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PMID: 2859347 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Adenylate cyclase activity during phenotypic variation of Bordetella pertussis.

Journal of general microbiology ·Vol. 131 ·No. 1 ·1985-01-00 ·Pages 27-38

Brownlie RM, Coote JG, Parton R

Abstract

During MgSO4-induced modulation of Bordetella pertussis, adenylate cyclase activity, histamine-sensitizing activity (HSA) and the major cell-envelope polypeptides with Mr 28000 and 30000 (X polypeptides) were lost synchronously at a rate which could be accounted for by a simple growth-dilution effect. MgSO4 and other compounds which induced the above phenotypic change caused little inhibition of adenylate cyclase activity. Nicotinic acid was the sole exception and at 4.1 mM-caused 60% inhibition of activity. Lysates of modulated cells, mixed with lysates of unmodulated cells, had no effect on either adenylate cyclase activity or HSA. Protein synthesis was a prerequisite for MgSO4-induced modulation and also for the reversal of this process. Exogenous cAMP and dibutyryl cAMP (5 mM) had no counteracting effect on MgSO4- or nicotinic acid-induced modulation. The concentration of MgSO4 required to induce loss of the X polypeptides (10 to 11 mM) was not altered by promoting adenylate cyclase activity by including an activator in the growth medium. In one culture containing 10 mM-MgSO4 and activator, partial loss of the X polypeptides occurred and yet the extracellular cAMP concentration was twice that of cultures without activator and where full expression of the X polypeptides occurred. [3H]cAMP-binding activity was detected in cell extracts of several strains of B. pertussis, but antiserum against purified Escherichia coli catabolite repressor protein gave no reaction with B. pertussis cell extracts. Respiration rates with amino acids were similar for modulated and unmodulated variants and an avirulent strain of B. pertussis. These results are discussed in relation to a possible causal role for adenylate cyclase in modulation of B. pertussis.

MeSH Terms
Adenylyl Cyclases/metabolism Bacterial Proteins/metabolism Bordetella pertussis/drug effects,enzymology,genetics Chloramphenicol/pharmacology Culture Media Cyclic AMP/metabolism Genetic Variation Humans Infant Magnesium Sulfate/pharmacology Phenotype Repressor Proteins/metabolism
Chemicals
Bacterial Proteins Culture Media Repressor Proteins Chloramphenicol Magnesium Sulfate Cyclic AMP Adenylyl Cyclases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Brownlie R M
Coote J G
Parton R
Article Info
Journal
Journal of general microbiology
Abbr.
J Gen Microbiol
ISSN
0022-1287
Published
1985-01-00
Pages
27-38
Language
English
Region
England
NLM ID
0375371
Subset
IM
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