The structure of sodium thymonucleate fibres. I. The influence of water content
about
The era of RNA awakening: structural biology of RNA in the early yearsChanges in liver cell DNA methylation status in diabetic mice affect its FT-IR characteristicsNaDNA-bipyridyl-(ethylenediamine)platinum (II) complex: structure in oriented wet-spun films and fibers.A re-examination of the crystal structure of A-DNA using fiber diffraction data.The ABCs of molecular dynamics simulations on B-DNA, circa 2012.Crystal structures of A-DNA duplexes.The importance of hydration and DNA conformation in interpreting infrared spectra of cells and tissues.Drying effect creates false assemblies in DNA-coated gold nanoparticles as determined through in situ liquid cell STEM.Molecular size and shape. A review of the lightscattering method applied to some important biological and other macromolecules. Part II.New wrinkles on polynucleotide duplexes.A theoretical study of the aqueous hydration of canonical B d(CGCGAATTCGCG): Monte Carlo simulation and comparison with crystallographic ordered water sites.Boundary conditions for free A-DNA in solution and the relation of local to global DNA structures at reduced water activity.Solution structure of the dodecamer d-(CATGGGCC-CATG)2 is B-DNA. Experimental and molecular dynamics study.Hydration of nucleic acid crystals.B-DNA helix stability in a solvent-free environment.Studies on tautomeric forms of Guanine-Cytosine base pairs of nucleic acids and their interactions with water molecules.Studies of base pair sequence effects on DNA solvation based on all-atom molecular dynamics simulations.Fourier transform infrared spectroscopy as a probe for the study of the hydration of lipid self-assemblies. I. Methodology and general phenomena.Modeling DNA hydration: comparison of calculated and experimental hydration properties of nuclic acid bases.Rosalind Franklin and the discovery of the structure of DNA.Probing helical transitions in a DNA duplex.The nature of the B-A transition of DNA in solution.Rosalind Franklin and the Double HelixAn improved nucleic acid parameter set for the GROMOS force fieldStatistical mechanical treatment of the structural hydration of biological macromolecules: Results forB-DNAThermal Denaturation of DNA Studied with Neutron ScatteringNucleic Acids in Deuterium Oxide SolutionDetermination of the Helical Configuration of Ribonucleic Acid Molecules by X-Ray Diffraction Study of Crystalline Amino-Acid–transfer Ribonucleic AcidMolecular Structure of Deoxyribose Nucleic Acid and Nucleoprotein
P2860
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P2860
The structure of sodium thymonucleate fibres. I. The influence of water content
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1953 nî lūn-bûn
@nan
1953 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
1953 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
1953年の論文
@ja
1953年論文
@yue
1953年論文
@zh-hant
1953年論文
@zh-hk
1953年論文
@zh-mo
1953年論文
@zh-tw
1953年论文
@wuu
name
The structure of sodium thymonucleate fibres. I. The influence of water content
@ast
The structure of sodium thymonucleate fibres. I. The influence of water content
@en
The structure of sodium thymonucleate fibres. I. The influence of water content
@en-gb
type
label
The structure of sodium thymonucleate fibres. I. The influence of water content
@ast
The structure of sodium thymonucleate fibres. I. The influence of water content
@en
The structure of sodium thymonucleate fibres. I. The influence of water content
@en-gb
prefLabel
The structure of sodium thymonucleate fibres. I. The influence of water content
@ast
The structure of sodium thymonucleate fibres. I. The influence of water content
@en
The structure of sodium thymonucleate fibres. I. The influence of water content
@en-gb
P1476
The structure of sodium thymonucleate fibres. I. The influence of water content
@en
P2093
R. E. Franklin
R. G. Gosling
P304
P356
10.1107/S0365110X53001939
P577
1953-09-10T00:00:00Z