Related Experiment Video
Updated: Apr 17, 2026

A Rapid In Vivo Bioassay for Developmentally Active Enhancers
The enhancer binding protein Nla6 regulates developmental genes that are important for Myxococcus xanthus sporulation
Krista M Giglio1, Chengjun Zhu1, Courtney Klunder1
1Department of Biology, Syracuse University, Syracuse, New York, USA.
Unlabelled:
In the bacterium Myxococcus xanthus, starvation triggers the formation of multicellular fruiting bodies containing thousands of stress-resistant spores. Recent work showed that fruiting body development is regulated by a cascade of transcriptional activators called enhancer binding proteins (EBPs). The EBP Nla6 is a key component of this cascade; it regulates the promoters of other EBP genes, including a downstream-functioning EBP gene that is crucial for sporulation. In recent expression studies, hundreds of Nla6-dependent genes were identified, suggesting that the EBP gene targets of Nla6 may be part of a much larger regulon. The goal of this study was to identify and characterize genes that belong to the Nla6 regulon. Accordingly, a direct repeat [consensus, C(C/A)ACGNNGNC] binding site for Nla6 was identified using in vitro and in vivo mutational analyses, and the sequence was subsequently used to find 40 potential developmental promoter (88 gene) targets. We showed that Nla6 binds to the promoter region of four new targets (asgE, exo, MXAN2688, and MXAN3259) in vitro and that Nla6 is important for their normal expression in vivo. Phenotypic studies indicate that all of the experimentally confirmed targets of Nla6 are primarily involved in sporulation. These targets include genes involved in transcriptional regulation, cell-cell signal production, and spore differentiation and maturation. Although sporulation occurs late in development, all of the developmental loci analyzed here show an Nla6-dependent burst in expression soon after starvation is induced. This finding suggests that Nla6 starts preparing cells for sporulation very early in the developmental process.
Importance:
Bacterial development yields a remarkable array of complex multicellular forms. One such form, which is commonly found in nature, is a surface-associated aggregate of cells known as a biofilm. Mature biofilms are structurally complex and contain cells that are highly resistant to antibacterial agents. When starving, the model bacterium Myxococcus xanthus forms a biofilm containing a thin mat of cells and multicellular structures that house a highly resistant cell type called a myxospore. Here, we identify the promoter binding site of the transcriptional activator Nla6, identify genes in the Nla6 regulon, and show that several of the genes in the Nla6 regulon are important for production of stress-resistant spores in starvation-induced M. xanthus biofilms.
Insights
The enhancer binding protein Nla6 regulates genes essential for Myxococcus xanthus development and spore formation. Identifying its binding site revealed new targets crucial for preparing cells for sporulation.
Area of Science:
- Microbiology
- Bacterial Development
- Transcriptional Regulation
Background:
- Myxococcus xanthus undergoes multicellular development upon starvation, forming complex fruiting bodies with stress-resistant spores.
- This development is regulated by a cascade of enhancer binding proteins (EBPs), with Nla6 being a key regulator.
- Nla6 controls other EBP genes and has hundreds of identified target genes, suggesting a large regulon involved in development.
Purpose of the Study:
- To identify and characterize the genes regulated by the enhancer binding protein Nla6 (Nla6 regulon) in Myxococcus xanthus.
- To determine the promoter binding site of Nla6 and use it to discover new target genes.
- To investigate the role of Nla6-regulated genes in the formation of stress-resistant spores during starvation-induced M. xanthus development.
Main Methods:
- In vitro and in vivo mutational analyses were used to identify the direct repeat binding site of Nla6.
- The identified binding site sequence was used to predict potential Nla6 target promoters.
- In vitro binding assays and in vivo expression studies were performed to validate Nla6 targets.
- Phenotypic studies were conducted to assess the role of confirmed targets in sporulation.
Main Results:
- A direct repeat binding site for Nla6, consensus C(C/A)ACGNNGNC, was identified.
- Using this site, 40 potential developmental promoter targets (88 genes) were found.
- Nla6 was shown to bind the promoter regions of four new targets (asgE, exo, MXAN2688, MXAN3259) in vitro and regulate their expression in vivo.
- All experimentally confirmed Nla6 targets are involved in sporulation, including genes for transcriptional regulation, cell-cell signaling, and spore differentiation/maturation.
Conclusions:
- Nla6 regulates a broad set of genes essential for Myxococcus xanthus sporulation.
- Nla6 binding and regulation occur early in the developmental process, initiating preparation for sporulation soon after starvation.
- The identified Nla6 regulon provides insights into the molecular mechanisms governing bacterial multicellular development and stress resistance.
More Related Videos
Related Concept Videos
Gene Regulation During Sporulation
Master Transcription Regulators
Master Transcription Regulators
Regulation of Nuclear Protein Sorting
RNA Polymerase II Accessory Proteins
Prokaryotic Transcriptional Activators and Repressors
Transcription of prokaryotic...

