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TitleSpatiotemporal expression of endospore appendages and cryo-EM insights into Ena1C-mediated S-ENA anchoring in Bacillus paranthracis.
Journal, issue, pagesSci Rep, Vol. 16, Issue 1, Page 7122, Year 2026
Publish dateFeb 3, 2026
AuthorsEphrem Debebe Zegeye / Mike Sleutel / Unni Lise Jonsmoen / Jingqi Chen / Luiza P Morawska / Yohannes Beyene Mekonnen / Oscar P Kuipers / Han Remaut / Marina Aspholm /
PubMed AbstractThe endospores of many group species are decorated with highly resilient fibrous structures known as endospore appendages (ENAs), whose precise biological functions remain poorly understood. ...The endospores of many group species are decorated with highly resilient fibrous structures known as endospore appendages (ENAs), whose precise biological functions remain poorly understood. Structural and genetic studies have identified , , and as essential for forming the longer, thicker, and most abundant staggered (S)-ENA fibers in , whereas encodes the major subunit of the shorter, thinner, ladder-like (L)-ENAs. Here, we investigated the spatiotemporal expression dynamics of S- and L-ENA proteins and the specific role of Ena1C in S-ENA biogenesis. Using time-lapse fluorescence microscopy, we observed strict temporal regulation of gene expression, with no detectable ENA subunit production before spores became phase-bright. ENAs expression peaked during late sporulation phase, with fluorescence localized around the developing spore until its release; notably, S-ENA subunit expression began approximately one hour earlier than that of L-ENA subunits. Combining cryo-EM, negative-stain transmission electron microscopy, and genetic analyses, we show that Ena1C forms a nonameric ring-like structure required for tethering S-ENA to the spore surface. These findings provide new insights into the regulation of ENAs’ expression during fiber biogenesis and highlight their temporal coordination with spore coat and exosporium development.
SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1038/s41598-026-38321-0.
External linksSci Rep / PubMed:41634327 / PubMed Central
MethodsEM (single particle)
Resolution3.0 Å
Structure data

EMDB-55504, PDB-9t3p:
Nonameric Ena1C ring of Bacillus cereus
Method: EM (single particle) / Resolution: 3.0 Å

Source
  • bacillus paranthracis (bacteria)
KeywordsPROTEIN FIBRIL / S-ENA / ENA anchoring / spore coat anchoring / endospore

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