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Mycoplasma pneumoniae protein P30 is required for cytadherence and associated with proper cell development
C E Romero-Arroyo1, J Jordan, S J Peacock
1Department of Microbiology, University of Georgia, Athens, Georgia 30602, USA.
Abstract:
The attachment organelle of Mycoplasma pneumoniae is a polar, tapered cell extension containing an intracytoplasmic, electron-dense core. This terminal structure is the leading end in gliding motility, and its duplication is thought to precede cell division, raising the possibility that mutations affecting cytadherence also confer a defect in motility or cell development. Mycoplasma surface protein P30 is associated with the attachment organelle, and P30 mutants II-3 and II-7 do not cytadhere. In this study, the recombinant wild-type but not the mutant II-3 p30 allele restored cytadherence when transformed into P30 mutants by recombinant transposon delivery. The mutations associated with loss of P30 in mutant II-3 and reacquisition of P30 in cytadhering revertants thereof were identified by nucleotide sequencing of the p30 gene. Morphological abnormalities that included ovoid or multilobed cells having a poorly defined tip structure were associated with loss of P30. Digital image analysis confirmed quantitatively the morphological differences noted visually. Transformation of the P30 mutants with the wild-type p30 allele restored a normal morphology, as determined both visually and by digital image analysis, suggesting that P30 plays a role in mycoplasma cell development. Finally, the P30 mutants localized the adhesin protein P1 to the terminal organelle, indicating that P30 is not involved in P1 trafficking but may be required for its receptor-binding function.
Insights
Mycoplasma pneumoniae surface protein P30 is crucial for cell adhesion and normal cell development. Loss of P30 impairs cytadherence and causes morphological defects, highlighting its role in bacterial cell structure.
Area of Science:
- Microbiology
- Cell Biology
- Bacterial Adhesion
Background:
- Mycoplasma pneumoniae possesses a polar attachment organelle essential for gliding motility and cell division.
- Surface protein P30 is localized to this organelle, and mutations affecting P30 can lead to loss of cytadherence.
Purpose of the Study:
- To investigate the role of Mycoplasma pneumoniae surface protein P30 in cytadherence, motility, and cell development.
- To identify the genetic basis of P30 mutations and their impact on cell morphology and function.
Main Methods:
- Genetic transformation of P30 mutants with recombinant wild-type p30 allele.
- Nucleotide sequencing of the p30 gene to identify mutations.
- Morphological analysis using digital image analysis.
- Localization studies of adhesin protein P1.
Main Results:
- Recombinant wild-type p30 allele restored cytadherence in P30 mutants.
- Loss of P30 was associated with morphological abnormalities, including ovoid or multilobed cells.
- P30 mutants correctly localized adhesin protein P1 to the terminal organelle.
Conclusions:
- Mycoplasma pneumoniae P30 is essential for cytadherence and plays a significant role in mycoplasma cell development and morphology.
- P30 is not involved in P1 trafficking but may be required for P1's receptor-binding function.