Abstract

Spore formation in Bacillus subtilis begins with an asymmetric cell division, following which differential gene expression is established by alternative compartment-specific RNA polymerase σ factors. The spoIISAB operon of B. subtilis was identified as a locus whose mutation leads to increased activity of the first sporulation-specific sigma factor, σF. Inappropriate spoIISA expression causes lysis of vegetatively growing B. subtilis cells and Escherichia coli cells when expressed heterologously, effects that are countered by co-expression of spoIISB, identifying SpoIISA-SpoIISB as a toxin-antitoxin system. SpoIISA has three putative membrane-spanning segments and a cytoplasmic domain. Here, the crystal structure of a cytoplasmic fragment of SpoIISA (CSpoIISA) in complex with SpoIISB has been determined by selenomethionine-multiwavelength anomalous dispersion phasing to 2.5 Å spacing, revealing a CSpoIISA2·SpoIISB2 heterotetramer. CSpoIISA has a single domain α/β structure resembling a GAF domain with an extended α-helix at its N terminus. The two CSpoIISA protomers form extensive interactions through an intermolecular four-helix bundle. Each SpoIISB chain is highly extended and lacking tertiary structure. The SpoIISB chains wrap around the CSpoIISA dimer, forming extensive interactions with both CSpoIISA protomers. CD spectroscopy experiments indicate that SpoIISB is a natively disordered protein that adopts structure only in the presence of CSpoIISA, whereas surface plasmon resonance experiments revealed that the CSpoIISA·SpoIISB complex is stable with a dissociation constant in the nanomolar range. The results are interpreted in relation to sequence conservation and mutational data, and possible mechanisms of cell killing by SpoIISA are discussed.

Highlights

  • Toxin-antitoxin (TA)3 modules encoding a stable killer protein and a labile protein antidote were originally discovered through their association with the phenomenon of plasmid maintenance in bacteria [1, 2]

  • The Crystal Structure of CSpoIISA1⁄7SpoIISB—The coding sequence of the cytoplasmic domain of SpoIISA encompassing residues 80 –248 fused to a sequence encoding a 21-residue N-terminal hexahistidine-containing peptide was cooverexpressed with the coding sequence of spoIISB from a pET-Duet-1 vector in E. coli BL21(DE3)

  • Similar decreases in the sporulation efficiency were observed when spoIISA was co-expressed with spoIISB deletants encoding proteins with 27 or 36 N-terminal residues replaced by Met-Ala-Ala

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Summary

PCR primers

5Ј-CTGTTTTGAAACGCAGGATCCATTATCCTTCA-3Ј 5Ј-GTGAGGGATTCGACCATGGTTTTATTCTTTCA-3Ј 5Ј-TGTTTTGAAACGCTGCAGCCATTATCCTTCAC-3Ј 5Ј-CAGTCAGTTTTGCTTTGATGGATCCTTTTATC-3Ј 5Ј-CACCCTTTAAGAAAAGGATCCAGGACAAGAG-3Ј 5Ј-AACGAGTACCCGGAAAGCTTAAACCTTC-3Ј 5Ј-TGAAGGACCATGGAACGTGCGTTTC-3Ј 5Ј-AGGAAGGTGAAGGCATATGGAACGTGCGTT-3Ј 5Ј-CGCCTGCAGCAAGAATCTTCAAAGAAAAC-3Ј 5Ј-ACCACTGCAGCAAGCTATCAAGTCAGTC-3Ј 5Ј-GTTCGTAAGCTTTCTAGATTCTTGCTGTATGC-3Ј 5Ј-CAATCAAAGCTTAGTTTTCTTTGAAGATTCTTGC-3Ј 5Ј-CCACTGCAGCGAAGCCGTTTAAAATC-3Ј 5Ј-CGTTTAAGCTTCTAAATCAGCCGTTCGTTTTC-3Ј 5Ј-TGCTAAGCTTCATTTATACTCGTCAATCAGCCGT-3Ј 5Ј-GAAGGATAATGGCTGCAGCGTTTCAAAACAG-3Ј 5Ј-GATGATGATGAATTCTCTCATTGTCGCAGTCA-3Ј 5Ј-GATGATGATGAATTCTCTCATTGTCGCAGTCA-3Ј 5Ј-GATGATGTAAAGCTTCTGCAAGAGTGG AACAA-3Ј 5Ј-GATGATGTACTGCAGACAAGGGAAAA CAGCTC-3Ј 5Ј- GATGATGATGGATCCGAATGGCGAATGCGCATAC-3Ј 5Ј-GATGATGATCTGCAGCCGCATCAGGCGATAAAC-3Ј a Restriction endonuclease cleavage sites are underlined

Source or reference
EXPERIMENTAL PROCEDURES
Plasmids and bacterial strains
Novagen Novagen
Number of water molecules Root mean square deviation from targetf
RESULTS
DISCUSSION
Full Text
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