ADPase activity of recombinantly expressed thermotolerant ATPases may be caused by copurification of adenylate kinase of Escherichia coli
- 14 January 2009
- journal article
- Published by Wiley in The FEBS Journal
- Vol. 276 (3) , 807-815
- https://doi.org/10.1111/j.1742-4658.2008.06825.x
Abstract
Except for apyrases, ATPases generally target only the gamma-phosphate of a nucleotide. Some non-apyrase ATPases from thermophilic microorganisms are reported to hydrolyze ADP as well as ATP, which has been described as a novel property of the ATPases from extreme thermophiles. Here, we describe an apparent ADP hydrolysis by highly purified preparations of the AAA+ ATPase NtrC1 from an extremely thermophilic bacterium, Aquifex aeolicus. This activity is actually a combination of the activities of the ATPase and contaminating adenylate kinase (AK) from Escherichia coli, which is present at 1/10,000 of the level of the ATPase. AK catalyzes conversion of two molecules of ADP into AMP and ATP, the latter being a substrate for the ATPase. We raise concern that the observed thermotolerance of E. coli AK and its copurification with thermostable proteins by commonly used methods may confound studies of enzymes that specifically catalyze hydrolysis of nucleoside diphosphates or triphosphates. For example, contamination with E. coli AK may be responsible for reported ADPase activities of the ATPase chaperonins from Pyrococcus furiosus, Pyrococcus horikoshii, Methanococcus jannaschii and Thermoplasma acidophilum; the ATP/ADP-dependent DNA ligases from Aeropyrum pernix K1 and Staphylothermus marinus; or the reported ATP-dependent activities of ADP-dependent phosphofructokinase of P. furiosus. Purification methods developed to separate NtrC1 ATPase from AK also revealed two distinct forms of the ATPase. One is tightly bound to ADP or GDP and able to bind to Q but not S ion exchange matrixes. The other is nucleotide-free and binds to both Q and S ion exchange matrixes.Keywords
This publication has 26 references indexed in Scilit:
- Distinct Static and Dynamic Interactions Control ATPase-Peptidase Communication in a AAA+ ProteasePublished by Elsevier ,2007
- ATP Ground- and Transition States of Bacterial Enhancer Binding AAA+ ATPases Support Complex Formation with Their Target Protein, σ54Structure, 2007
- Cloning and expression of a DNA ligase from the hyperthermophilic archaeon Staphylothermus marinus and properties of the enzymeJournal of Biotechnology, 2007
- EVOLUTIONARY RELATIONSHIPS AND STRUCTURAL MECHANISMS OF AAA+ PROTEINSAnnual Review of Biophysics, 2006
- A novel ATP/ADP hydrolysis activity of hyperthermostable group II chaperonin in the presence of cobalt or manganese ionFEBS Letters, 2005
- Purification and Characterization of the AAA+ Domain ofSinorhizobium melilotiDctD, a σ54-Dependent Transcriptional ActivatorJournal of Bacteriology, 2004
- Biochemical adaptations of two sugar kinases from the hyperthermophilic archaeon Pyrococcus furiosusBiochemical Journal, 2002
- ADP-Dependent Phosphofructokinases in Mesophilic and Thermophilic Methanogenic ArchaeaJournal of Bacteriology, 2001
- Purification and Characterization of a Novel ADP-dependent Glucokinase from the Hyperthermophilic Archaeon Pyrococcus furiosusJournal of Biological Chemistry, 1995
- Disk Electrophoresis of Basic Proteins and Peptides on Polyacrylamide GelsNature, 1962