Hydration of biomolecules
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Summary
Work focusing on the interaction of individual water molecules with a range of model biomolecules, including peptides and nucleotides is reviewed, evaluating water binding energies, water binding sites, the effect of water on biomolecule structure, and where this research is heading.
- Type
- article
- Published
- 2009-09-28
- Cited by
- 78
- References
- 84
- OpenAlex
- https://openalex.org/W1970692516
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94069836
Keywords
Biomolecule, Chemistry, Molecule, Nanotechnology, Materials science
References
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- Hydration of mononucleotides.
- NMR studies of water bound to biological molecules
- IS ARGININE ZWITTERIONIC OR NEUTRAL IN THE GAS PHASE? RESULTS FROM IR CAVITY RINGDOWN SPECTROSCOPY
- Infrared spectroscopy of hydrated amino acids in the gas phase: protonated and lithiated valine.
- Nuclear magnetic resonance studies of the hydration of proteins and DNA
- G-quadruplexes in telomeric repeats are conserved in a solvent-free environment
- One water molecule stabilizes the cationized arginine zwitterion.
- Multiphoton ionization studies of clusters of immiscible liquids. I. C6H6–(H2O)n, n=1,2
- B-DNA Helix Stability in a Solvent-Free Environment
- Amyloid β‐protein monomer structure: A computational and experimental study
- True stabilization energies for the optimal planar hydrogen-bonded and stacked structures of guanine...cytosine, adenine...thymine, and their 9- and 1-methyl derivatives: complete basis set calculations at the MP2 and CCSD(T) levels and comparison with experiment.
- Hydration of protonated aromatic amino acids: phenylalanine, tryptophan, and tyrosine.
- Zwitterion formation in hydrated amino acid, dipole bound anions: How many water molecules are required?
- Ultraviolet spectroscopy and tautomerism of the DNA base guanine and its hydrate formed in a supersonic jet
- Hydration energies of protonated amino acids
- A first principles study on the solvation and structure of SO4 2- (H2O)n, n=6-12.
Cited by
- Probing biomolecular fragmentation
- IR Spectroscopic Techniques to Study Isolated Biomolecules.
- Time-resolved HYDRATION-PERTURBATION-FTIR spectroscopy:A new method to identify water H-bond networks that couple hydration to DNA conformation
- Microhydration of Protonated Nα-Acetylhistidine: A Theoretical Approach.
- Using nanoelectrospray ion mobility spectrometry (GEMMA) to determine the size and relative molecular mass of proteins and protein assemblies: a comparison with MALLS and QELS
- Next generation techniques in the high resolution spectroscopy of biologically relevant molecules.
- Hydration isomers of protonated phenylalanine and derivatives: relative stabilities from infrared photodissociation.
- Organization and dynamics of membrane probes and proteins utilizing the red edge excitation shift.
- Ion interaction with biomolecular systems and the effect of the environment
- Link between the hydration enthalpy of lysozyme and the density of its hydration water: Electrostriction.
- Determination of gas phase protein ion densities via ion mobility analysis with charge reduction.
- Proton transfer and complex formation of angiotensin I ions with gaseous molecules at various temperature
- Organization and dynamics of tryptophans in the molten globule state of bovine alpha-lactalbumin utilizing wavelength-selective fluorescence approach: comparisons with native and denatured states.
- DFT and MP2 investigations of L-proline and its hydrated complexes
- A “hidden” role of amino and imino groups is unveiled during the micro-solvation study of three biomolecule groups in water
- Water adsorption at two unsolvated peptides with a protonated lysine residue: from self-solvation to solvation.
- Stepwise hydration and evaporation of adenosine monophosphate nucleotide anions: a multiscale theoretical study.
- Computational investigation of the hydration of alkyl diammonium cations in water clusters
- Gas-phase clustering of protonated amino acids with acetonitrile
- Hydration of formate and acetate ions by dielectric relaxation spectroscopy.
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