A self-assembling surface layer flattens the cytokinetic furrow to aid cell division in an archaeon

S Sherman Foo (Division of Cell Biology, Medical Research Council Laboratory of Molecular Biology) I Ido Caspy (Structural Studies Division, Medical Research Council Laboratory of Molecular Biology) A Alice Cezanne T Tanmay A. M. Bharat (Medical Research Council Laboratory of Molecular Biology) B Buzz Baum (Division of Cell Biology, Medical Research Council Laboratory of Molecular Biology)

Abstract

The surface layer or “S-layer” is a two-dimensional lattice of proteins that coats a wide range of archaea and bacteria in place of a cell wall or capsular polysaccharides. S-layers are thought to play an important role in chemically and physically insulating cells from the external environment. Here, we show that the integrity of the S-layer in Sulfolobus acidocaldarius is maintained as cells grow via a process of self-assembly as SlaA monomers fill gaps in the lattice. Although this lattice which is physically tethered to the membrane might be expected to hinder cell division, we show that the S-layer flattens the membrane at cytokinesis to accelerate ESCRT-III-dependent cell division—and is important for robust, successful cell divisions under conditions of mechanical stress. Taken together, these results define the rules governing S-layer self-assembly and show how a flexible lattice coat that is coupled to the underlying membrane can both provide a cell with mechanical support and help to drive rapid and functionally important changes in cell shape.

Article Details

Volume / Issue Vol. 122, Issue 25
Published June 24, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (5)

S

Sherman Foo

Division of Cell Biology, Medical Research Council Laboratory of Molecular Biology

I

Ido Caspy

Structural Studies Division, Medical Research Council Laboratory of Molecular Biology

A

Alice Cezanne

T

Tanmay A. M. Bharat

Medical Research Council Laboratory of Molecular Biology

B

Buzz Baum

Division of Cell Biology, Medical Research Council Laboratory of Molecular Biology