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A link between cell movement and gene expression argues that motility is required for cell-cell signaling during
L Kroos1, P Hartzell, K Stephens
1Department of Biochemistry, Stanford University, California 94305.
Abstract:
Nonmotile mutants of Myxococcus xanthus (Myxobacterales) failed to execute the morphogenetic movements required to shape a fruiting body. In addition, nonmotile mutants produced very few spores when plated for fruiting body development at cell densities appropriate for wild-type cells. At higher initial cell densities, the proportion of nonmotile cells that sporulate increased, indicating that one important function of motility in fruiting body development is to increase the local cell density. However, even at 10 times normal cell density, nonmotile cells sporulated at only 1% the wild-type level. This sporulation deficiency of nonmotile mutants accompanies an altered pattern of gene expression, monitored by using transcriptional fusions of lacZ to genes expressed at specific times during fruiting body development. Motility was not required for normal expression of five lac fusions that are expressed within the first 6 hr of fruiting-body development. However, the levels of expression from five lac fusions to later-expressed genes were reduced or abolished in nonmotile strains. beta-Galactosidase expression in these late Tn5 lac insertions was increased, and fruiting body development occurred in certain nonmotile strains that can be stimulated to move when mixed with a donor strain. This shows that motility itself is required because the stimulated cells are nonmotile genotypically. The nonmotile mutations had the same effect on developmental beta-galactosidase expression from these 10 lac fusions as an insertion mutation in the csg (formerly spoC) gene. csg mutants have a cell-cell interaction defect that blocks fruiting body development at approximately 6 hr. The similarity in the pattern of developmental expression of motility mutants and csg mutants suggests that motility is required for this csg-mediated cell-cell interaction.
Insights
Myxococcus xanthus motility is essential for fruiting body development and spore formation. Nonmotile mutants show altered gene expression and impaired cell-cell interactions, highlighting motility's role in these processes.
Area of Science:
- Microbiology
- Developmental Biology
- Bacterial Genetics
Background:
- Myxococcus xanthus undergoes complex fruiting body development and sporulation.
- Cell motility is a key characteristic of Myxococcus xanthus, but its precise role in development is not fully understood.
Purpose of the Study:
- To investigate the role of motility in Myxococcus xanthus fruiting body development and sporulation.
- To analyze the impact of nonmotile mutations on gene expression during development.
Main Methods:
- Generating and characterizing nonmotile mutants of Myxococcus xanthus.
- Utilizing transcriptional fusions (lacZ) to monitor gene expression during development.
- Assessing sporulation efficiency at various cell densities.
- Complementation experiments by mixing motile and nonmotile strains.
Main Results:
- Nonmotile mutants failed to form fruiting bodies and produced significantly fewer spores.
- Motility was found to be crucial for increasing local cell density, which enhances sporulation.
- Gene expression patterns were altered in nonmotile mutants, with reduced expression of late developmental genes.
- Nonmotile mutants exhibited defects in cell-cell interactions, similar to csg mutants.
Conclusions:
- Motility is indispensable for Myxococcus xanthus fruiting body morphogenesis and efficient sporulation.
- Motility facilitates essential cell-cell interactions required for developmental progression.
- The findings suggest a critical link between motility, cell density, and developmental gene regulation in Myxococcus xanthus.