Stress-induced formation of cell wall-deficient cells in filamentous actinomysetes

The cell wall is a shape-defining structure that envelopes almost all bacteria and protects them from environmental stresses. Bacteria can be forced to grow without a cell wall under certain conditions that interfere with cell wall synthesis, but the relevance of these wall-less cells (known as L-fo...

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Veröffentlicht in:Nature Communications 2018-12, Vol.9, p.5164
Hauptverfasser: Ramijan Carmiol, A.K., Ultee, E., Willemse, J.J., Zhang, Z., Wondergem, A.J., Meij, A. van der, Heinrich, D.M., Briegel, A., Wezel, G.P. van, Claessen, D.
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Sprache:eng
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Zusammenfassung:The cell wall is a shape-defining structure that envelopes almost all bacteria and protects them from environmental stresses. Bacteria can be forced to grow without a cell wall under certain conditions that interfere with cell wall synthesis, but the relevance of these wall-less cells (known as L-forms) is unclear. Here, we show that several species of filamentous actinomycetes have a natural ability to generate wall-deficient cells in response to hyperosmotic stress, which we call S-cells. This wall-deficient state is transient, as S-cells are able to switch to the normal mycelial mode of growth. However, prolonged exposure of S-cells to hyperosmotic stress yields variants that are able to proliferate indefinitely without their cell wall, similarly to L-forms. We propose that formation of wall-deficient cells in actinomycetes may serve as an adaptation to osmotic stress.
DOI:10.1038/s41467-018-07560-9