Toward a general method to observe the phosphate groups of phosphoenzymes with infrared spectroscopy |
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Authors: | Karjalainen Eeva-Liisa Hardell Amelie Barth Andreas |
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Affiliation: | Department of Biochemistry and Biophysics, The Arrhenius Laboratories of Natural Sciences, Stockholm University, Stockholm, Sweden. |
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Abstract: | A general method to study the phosphate group of phosphoenzymes with infrared difference spectroscopy by helper enzyme-induced isotope exchange was developed. This allows the selective monitoring of the phosphate P-O vibrations in large proteins, which provides detailed information on several band parameters. Here, isotopic exchange was achieved at the oxygen atoms of the catalytically important phosphate group that transiently binds to the sarcoplasmic reticulum Ca(2+)-ATPase (SERCA1a). [gamma-(18)O(3)]ATP phosphorylated the ATPase, which produced phosphoenzyme that was initially isotopically labeled. The helper enzyme adenylate kinase regenerated the substrate ATP from ADP (added or generated upon ATP hydrolysis) with different isotopic composition than used initially. With time this produced the unlabeled phosphoenzyme. The method was tested on the ADP-insensitive phosphoenzyme state of the Ca(2+)-ATPase for which the vibrational frequencies of the phosphate group are known, and it was established that the helper enzyme is effective in mediating the isotope exchange process. |
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Keywords: | ATP, P3-1-(2-nitrophenyl)ethyl ATP Ca2E1, Ca2+ bound form of Ca2+-ATPase Ca2E1P, ADP-sensitive phosphoenzyme E2PADP, -insensitive phosphoenzyme |
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