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The life cycle of an archaeon with multiple membranes

Created on 11 Sep 2026

Authors

Mayer, F., von Kugelgen, A., Stockl, R., Seitz, V., Parham, J., Wang, Z., Reichelt, R., Bharat, T. A. M., Huber, H., Spang, A., Grohmann, D., Baum, B.

Abstract

Many prokaryotes are diderms. They divide using an FtsZ division ring to simultaneously constrict physically coupled inner and outer membranes to form daughter cells with two membranes. Currently, only one archaeon, Ignicoccus hospitalis, is known to have an outer and inner membrane. Here, in exploring Ignicoccus cell division, we show by expansion microscopy that I. hospitalis uses a contractile CdvA-ESCRT-III ring to repeatedly constrict and cut its inner membrane in a way that yields clusters containing multiple cytoplasms within a shared periplasm. The outer bounding membrane then bursts to release the progeny cells, which regain their parental cell architecture via a membrane duplication process. Furthermore, this life cycle appears conserved across Ignicoccus strains, even though the precise timing of events changes. Taken together, these data show that Ignicoccus cells propagate by undergoing dynamic changes in their architecture as they transit between single and multi-cellular states.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 11 Sep 2026.

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