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<scene name='10/1096810/9ddm/1'>(9DDM)</scene>
<scene name='10/1096810/9ddm/1'>(9DDM)</scene>
The cryo-EM structure of the TolA–TolQ–TolR complex was obtained after removing the flexible periplasmic portion of TolA which created heterogeneity. This removal was done via a TEV-cleavable construct. The resulting assembly has a 5:2:2 TolQ:TolR:TolA stoichiometry. <scene name='10/1096810/Tolq_pentamer/1'>TolQ </scene> forms a pentameric scaffold of seven α-helices per subunit, including three tilted transmembrane helices shaped by conserved proline-induced kinks. <scene name='10/1096810/Tolr/2'>TolR</scene> forms a dimer within the central hydrophobic pore, with its essential residue<scene name='10/1096810/Asp_in_tolr/1'> Asp23</scene> positioned near a ring of <scene name='10/1096810/Tolq/1'>TolQ Thr138/Thr178</scene>, creating a proton-linked polar gate. The two<scene name='10/1096810/Tola/1'> TolA</scene> transmembrane helices bind peripherally through the conserved <scene name='10/1096810/Shls_motif_in_tol_a/1'>SHLS motif</scene>, with His22 making key contacts with TolQ. The cytoplasmic domain of TolQ helices are intrinsically flexible showing dynamic nature during pmf driven activities
The cryo-EM structure of the TolA–TolQ–TolR complex was obtained after removing the flexible periplasmic portion of TolA which created heterogeneity. This removal was done via a TEV-cleavable construct. The resulting assembly has a 5:2:2 TolQ:TolR:TolA stoichiometry. <scene name='10/1096810/Tolq_pentamer/1'>TolQ </scene> forms a pentameric scaffold of seven α-helices per subunit, including three tilted transmembrane helices shaped by conserved proline-induced kinks. <scene name='10/1096810/Tolr/2'>TolR</scene> forms a dimer within the central hydrophobic pore, with its essential residue<scene name='10/1096810/Asp_in_tolr/1'> Asp23</scene> positioned near a ring of <scene name='10/1096810/Tolq/1'>TolQ Thr138/Thr178</scene>, creating a proton-linked polar gate. The two<scene name='10/1096810/Tola/1'> TolA</scene> transmembrane helices bind peripherally through the conserved <scene name='10/1096810/Shls_motif_in_tol_a/1'>SHLS motif</scene>, with His22 making key contacts with TolQ. The cytoplasmic domain of TolQ helices are intrinsically flexible showing dynamic nature during pmf driven activities
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===Structure of the ''E. coli''TonB–ExbBD Complex ===
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===Structure of the ''E. coli'' TonB–ExbBD Complex ===
<scene name='10/1096810/9ddp/1'>(9DDP)</scene>
<scene name='10/1096810/9ddp/1'>(9DDP)</scene>
The E. coli TonB–ExbBD complex is a 1:5:2 assembly in which five <scene name='10/1096810/Exbb_pentamer/1'>ExbB</scene> subunits form a tilted-helix pentameric scaffold that encloses a parallel but axially offset dimer of<scene name='10/1096810/Exbd_dimer/1'> ExbD</scene> transmembrane helices. The ExbB pentamer generates a hydrophobic central pore into which the ExbD TM dimer inserts, while the N-terminal cytoplasmic domains of ExbD form an asymmetric pair stabilized by conserved ExbB residues. The <scene name='10/1096810/Tonb/1'>TonB</scene> forms a single transmembrane helix with a conserved SHLS motif. The transmembrane helix is tilted ~15° in the membrane and interacts with the ExbB through conserved TonB <scene name='10/1096810/Tonb_ser16/2'>Ser16</scene> and <scene name='10/1096810/Tonb_his20/1'>His20</scene>. The complex also contains tightly bound phosphatidylethanolamine lipids at ExbB subunit interfaces.
The E. coli TonB–ExbBD complex is a 1:5:2 assembly in which five <scene name='10/1096810/Exbb_pentamer/1'>ExbB</scene> subunits form a tilted-helix pentameric scaffold that encloses a parallel but axially offset dimer of<scene name='10/1096810/Exbd_dimer/1'> ExbD</scene> transmembrane helices. The ExbB pentamer generates a hydrophobic central pore into which the ExbD TM dimer inserts, while the N-terminal cytoplasmic domains of ExbD form an asymmetric pair stabilized by conserved ExbB residues. The <scene name='10/1096810/Tonb/1'>TonB</scene> forms a single transmembrane helix with a conserved SHLS motif. The transmembrane helix is tilted ~15° in the membrane and interacts with the ExbB through conserved TonB <scene name='10/1096810/Tonb_ser16/2'>Ser16</scene> and <scene name='10/1096810/Tonb_his20/1'>His20</scene>. The complex also contains tightly bound phosphatidylethanolamine lipids at ExbB subunit interfaces.

Revision as of 20:44, 28 November 2025

Cryo-EM structures of the E. coli Ton and Tol

motor complexes

Paul C. Rosen, Samantha M. Horwitz, Daniel J. Brooks, Erica Kim, Joseph A. Ambarian, Lidia Waidmann, Katherine M. Davis and Gary Yellen Herve Celia, Bridgette M. Beach, Istvan Botos ,Rodolfo Ghirlando, Denis Duché ,RolandLloubes2 & Susan K. Buchanan Nature Communications volume 16, Article number: 5506 (2025) [ https://doi.org/10.1038/s41467-025-61286-z] 

Structure Tour

Cryo-EM structures of the E. coli Ton and Tol motor complexes (PDB entry 9DDM)

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