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Updated: May 3, 2026

The Multifaceted Benefits of Protein Co-expression in Escherichia coli
Published on: February 5, 2015
ExpR coordinates the expression of symbiotically important, bundle-forming Flp pili with quorum sensing in
Hardik M Zatakia1, Cassandra E Nelson, Umair J Syed
1Department of Biological Sciences, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, USA.
Abstract:
Type IVb pili in enteropathogenic bacteria function as a host colonization factor by mediating tight adherence to host cells, but their role in bacterium-plant symbiosis is currently unknown. The genome of the symbiotic soil bacterium Sinorhizobium meliloti contains two clusters encoding proteins for type IVb pili of the Flp (fimbrial low-molecular-weight protein) subfamily. To establish the role of Flp pili in the symbiotic interaction of S. meliloti and its host, Medicago sativa, we deleted pilA1, which encodes the putative pilin subunit in the chromosomal flp-1 cluster and conducted competitive nodulation assays. The pilA1 deletion strain formed 27% fewer nodules than the wild type. Transmission electron microscopy revealed the presence of bundle-forming pili protruding from the polar and lateral region of S. meliloti wild-type cells. The putative pilus assembly ATPase CpaE1 fused to mCherry showed a predominantly unilateral localization. Transcriptional reporter gene assays demonstrated that expression of pilA1 peaks in early stationary phase and is repressed by the quorum-sensing regulator ExpR, which also controls production of exopolysaccharides and motility. Binding of acyl homoserine lactone-activated ExpR to the pilA1 promoter was confirmed with electrophoretic mobility shift assays. A 17-bp consensus sequence for ExpR binding was identified within the 28-bp protected region by DNase I footprinting analyses. Our results show that Flp pili are important for efficient symbiosis of S. meliloti with its plant host. The temporal inverse regulation of exopolysaccharides and pili by ExpR enables S. meliloti to achieve a coordinated expression of cellular processes during early stages of host interaction.
Insights
Type IVb pili are crucial for Sinorhizobium meliloti symbiosis with Medicago sativa. Deleting the pilA1 gene reduced nodule formation, highlighting the pili's role in this plant-bacterium interaction.
Area of Science:
- Microbiology
- Plant-Bacterium Interactions
- Symbiosis
Background:
- Type IVb pili mediate host colonization in pathogenic bacteria.
- The function of Type IVb pili in bacterium-plant symbiosis was previously unknown.
- Sinorhizobium meliloti possesses genes for Flp subfamily pili.
Purpose of the Study:
- To investigate the role of Flp pili in the symbiotic interaction between Sinorhizobium meliloti and Medicago sativa.
- To determine the regulatory mechanisms controlling Flp pilus expression.
Main Methods:
- Deletion of the pilA1 gene encoding the pilin subunit.
- Competitive nodulation assays.
- Transmission electron microscopy.
- Transcriptional reporter gene assays.
- Electrophoretic mobility shift assays (EMSAs).
- DNase I footprinting analyses.
Main Results:
- The pilA1 deletion strain showed a 27% reduction in nodule formation compared to wild type.
- Bundle-forming pili were observed on S. meliloti wild-type cells.
- ExpR, a quorum-sensing regulator, represses pilA1 expression.
- ExpR binding to the pilA1 promoter was confirmed, with a specific binding sequence identified.
Conclusions:
- Flp pili are essential for efficient symbiosis between S. meliloti and Medicago sativa.
- ExpR-mediated temporal inverse regulation of exopolysaccharides and pili allows coordinated cellular processes during host interaction.
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