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Disordered clusters of bak dimers rupture mitochondria during apoptosis

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journal contribution
posted on 2024-06-17, 22:46 authored by RT Uren, M O’Hely, S Iyer, R Bartolo, MX Shi, JM Brouwer, AE Alsop, G Dewson, RM Kluck
During apoptosis, Bak and Bax undergo major conformational change and form symmetric dimers that coalesce to perforate the mitochondrial outer membrane via an unknown mechanism. We have employed cysteine labelling and linkage analysis to the full length of Bak in mitochondria. This comprehensive survey showed that in each Bak dimer the N-termini are fully solvent-exposed and mobile, the core is highly structured, and the C-termini are flexible but restrained by their contact with the membrane. Dimer-dimer interactions were more labile than the BH3:groove interaction within dimers, suggesting there is no extensive protein interface between dimers. In addition, linkage in the mobile Bak N-terminus (V61C) specifically quantified association between dimers, allowing mathematical simulations of dimer arrangement. Together, our data show that Bak dimers form disordered clusters to generate lipidic pores. These findings provide a molecular explanation for the observed structural heterogeneity of the apoptotic pore.

History

Journal

eLife

Volume

6

Article number

ARTN e19944

Pagination

1 - 23

Location

England

Open access

  • Yes

ISSN

2050-084X

eISSN

2050-084X

Language

English

Publication classification

C Journal article, C1 Refereed article in a scholarly journal

Copyright notice

2017, Uren et al

Publisher

ELIFE SCIENCES PUBLICATIONS LTD