High pressure response of 1H NMR chemical shifts of purine nucleotides

被引:2
作者
Munte, Claudia E. [1 ]
Karl, Matthias [1 ]
Kauter, Waldemar [1 ]
Eberlein, Lukas [2 ]
Thuy-Vy Pham [1 ]
Erlach, Markus Beck [1 ]
Kast, Stefan M. [2 ]
Kremer, Werner [1 ]
Kalbitzer, Hans Robert [1 ]
机构
[1] Univ Regensburg, Inst Biophys & Phys Biochem, Ctr Magnet Resonance Chem & Biomed, Univ Str 31, D-93053 Regensburg, Germany
[2] TU Dortmund Univ, Phys Chem 3, Otto Hahn Str 4a, D-44227 Dortmund, Germany
关键词
H-1; NMR; High pressure NMR spectroscopy; Guanine nucleotide; Adenine nucleotide; AMP; NUCLEAR-MAGNETIC-RESONANCE; INTEGRAL-EQUATION THEORY; NMR COUPLING-CONSTANTS; CONFORMATIONAL-ANALYSIS; PROTON NMR; SUBSTITUENT ELECTRONEGATIVITIES; STAPHYLOCOCCUS-CARNOSUS; AQUEOUS-SOLUTION; NUCLEOSIDES; RELAXATION;
D O I
10.1016/j.bpc.2019.106261
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The study of the pressure response by NMR spectroscopy provides information on the thermodynamics of conformational equilibria in proteins and nucleic acids. For obtaining a database for expected pressure effects on free nucleotides and nucleotides bound in macromolecular complexes, the pressure response of H-1 chemical shifts and J-coupling constants of the purine 5'-ribonucleotides AMP, ADP, ATP, GMP, GDP, and GTP were studied in the absence and presence of Mg2+-ions. Experiments are supported by quantum-chemical calculations of populations and chemical shift differences in order to corroborate structural interpretations and to estimate missing data for AMP. The preference of the ribose S puckering obtained from the analysis of the experimental J-couplings is also confirmed by the calculations. In addition, the pressure response of the non-hydrolysable GTP analogues GppNHp, GppCH(2)p, and GTP gamma S was examined within a pressure range up to 200 MPa. As observed earlier for P-31 NMR chemical shifts of these nucleotides the pressure dependence of chemical shifts is clearly non-linear in most cases. In di- and tri-phospho nucleosides, the resonances of the two protons bound to the ribose 5' carbon are non-equivalent and can be observed separately. The gg-rotamer at C4'-C5' bond is strongly preferred and the downfield shifted resonance can be assigned to the H5 '' proton in the nucleotides. In contrast, in adenosine itself the frequencies of the two resonances are interchanged.
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页数:17
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