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Caspase-mediated cleavage of Beclin-1 inactivates Beclin-1-induced autophagy and enhances apoptosis by promoting the release of proapoptotic factors from mitochondria

Cell Death and Disease · 2010 · Vol. 1(1) · pp. e18–e18
Ellen WirawanLieselotte Vande WalleKristof KersseSigrid CornelisSofie ClaerhoutIsabel VanoverbergheRia RoelandtRiet De RyckeJelle VerspurtenWim DeclercqPatrizia AgostinisTom Vanden BergheSaskia LippensPeter Vandenabeele

Abstract

Autophagy and apoptosis are two important and interconnected stress-response mechanisms. However, the molecular interplay between these two pathways is not fully understood. To study the fate and function of autophagic proteins at the onset of apoptosis, we used a cellular model system in which autophagy precedes apoptosis. IL-3 depletion of Ba/F3 cells caused caspase (casp)-mediated cleavage of Beclin-1 and PI3KC3, two crucial components of the autophagy-inducing complex. We identified two casp cleavage sites in Beclin-1, TDVD(133) and DQLD(149), cleavage at which yields fragments lacking the autophagy-inducing capacity. Noteworthy, the C-terminal fragment, Beclin-1-C, localized predominantly at the mitochondria and sensitized the cells to apoptosis. Moreover, on isolated mitochondria, recombinant Beclin-1-C was able to induce the release of proapoptotic factors. These findings point to a mechanism by which casp-dependent generation of Beclin-1-C creates an amplifying loop enhancing apoptosis upon growth factor withdrawal.

Autophagy in Disease and TherapyPlant responses to water stressHomelessness and Social IssuesAutophagyCell biologyApoptosisCleavage (geology)MitochondrionBiologyCaspaseRecombinant DNAProgrammed cell deathChemistry

MeSH terms

Beclin-1Amino Acid SequenceAnimalsAutophagyCell LineHumansInterleukin-3Membrane ProteinsMitochondriaRecombinant ProteinsApoptosisPhosphatidylinositol 3-KinasesCaspasesApoptosis Regulatory ProteinsMice

Funding

  • Universiteit Gent
  • Vlaams Instituut voor Biotechnologie
  • Vlaamse regering
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