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1.
J Phys Chem B ; 120(10): 2751-60, 2016 Mar 17.
Article in English | MEDLINE | ID: mdl-26913490

ABSTRACT

Apoptotic BAX protein functions as a critical gateway to mitochondria-mediated apoptosis. A diversity of stimuli has been implicated in initiating BAX activation, but the triggering mechanism remains elusive. Here we study the interaction of BAX with an intrinsically disordered BH3 motif of Bim protein (BimBH3) using ESR techniques. Upon incubation with BAX, BimBH3 binds to BAX at helices 1/6 trigger site to initiate conformational changes of BAX, which in turn promotes the formation of BAX oligomers. The study strategy is twofold: while BAX oligomerization was monitored through spectral changes of spin-labeled BAX, the binding kinetics was studied by observing time-dependent changes of spin-labeled BimBH3. Meanwhile, conformational transition between the unstructured and structured BimBH3 was measured. We show that helical propensity of the BimBH3 is increased upon binding to BAX but is then reduced after being released from the activated BAX; the release is due to the BimBH3-induced conformational change of BAX that is a prerequisite for the oligomer assembling. Intermediate states are identified, offering a key snapshot of the coupled folding and binding process. Our results provide a quantitative mechanistic description of the BAX activation and reveal new insights into the mechanism underlying the interactions between BAX and BH3-mimetic peptide.


Subject(s)
Apoptosis , Bcl-2-Like Protein 11/chemistry , Bcl-2-Like Protein 11/metabolism , Peptides/metabolism , bcl-2-Associated X Protein/metabolism , Kinetics , Models, Molecular , Peptides/chemistry , bcl-2-Associated X Protein/chemistry
2.
Structure ; 23(1): 139-148, 2015 Jan 06.
Article in English | MEDLINE | ID: mdl-25497728

ABSTRACT

BAX protein plays a key role in the mitochondria-mediated apoptosis. However, it remains unclear by what mechanism BAX is triggered to initiate apoptosis. Here, we reveal the mechanism using electron spin resonance (ESR) techniques. An inactive BAX monomer was found to exhibit conformational heterogeneity and exist at equilibrium in two conformations, one of which has never been reported. We show that upon apoptotic stimulus by BH3-only peptides, BAX can be induced to convert into either a ligand-bound monomer or an oligomer through a conformational selection mechanism. The kinetics of reaction is studied by means of time-resolved ESR, allowing a direct in situ observation for the transformation of BAX from the native to the bound states. In vitro mitochondrial assays provide further discrimination between the proposed BAX states, thereby revealing a population-shift allosteric mechanism in the process. BAX's apoptotic function is shown to critically depend on excursions between different structural conformations.


Subject(s)
Apoptosis , Protein Folding , bcl-2-Associated X Protein/chemistry , bcl-2-Associated X Protein/physiology , Animals , Mice , Models, Molecular , Peptide Fragments/chemistry , Protein Binding , Protein Multimerization , Protein Structure, Quaternary , Protein Structure, Secondary , Protein Structure, Tertiary , Proto-Oncogene Proteins/chemistry , bcl-2-Associated X Protein/metabolism
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