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S-adenosylmethionine transport in Rickettsia prowazekii
Aimee M Tucker1, Herbert H Winkler, Lonnie O Driskell
1Laboratory of Molecular Biology, Department of Microbiology and Immunology, University of South Alabama College of Medicine, Mobile, Alabama 36688, USA.
Abstract:
Rickettsia prowazekii, the causative agent of epidemic typhus, is an obligate, intracellular, parasitic bacterium that grows within the cytoplasm of eucaryotic host cells. Rickettsiae exploit this intracellular environment by using transport systems for the compounds available in the host cell's cytoplasm. Analysis of the R. prowazekii Madrid E genome sequence revealed the presence of a mutation in the rickettsial metK gene, the gene encoding the enzyme responsible for the synthesis of S-adenosylmethionine (AdoMet). Since AdoMet is required for rickettsial processes, the apparent inability of this strain to synthesize AdoMet suggested the presence of a rickettsial AdoMet transporter. We have confirmed the presence of an AdoMet transporter in the rickettsiae which, to our knowledge, is the first bacterial AdoMet transporter identified. The influx of AdoMet into rickettsiae was a saturable process with a K(T) of 2.3 micro M. Transport was inhibited by S-adenosylethionine and S-adenosylhomocysteine but not by sinfungin or methionine. Transport was also inhibited by 2,4-dinitrophenol, suggesting an energy-linked transport mechanism, and by N-ethylmaleimide. AdoMet transporters with similar properties were also identified in the Breinl strain of R. prowazekii and in Rickettsia typhi. By screening Escherichia coli clone banks for AdoMet transport, the R. prowazekii gene coding for a transporter, RP076 (sam), was identified. AdoMet transport in E. coli containing the R. prowazekii sam gene exhibited kinetics similar to that seen in rickettsiae. The existence of a rickettsial transporter for AdoMet raises intriguing questions concerning the evolutionary relationship between the synthesis and transport of this essential metabolite.
Insights
Rickettsia prowazekii, the cause of epidemic typhus, lacks S-adenosylmethionine (AdoMet) synthesis due to a mutation. Researchers discovered a novel bacterial AdoMet transporter in Rickettsia, essential for its survival and growth.
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- Rickettsia prowazekii is an obligate intracellular bacterium causing epidemic typhus.
- Rickettsiae utilize host cell cytoplasm for growth and nutrient acquisition.
- A mutation in the metK gene prevents S-adenosylmethionine (AdoMet) synthesis in R. prowazekii Madrid E.
Purpose of the Study:
- To investigate the mechanism by which Rickettsia obtains S-adenosylmethionine (AdoMet) despite a defective synthesis pathway.
- To identify and characterize a potential AdoMet transporter in Rickettsia.
- To explore the evolutionary implications of AdoMet transport in bacteria.
Main Methods:
- Genome sequence analysis of R. prowazekii Madrid E.
- Characterization of AdoMet uptake in Rickettsia using radiolabeled AdoMet.
- Inhibition studies with various compounds to determine transport specificity and energy dependence.
- Functional expression of the identified R. prowazekii gene (sam) in Escherichia coli.
Main Results:
- A functional, saturable S-adenosylmethionine (AdoMet) transporter was identified in Rickettsia, the first bacterial AdoMet transporter discovered.
- Transport exhibited high affinity (K(T) = 2.3 micro M) and was energy-dependent.
- The R. prowazekii gene RP076 (sam) was identified and shown to mediate AdoMet transport in E. coli with similar kinetics.
- Similar transporters were found in other Rickettsia species.
Conclusions:
- Rickettsia employs a specific transporter to import essential S-adenosylmethionine (AdoMet) from the host cell cytoplasm.
- The discovery of a bacterial AdoMet transporter challenges previous assumptions and opens new avenues for research.
- The findings raise questions about the co-evolution of metabolite synthesis and transport systems in bacteria.