Bax monomers form dimer units in the membrane that further self-assemble into multiple oligomeric species

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作者
Yamunadevi Subburaj
Katia Cosentino
Markus Axmann
Esteban Pedrueza-Villalmanzo
Eduard Hermann
Stephanie Bleicken
Joachim Spatz
Ana J. García-Sáez
机构
[1] Membrane Biophysics,
[2] Max Planck Institute for Intelligent Systems,undefined
[3] Membrane Biophysics,undefined
[4] Interfaculty Institute of Biochemistry,undefined
[5] University of Tuebingen,undefined
[6] New Materials and Biosystems,undefined
[7] Max Planck Institute for Intelligent Systems,undefined
[8] Present address: Institute for Applied Physics—Biophysics,undefined
[9] Vienna University of Technology,undefined
[10] Getreidemarkt 9,undefined
[11] A-1060 Wien,undefined
[12] Austria,undefined
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Nature Communications | / 6卷
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摘要
Bax is a key regulator of apoptosis that mediates the release of cytochrome c to the cytosol via oligomerization in the outer mitochondrial membrane before pore formation. However, the molecular mechanism of Bax assembly and regulation by other Bcl-2 members remains obscure. Here, by analysing the stoichiometry of Bax oligomers at the single-molecule level, we find that Bax binds to the membrane in a monomeric state and then self-assembles in <1 min. Strikingly, active Bax does not exist in a unique oligomeric state, but as several different species based on dimer units. Moreover, we show that cBid activates Bax without affecting its assembly, while Bcl-xL induces the dissociation of Bax oligomers. On the basis of our experimental data and theoretical modelling, we propose a new mechanism for the molecular pathway of Bax assembly to form the apoptotic pore.
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