The dynamic lateral gate of the mitochondrial β-barrel biogenesis machinery is blocked by darobactin A
Abstract
Abstract The folding and insertion of β-barrel proteins into the mitochondrial outer membrane is facilitated by the s orting and a ssembly m achinery (SAM) complex. Here we report two 2.8 Å cryo-EM structures of the Thermothelomyces thermophilus SAM complex in the absence of substrate in which the Sam50 lateral gate adopts two different conformations: the first is a closed lateral gate as observed in previously published structures, while the second contains a Sam50 with the first four β-strands rotated outwards by approximately 45°, resulting in an open lateral gate. The observed monomeric open conformation contrasts our previous work where the open conformation was adopted by non-physiological up-down dimers. To understand how these lateral gate dynamics are influenced by substrate, we studied the interaction of the SAM complex with a β-signal peptide mimic, darobactin A. Darobactin A binds to the SAM complex with nanomolar affinity and inhibits the import and assembly of mitochondrial β-barrel proteins in vitro. Lastly, we solved a 3.0 Å cryo-EM structure of the Thermothelomyces thermophilus SAM complex bound to darobactin A, which reveals that darobactin A stabilizes the Sam50 lateral gate similar to the open conformation by binding to strand β1, therefore blocking β-barrel biogenesis.
Article Details
Authors (15)
Kathryn A. Diederichs
Istvan Botos
Scout Hayashi
Gvantsa Gutishvili
Vadim Kotov
Katie Kuo
Akira Iinishi
Gwendolyn Cooper
Benjamin Schwarz
Herve Celia
Thomas C. Marlovits
Kim Lewis
James C. Gumbart
School of Physics
Joseph A. Mindell
Membrane Transport Biophysics Section, Porter Neuroscience Research Center, National Institute of Neurological Disorders and Stroke, NIH
Susan K. Buchanan