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The patatin-like protein PlpD forms structurally dynamic homodimers in the Pseudomonas aeruginosa outer membrane

Author

Listed:
  • Sarah E. Hanson

    (National Institutes of Health)

  • Tyrone Dowdy

    (National Institutes of Health)

  • Mioara Larion

    (National Institutes of Health)

  • Matthew Thomas Doyle

    (National Institutes of Health
    The University of Sydney)

  • Harris D. Bernstein

    (National Institutes of Health)

Abstract

Members of the Omp85 superfamily of outer membrane proteins (OMPs) found in Gram-negative bacteria, mitochondria and chloroplasts are characterized by a distinctive 16-stranded β-barrel transmembrane domain and at least one periplasmic POTRA domain. All previously studied Omp85 proteins promote critical OMP assembly and/or protein translocation reactions. Pseudomonas aeruginosa PlpD is the prototype of an Omp85 protein family that contains an N-terminal patatin-like (PL) domain that is thought to be translocated across the OM by a C-terminal β-barrel domain. Challenging the current dogma, we find that the PlpD PL-domain resides exclusively in the periplasm and, unlike previously studied Omp85 proteins, PlpD forms a homodimer. Remarkably, the PL-domain contains a segment that exhibits unprecedented dynamicity by undergoing transient strand-swapping with the neighboring β-barrel domain. Our results show that the Omp85 superfamily is more structurally diverse than currently believed and suggest that the Omp85 scaffold was utilized during evolution to generate novel functions.

Suggested Citation

  • Sarah E. Hanson & Tyrone Dowdy & Mioara Larion & Matthew Thomas Doyle & Harris D. Bernstein, 2024. "The patatin-like protein PlpD forms structurally dynamic homodimers in the Pseudomonas aeruginosa outer membrane," Nature Communications, Nature, vol. 15(1), pages 1-14, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-48756-6
    DOI: 10.1038/s41467-024-48756-6
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    1. Kathryn Tunyasuvunakool & Jonas Adler & Zachary Wu & Tim Green & Michal Zielinski & Augustin Žídek & Alex Bridgland & Andrew Cowie & Clemens Meyer & Agata Laydon & Sameer Velankar & Gerard J. Kleywegt, 2021. "Highly accurate protein structure prediction for the human proteome," Nature, Nature, vol. 596(7873), pages 590-596, August.
    2. Hao Liu & Anjie Li & Jean-David Rochaix & Zhenfeng Liu, 2023. "Architecture of chloroplast TOC–TIC translocon supercomplex," Nature, Nature, vol. 615(7951), pages 349-357, March.
    3. John Jumper & Richard Evans & Alexander Pritzel & Tim Green & Michael Figurnov & Olaf Ronneberger & Kathryn Tunyasuvunakool & Russ Bates & Augustin Žídek & Anna Potapenko & Alex Bridgland & Clemens Me, 2021. "Highly accurate protein structure prediction with AlphaFold," Nature, Nature, vol. 596(7873), pages 583-589, August.
    4. Yinghong Gu & Huanyu Li & Haohao Dong & Yi Zeng & Zhengyu Zhang & Neil G. Paterson & Phillip J. Stansfeld & Zhongshan Wang & Yizheng Zhang & Wenjian Wang & Changjiang Dong, 2016. "Structural basis of outer membrane protein insertion by the BAM complex," Nature, Nature, vol. 531(7592), pages 64-69, March.
    5. Nicholas Noinaj & Adam J. Kuszak & James C. Gumbart & Petra Lukacik & Hoshing Chang & Nicole C. Easley & Trevor Lithgow & Susan K. Buchanan, 2013. "Structural insight into the biogenesis of β-barrel membrane proteins," Nature, Nature, vol. 501(7467), pages 385-390, September.
    6. Hironori Takeda & Akihisa Tsutsumi & Tomohiro Nishizawa & Caroline Lindau & Jon V. Busto & Lena-Sophie Wenz & Lars Ellenrieder & Kenichiro Imai & Sebastian P. Straub & Waltraut Mossmann & Jian Qiu & Y, 2021. "Mitochondrial sorting and assembly machinery operates by β-barrel switching," Nature, Nature, vol. 590(7844), pages 163-169, February.
    7. H. J. Snijder & I. Ubarretxena-Belandia & M. Blaauw & K. H. Kalk & H. M. Verheij & M. R. Egmond & N. Dekker & B. W. Dijkstra, 1999. "Structural evidence for dimerization-regulated activation of an integral membrane phospholipase," Nature, Nature, vol. 401(6754), pages 717-721, October.
    8. Matthew T. Doyle & Harris D. Bernstein, 2019. "Bacterial outer membrane proteins assemble via asymmetric interactions with the BamA β-barrel," Nature Communications, Nature, vol. 10(1), pages 1-13, December.
    9. Matthew G. Iadanza & Anna J. Higgins & Bob Schiffrin & Antonio N. Calabrese & David J. Brockwell & Alison E. Ashcroft & Sheena E. Radford & Neil A. Ranson, 2016. "Lateral opening in the intact β-barrel assembly machinery captured by cryo-EM," Nature Communications, Nature, vol. 7(1), pages 1-12, November.
    10. Catherine Baud & Jérémy Guérin & Emmanuelle Petit & Elodie Lesne & Elian Dupré & Camille Locht & Françoise Jacob-Dubuisson, 2014. "Translocation path of a substrate protein through its Omp85 transporter," Nature Communications, Nature, vol. 5(1), pages 1-9, December.
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