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Adenylate cyclase activity during phenotypic variation of Bordetella pertussis

Insights

Magnesium sulfate (MgSO4) induces changes in Bordetella pertussis, affecting adenylate cyclase activity and cell envelope proteins. Protein synthesis is crucial for these MgSO4-induced modulations.

Area of Science:

  • Microbiology
  • Bacterial Pathogenesis
  • Molecular Biology

Background:

  • Bordetella pertussis exhibits phenotypic modulation affecting virulence factors.
  • Adenylate cyclase activity and cell envelope polypeptides (X polypeptides) are key characteristics of B. pertussis.

Purpose of the Study:

  • To investigate the role of adenylate cyclase in MgSO4-induced modulation of B. pertussis.
  • To understand the relationship between adenylate cyclase activity, histamine-sensitizing activity (HSA), and X polypeptides during modulation.

Main Methods:

  • Induction of B. pertussis modulation using MgSO4 and other compounds.
  • Measurement of adenylate cyclase activity, HSA, and X polypeptide levels.
  • Assessing the effect of cell lysates and exogenous cAMP on modulation.
  • Investigating the requirement for protein synthesis in modulation and reversal.

Main Results:

  • MgSO4-induced modulation led to synchronous loss of adenylate cyclase activity, HSA, and X polypeptides.
  • Most compounds inducing modulation showed little inhibition of adenylate cyclase, except nicotinic acid.
  • Protein synthesis was essential for both MgSO4-induced modulation and its reversal.
  • Exogenous cAMP did not counteract MgSO4- or nicotinic acid-induced modulation.

Conclusions:

  • The findings suggest a potential causal role for adenylate cyclase in the modulation of B. pertussis.
  • Modulation appears to be a complex process involving protein synthesis and affecting multiple virulence-associated factors.

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