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Transport of AMP by Rickettsia prowazekii
Abstract:
Rickettsia prowazekii possesses an exchange transport system for AMP. Chromatographic analysis of the rickettsiae demonstrated that transported AMP appeared intracellularly as AMP, ADP, and ATP, and no hydrolytic products appeared in either the intracellular or extracellular compartments. The phosphorylation of AMP to ADP and ATP was prevented by pretreatment of the cells with 1 mM N-ethylmaleimide without inhibiting the transport of AMP. Although no efflux was demonstrable in the absence of nucleotide in the medium, the intracellular adenine nucleotide pool could be exchanged with external unlabeled adenine nucleotides. Both ADP and ATP were as effective as AMP at inhibiting the uptake of [3H]AMP. Although this transport system was inhibited by low temperature (0 degrees C) and partially inhibited by the protonophore carbonyl cyanide-m-chlorophenyl hydrazone (1 mM), it was relatively insensitive to KCN (1 mM). The uptake of AMP at 34 degrees C had an apparent Kt for influx of 0.4 mM and a Vmax of 354 pmol min-1 per mg. At 0 degrees C there was a very rapid and unsaturable association of AMP with these organisms. Correction of the uptake data at 34 degrees C for the 0 degrees C component lowered the apparent Kt to 0.15 mM. Both magnesium and phosphate ions are required for optimal transport activity. Chemical measurements of the total intracellular nucleotide pools demonstrated that this system was not a net adenine nucleotide transport system, but that uptake of AMP was the result of an exchange with internal adenine nucleotides.
Insights
Rickettsia prowazekii utilizes an exchange transport system for adenosine monophosphate (AMP). This system facilitates AMP uptake and exchange with intracellular adenine nucleotides, not net transport.
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- Rickettsia prowazekii is an obligate intracellular bacterium.
- Understanding nutrient transport in Rickettsia is crucial for deciphering its metabolic strategies.
Purpose of the Study:
- To investigate the mechanism of adenosine monophosphate (AMP) transport in Rickettsia prowazekii.
- To characterize the kinetics and requirements of the AMP transport system.
Main Methods:
- Chromatographic analysis of intracellular and extracellular nucleotides.
- Inhibition studies using N-ethylmaleimide, carbonyl cyanide-m-chlorophenyl hydrazone, and KCN.
- Kinetic analysis of AMP uptake at different temperatures and substrate concentrations.
- Investigating the role of magnesium and phosphate ions.
Main Results:
- Rickettsia prowazekii possesses an AMP exchange transport system, not a net transport system.
- Intracellular AMP is converted to ADP and ATP; no hydrolysis occurs.
- Transport is inhibited by N-ethylmaleimide, low temperature, and carbonyl cyanide-m-chlorophenyl hydrazone, but not KCN.
- Magnesium and phosphate ions are essential for optimal transport.
- Kinetic parameters (Kt and Vmax) were determined for AMP influx.
Conclusions:
- The identified system represents an exchange mechanism for adenine nucleotides.
- This transport system is vital for Rickettsia prowazekii's intracellular metabolism and survival.