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TitleTat-dependent bundling pilus of a halophilic archaeon assembles by a strand donation mechanism and facilitates biofilm formation.
Journal, issue, pagesProc Natl Acad Sci U S A, Vol. 122, Issue 31, Page e2514980122, Year 2025
Publish dateAug 5, 2025
AuthorsRavi R Sonani / Ying Liu / Jialin Xiang / Virginija Cvirkaite-Krupovic / Shishen Du / Xiangdong Chen / Mart Krupovic / Edward H Egelman /
PubMed AbstractDiverse extracellular filaments present on the surface of archaea mediate multiple key processes, such as motility, adhesion, and biofilm formation. Although several archaeal filament types have been ...Diverse extracellular filaments present on the surface of archaea mediate multiple key processes, such as motility, adhesion, and biofilm formation. Although several archaeal filament types have been characterized in considerable detail, many remain understudied, particularly those utilizing noncanonical secretion systems. Here, we describe the Tafi bundling pilus that facilitates biofilm formation in the haloarchaeon sp. J7-2. Unlike previously characterized archaeal pili, Tafi is secreted via the twin-arginine translocation (Tat) pathway, which transports fully folded proteins across the cytoplasmic membrane. Structural analysis reveals that although Tafi pili assemble via a canonical strand-donation mechanism, the pilin subunit (TafE) adopts a distinct structural topology that sets it apart from the previously characterized Sec-dependent pilins that form bundling pili in archaea. Sequence analyses show that TafE homologs are also present in thermophilic archaea from different phyla, but Tat-signal sequences are exclusive to pilins of halophilic archaea. Nevertheless, we find that Tat signal peptides in haloarchaeal TafE-like pili were exchanged back to the Sec signal peptides on multiple independent occasions. These findings expand our understanding of the diversity and evolution of archaeal extracellular filaments and highlight the Tat pathway as a route for pilus assembly in halophilic archaea.
External linksProc Natl Acad Sci U S A / PubMed:40737320 / PubMed Central
MethodsEM (helical sym.)
Resolution4.2 Å
Structure data

EMDB-71067, PDB-9p0a:
Structure of Natrinema sp. J7-2 Tafi pilus
Method: EM (helical sym.) / Resolution: 4.2 Å

Source
  • natrinema sp. j7-2 (archaea)
KeywordsPROTEIN FIBRIL / Extrcellular filament / Bundling pili

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