009250, S2012040006986]
  7. Key Sci-tech Research Project of Guangzhou Municipality [2011Y1-00017-8, 12A52061519]
  8. Innovative talents project of doctoral candidates of Sun Yat-sen University

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Human plasminogen kringle 5 (K5) is known to display its potent anti-angiogenesis effect through inducing endothelial cell (EC) apoptosis, and the voltage-dependent anion channel 1 (VDAC1) has been identified as a receptor of K5. However, the exact role and underlying mechanisms of VDAC1 in K5-induced EC apoptosis remain elusive. In the current study, we showed that K5 increased the protein level of VDAC1, which initiated the mitochondrial apoptosis pathway of ECs. Our findings also showed that K5 inhibited the ubiquitin-dependent degradation of VDAC1 by promoting the phosphorylation of VDAC1, possibly at Ser-12 and Thr-107. The phosphorylated VDAC1 was attenuated by the AKT agonist, glycogen synthase kinase (GSK) 3 beta inhibitor, and siRNA, suggesting that K5 increased VDAC1 phosphorylation via the AKT-GSK3 beta pathway. Furthermore, K5 promoted cell surface translocation of VDAC1, and binding between K5 and VDAC1 was observed on the plasma membrane. HKI protein blocked the impact of K5 on the AKT-GSK3 beta pathway by competitively inhibiting the interaction of K5 and cell surface VDAC1. Moreover, K5-induced EC apoptosis was suppressed by VDAC1 antibody. These data show for the first time that K5-induced EC apoptosis is mediated by the positive feedback loop of VDAC1-AKT-GSK3 beta-VDAC1, which may provide new perspectives on the mechanisms of K5-induced apoptosis.

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