Surface sensing stimulates cellular differentiation in <i>Caulobacter crescentus</i>.
basic_science · Level V
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- Record sourced from PubMed, PMID 32661164.
- Also identified by DOI 10.1073/pnas.1920291117 and PMC identifier 7395532.
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Abstract
Cellular differentiation is a fundamental strategy used by cells to generate specialized functions at specific stages of development. The bacterium <i>Caulobacter crescentus</i> employs a specialized dimorphic life cycle consisting of two differentiated cell types. How environmental cues, including mechanical inputs such as contact with a surface, regulate this cell cycle remain unclear. Here, we find that surface sensing by the physical perturbation of retracting extracellular pilus filaments accelerates cell-cycle progression and cellular differentiation. We show that physical obstruction of dynamic pilus activity by chemical perturbation or by a mutation in the outer-membrane pilus secretin CpaC stimulates early initiation of chromosome replication. In addition, we find that surface contact stimulates cell-cycle progression by demonstrating that surface-stimulated cells initiate early chromosome replication to the same extent as planktonic cells with obstructed pilus activity. Finally, we show that obstruction of pilus retraction stimulates the synthesis of the cell-cycle regulator cyclic diguanylate monophosphate (c-di-GMP) through changes in the activity and localization of two key regulatory histidine kinases that control cell fate and differentiation. Together, these results demonstrate that surface contact and sensing by alterations in pilus activity stimulate <i>C. crescentus</i> to bypass its developmentally programmed temporal delay in cell differentiation to more quickly adapt to a surface-associated lifestyle.
Medical subject headings
- Bacterial Physiological Phenomena
- Caulobacter crescentus
- Gram-Negative Bacterial Infections