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1 ndard metabonomic approach using complete 1D proton NMR spectra of urine samples.
2 tes was obtained using a diffusion-edited 1D proton NMR analysis.
3 state in proteins can be obtained from amide proton NMR chemical shift temperature dependences displa
4    Line broadening and multiplicity of amide proton NMR peaks from hB are consistent with hB undergoi
5  from lineshape analysis of 15N-edited amino proton NMR resonances.
6  unliganded state, comparison of the 15N and proton NMR signals from Arg-8 with those in smaller argi
7 addition onto the internal indene carbon and proton NMR spectroscopy for the sample in HCl-TFA demons
8 n data, solvent kinetic isotope effects, and proton NMR spectroscopy.
9 was isolated and characterized by FAB MS and proton NMR spectroscopy.
10     Gas chromatography-mass spectrometry and proton NMR analyses of this neutral lipid demonstrated t
11 g and characterized by mass spectrometry and proton NMR as H type 1 pentaglycosylceramide (Fucalpha2G
12 y and lectin binding, mass spectrometry, and proton NMR.
13 ination of chemical, mass spectrometric, and proton-NMR analyses, the GPLs from M. habana were determ
14 nt with the pH dependence of Cu(II) binding, proton NMR spectroscopy indicates that the histidine res
15                                  Analysis by proton NMR indicates that the mycolic acids of the cmaA2
16 the center of the helix has been analyzed by proton NMR spectroscopy and restrained molecular dynamic
17  indication of a diamagnetic ring current by proton NMR spectroscopy, but addition of TFA gave rise t
18 also showed large diatropic ring currents by proton NMR spectroscopy that were comparable to true por
19 yrins show strong diatropic ring currents by proton NMR spectroscopy where the internal CH gives a re
20 on at the new carbinol center was deduced by proton NMR analysis of (R)- and (S)-Mosher [methoxy(trif
21 tuted forms of these have been determined by proton NMR spectroscopy.
22 catalytic diad has been observed directly by proton NMR.
23 hydroxyl substituent has been established by proton NMR and several X-ray structure determinations.
24 methanesulfonic acid in DMSO and followed by proton NMR.
25 uantification of blood plasma metabolites by proton NMR spectroscopy is complicated by the presence o
26 henacyclobutane intermediate was observed by proton NMR spectroscopy at low temperature.
27 rins showed strongly diatropic properties by proton NMR spectroscopy where the differences in chemica
28 oxybenziporphyrins showed chemical shifts by proton NMR spectroscopy that were consistent with weakly
29 xation is statistical and strong as shown by proton NMR characterization, electrospray mass spectrome
30                  We have previously shown by proton NMR that horse serum butyryl cholinesterase, like
31 es with paraquat derivatives were studied by proton NMR spectroscopy, mass spectrometry, and X-ray an
32 tion in a monolayer film has been studied by proton NMR spectroscopy.
33                      Here, we use side-chain proton NMR relaxation dispersion measurements, X-ray cry
34 h in-solution studies showing characteristic proton NMR upfield shifts and optical properties indicat
35  (obtained by size-exclusion chromatography, proton NMR and multiple-angle laser light scattering) an
36                                  Comparative proton NMR studies have been carried out on high-spin an
37 ted chondroitin sulfate (OSCS) contaminants, proton NMR spectral data for heparin sodium active pharm
38 (NV) center in diamond as a sensor to detect proton NMR in an organic sample located external to the
39  dichroism spectroscopy, and one-dimensional proton NMR experiments suggest KR7 primarily targets the
40 te applicability of a simple one-dimensional proton NMR method that exploits enhanced spin diffusion
41 ed at equilibrium by low pH; one-dimensional proton NMR spectra at pH 2.5 demonstrate that monomers e
42                              One-dimensional proton NMR spectra of complex solutions provide rich mol
43 ular dichroism spectroscopy, one-dimensional proton NMR spectroscopy, and X-ray crystallography, as w
44 tegral glycan sequencing and one-dimensional proton NMR.
45          One-dimensional and two-dimensional proton NMR and electron microscopy studies performed on
46 gar protons were assigned by two-dimensional proton NMR.
47                                  A downfield proton NMR resonance, at 17-18 ppm, was observed in the
48             The one-dimensional exchangeable proton NMR spectrum shows resonances expected for imino
49 ase triple is proposed based on exchangeable proton NMR data, where U23 forms a base pair with A27 in
50 e one-dimensional, two-dimensional, and EXSY proton NMR studies.
51                     High-field and low-field proton NMR spectroscopy were used to analyse lipophilic
52  a four-coil system has been implemented for proton NMR at 250 MHz using a wide-bore magnet, with an
53                               High frequency proton NMR spectra for two members of the prolyl oligope
54 n/deuterium isotope effect was observed from proton NMR at the active site histidine imidazole ring o
55 riminant analyses of metabolic profiles from proton NMR spectroscopy correctly classified more than 8
56                                 Furthermore, proton NMR analysis indicated that this neutral lipid pr
57  meso-protons for these metal complexes give proton NMR chemical shift values similar to those for th
58                                        Imino proton NMR data provided evidence that elements of the f
59                                        Imino proton NMR experiments provide evidence for possible hyd
60                                        Imino proton NMR indicates that this is partly because the str
61                                        Imino proton NMR spectra were also measured for two systems an
62      Ribonuclease mapping of T4-32 and imino proton NMR experiments of T4-35 show that both sequences
63                                 UV and imino proton NMR spectral observations indicated pronounced di
64 , equilibrium ultracentrifugation, and imino proton NMR, we are able to show that these modifications
65 atches, were studied by UV melting and imino proton NMR.
