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Purification and characterization of the major iron-regulated protein expressed by pathogenic Neisseriae
Abstract:
This report describes a method to purify the major iron-regulated protein (MIRP) expressed by N. gonorrhoeae and N. meningitidis. This purification procedure involves maximal expression of the MIRP by growing the organisms on iron-limited media; cellular disruption by sonication followed by centrifugal fractionation; selective solubilization of the MIRP with the cationic detergent hexadecyltrimethylammonium bromide; cation-exchange chromatography in the presence of this detergent; and gel filtration chromatography. The MIRP purified by this technique migrates as a single band when analyzed by SDS-PAGE. The purified MIRP displayed an unusually basic isoelectric point, this value being greater than 9.35. Further biochemical analysis revealed the highly conserved nature of this protein isolated from the two pathogenic species of the genus Neisseria. For example, the amino acid composition of the meningococcal and gonococcal MIRPs were nearly identical and amino terminal sequence analysis showed that both shared the identical primary sequence through residue 48. Surprisingly, the first five NH2-terminal residues of the MIRPs exhibited homology with the first five residues of the gonococcal porin, protein I. Purified preparations of the MIRP exhibited a characteristic pink color reminiscent of the basic iron-binding protein lactoferrin. This observation coupled with the property of iron-regulation prompted us to analyze purified MIRP for iron-content. Approximately 0.5 mol iron per 1 mol of MIRP was detected. This study is the first to show that iron is associated with the MIRP, a property that may implicate this protein as playing a direct role in neisserial iron assimilation. While the precise function of the MIRP is not known, the availability of this protein in pure and biologically relevant quantities will allow further studies to elucidate its pathobiologic function.
Insights
Researchers purified the major iron-regulated protein (MIRP) from Neisseria species. This study reveals MIRP contains iron, suggesting a role in iron assimilation for these pathogenic bacteria.
Area of Science:
- Microbiology
- Protein Biochemistry
- Pathogenesis
Background:
- Neisseria gonorrhoeae and Neisseria meningitidis are pathogenic bacteria.
- Iron acquisition is crucial for bacterial survival and virulence.
- The major iron-regulated protein (MIRP) is expressed by these species, but its function and purification were unclear.
Purpose of the Study:
- To develop a method for purifying the major iron-regulated protein (MIRP) from N. gonorrhoeae and N. meningitidis.
- To characterize the biochemical properties of the purified MIRP.
- To investigate the potential role of MIRP in iron metabolism.
Main Methods:
- Maximal MIRP expression under iron-limited conditions.
- Cellular disruption via sonication and centrifugal fractionation.
- Selective solubilization using hexadecyltrimethylammonium bromide.
- Purification through cation-exchange and gel filtration chromatography.
- Analysis by SDS-PAGE, isoelectric focusing, amino acid composition, and N-terminal sequencing.
Main Results:
- A robust purification protocol for MIRP was established.
- Purified MIRP exhibited a basic isoelectric point (>9.35) and migrated as a single band on SDS-PAGE.
- MIRP from both species showed high conservation in amino acid composition and N-terminal sequence.
- Homology was observed between MIRP and gonococcal porin protein I.
- Purified MIRP contained approximately 0.5 mol of iron per mol of protein.
- A characteristic pink color was observed, similar to lactoferrin.
Conclusions:
- A method for purifying MIRP from pathogenic Neisseria was successfully developed.
- The purified MIRP is highly conserved between N. gonorrhoeae and N. meningitidis.
- The presence of iron in MIRP suggests a direct role in neisserial iron assimilation.
- Further research on MIRP is warranted to fully elucidate its pathobiologic function.