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  4. The wall-less bacterium Spiroplasma poulsonii builds a polymeric cytoskeleton composed of interacting MreB isoforms
 
research article

The wall-less bacterium Spiroplasma poulsonii builds a polymeric cytoskeleton composed of interacting MreB isoforms

Masson, Florent  
•
Pierrat, Xavier  
•
Lemaitre, Bruno  
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December 17, 2021
Iscience

A rigid cell wall defines the morphology of most bacteria. MreB, a bacterial homologue of actin, plays a major role in coordinating cell wall biogenesis and defining cell shape. Spiroplasma are wall-less bacteria that robustly grow with a characteristic helical shape. Paradoxal to their lack of cell wall, the Spiroplasma genome contains five homologs of MreB (SpMreBs). Here, we investigate the function of SpMreBs in forming a polymeric cytoskeleton. We found that, in vivo, Spiroplasma maintain a high concentration of all MreB isoforms. By leveraging a heterologous expression system that bypasses the poor genetic tractability of Spiroplasma, we found that SpMreBs produced polymeric filaments of various morphologies. We characterized an interaction network between isoforms that regulate filament formation and patterning. Therefore, our results support the hypothesis where combined SpMreB isoforms would form an inner polymeric cytoskeleton in vivo that shapes the cell in a wall-independent manner.

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Type
research article
DOI
10.1016/j.isci.2021.103458
Web of Science ID

WOS:000740254100009

Author(s)
Masson, Florent  
Pierrat, Xavier  
Lemaitre, Bruno  
Persat, Alexandre  
Date Issued

2021-12-17

Publisher

CELL PRESS

Published in
Iscience
Volume

24

Issue

12

Article Number

103458

Subjects

Multidisciplinary Sciences

•

Science & Technology - Other Topics

•

escherichia-coli

•

cell-shape

•

actin

•

protein

•

filaments

•

organization

•

citri

•

morphogenesis

•

orientation

•

evolution

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPLEM  
UPPERSAT  
Available on Infoscience
January 15, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/184461
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