66 l loops were studied by UV melting and imino proton NMR.
67 om UV experiments were corroborated by imino proton NMR studies that show proton exchange rates, chem
68              The temperature-dependent imino proton NMR spectrum of oxoG modified DNA confirms the de
69                        One-dimensional imino proton NMR and circular dichroism spectra of the modifie
70 ed by optical melting, one-dimensional imino proton NMR, and one-dimensional phosphorus NMR.
71                For selected sequences, imino proton NMR provides evidence that the desired duplex for
72  of the dienolate intermediate to isomerase, proton NMR detects a highly deshielded resonance at 18.1
73 nsities of the 1deltaPAH and 1deltaPA methyl proton NMR resonances is nearly constant while, (3) line
74  system using a 0.5-mm column with a 500-MHz proton NMR spectrometer using a custom NMR probe with an
75               The method is based on 600 MHz proton NMR spectra of individual serotype-specific polys
76 tion in the global structure on the basis of proton NMR and X-ray crystallographic analyses.
77 as demonstrated three-dimensional imaging of proton NMR with resolution on the order of 10 nm, but wi
78 tigated in acetonitrile solution by means of proton NMR titrations.
79      A method for spectral simplification of proton NMR spectra of blood plasma is presented.
80 nd syn diastereomers, respectively, based on proton NMR and circular dichroism spectroscopy.
81 performance liquid chromatography (HPLC), or proton NMR spectroscopy ((1)H NMR), depending on the sam
82                               Vicinal proton-proton NMR couplings and ab initio quantum mechanics hav
83                               Vicinal proton-proton NMR couplings have been used to compare the influ
84 lfoxide (DMSO) solutions from vicinal proton-proton NMR J couplings ((3)J(HH)).
85 metaquomyoglobin was determined by repeating proton NMR titrations as a function of temperature and u
86 structure was analyzed using high-resolution proton NMR spectroscopy and molecular dynamics simulatio
87                            A high-resolution proton NMR study has been performed on a hybrid duplex f
88 nts in combination with diffusion-sensitized proton NMR spectroscopy.
89 ral Arg residues have very downfield-shifted proton NMR responses, indicating that they stabilize the
90 relate with changes in isotropically shifted proton NMR resonances assigned to cluster ligands.
91                            Sequence-specific proton NMR assignments and distance and angle constraint
92 with frozen storage and, with solution state proton NMR, distinct "free" and "bound" states were disc
93                         Variable-temperature proton NMR studies display the fluxionality of the iron-
94                 This study demonstrates that proton NMR spectroscopy is capable of detecting EtG and
95                                          The proton NMR analysis of the deletion mutant suggested tha
96                                          The proton NMR shows a broad resonance corresponding to endo
97                                          The proton NMR spectra for the tripyrrane dibenzyl esters in
98                                          The proton NMR spectra for these compounds showed strong dia
99                                          The proton NMR spectra for these tripyrrolic intermediates s
100                                          The proton NMR spectrum confirms the presence of a strong di
101                                          The proton NMR spectrum for this complex also shows the rete
102                                          The proton NMR spectrum of the bipyridyl ferrous cyanoheme c
103                                          The proton NMR spectrum of the transition-state analogue com
104                                          The proton NMR spectrum showed that the carbachlorin is high
105 ed highly diatropic characteristics, and the proton NMR spectrum gave resonances at -5.74 and -6.24 p
106  multiple bands in the Soret region, and the proton NMR spectrum showed that it has a reduced diamagn
107 A, but not random DNA, caused changes in the proton NMR spectra of VDRE DNA indicating specific inter
108 tion, has much less signal dispersion in the proton NMR spectra than LaP3W, indicating that the Trp r
109                                       In the proton NMR spectrum for the dication, the internal CH wa
110                              Analysis of the proton NMR spectra for the tripyrranes indicates that th
111                             This revises the proton NMR spectra of ieodomycin B.
112                   At lower temperatures, the proton NMR spectrum of the asymmetrically substituted ca
113 BPG in the neutral pH range according to the proton NMR and oxygen affinity studies presented here.
114  substituents upfield beyond -1 ppm in their proton NMR spectra.
115 s shown by moderate downfield shift of their proton NMR resonances and their sensitivities to the sol
116 ew Zealand and Australia were analysed using proton NMR spectroscopy coupled with chemometrics.
117  the first report of EtG determination using proton NMR spectroscopy.
118 rmined experimentally in DMSO solution using proton NMR spectroscopy.
119                                        Using proton-NMR profiling coupled to suitable quantification
120 ions, DFT, and empirical modeling of vicinal proton NMR spin-spin couplings.
121 e (WT) mice, which were obtained via in vivo proton NMR spectroscopy (9.4 Tesla).
122                         One candidate, water proton NMR (wNMR), is briefly discussed.
123                     In the presence of zinc, proton NMR NOESY spectra showed that the protein possess

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