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1 e five methionines in rt-PA were found to be oxidizable.
2       Free radical chain oxidation of highly oxidizable 7-dehydrocholesterol (7-DHC), initiated by 2,
3 ein molar ratios at which 50% degradation of oxidizable amino acids (i.e., Met, Tyr, Trp, His, Lys) a
4 e anSMEcpe acts on peptides containing other oxidizable amino acids at the target position.
5 mpound I depends on the number of endogenous oxidizable amino acids in proteins.
6 ed the inactivation in the presence of a non-oxidizable analog, 3-thiaglutaryl-CoA, which competes fo
7 ctor kappaB (NF-kappaB), whereas stable, non-oxidizable analogs were less active, with a correlation
8 two non-essential cysteine residues with non-oxidizable analogs, C6A/C111S, to produce apo-AS-SOD.
9 xcludes the interference from the coexisting oxidizable analytes.
10 nsitive chromatographic detection method for oxidizable analytes.
11 remely mild, and the reaction is tolerant of oxidizable and acid-labile functionality, multiple heter
12 enation of alcohols in the presence of other oxidizable and Lewis basic functional groups.
13 e diverse methyl(hetero)arenes, tolerance of oxidizable and nucleophilic functional groups, precision
14 action (>60%) of the elements was present in oxidizable and residual fractions while the bioavailable
15 ess of the methodology was the use of easily oxidizable arylboronate complexes.
16 better access of the catalyst redox sites to oxidizable bases in the damaged, partly unwound DNA.
17 ty of this transformation is that the easily oxidizable benzyl/primary alcohol group remains unhamper
18 device was realized by integrating a lactate-oxidizable BFC anode, oxygen-reducible BFC cathode, and
19 Pomegranate seed oil (PSO) is rich in highly oxidizable bioactive conjugated linolenic acids (cLnA),
20 ence in the physiological range, from easily oxidizable biospecies, e.g. uric acid and ascorbic acid.
21  ligand, in conjunction with the presence of oxidizable C-H bonds in the substituents, crucially affe
22 fraction organic carbon (LFOC), permanganate-oxidizable carbon (POXC), and dissolved organic carbon (
23               Soil texture, pH, permanganate oxidizable carbon, and chemical properties including Cu,
24 s included microbial abundance, permanganate-oxidizable carbon, carbon fractions, pH, and water infil
25 t be converted to an isomer that contains an oxidizable carbon-nitrogen bond.
26  showed clear spikes due to the detection of oxidizable cargo within EVs from MCF7 and A549 cells.
27 , the developed fluorescent probe bearing an oxidizable catechol moiety demonstrated selective turn-o
28 rogenase II and fumarate reductase, the most oxidizable components of the respiratory chain in vitro,
29                Variations in the presence of oxidizable components were observed when the total cargo
30  through air to a second particle bearing an oxidizable compound-a particulate-based approach with so
31 sors for the analysis of the main white wine oxidizable compounds as well as for the rapid fingerprin
32 copy suggested that the majority of H(2)O(2)-oxidizable copper is located in the periplasm; therefore
33 n expressed as a 79-residue protein with the oxidizable Cys(56) replaced with Ser.
34   NSC lineage commitment is dependent on the oxidizable cysteine-43 residue of Igfbp2.
35 ylene-vinylene)s as conduits between readily oxidizable diarylamine termini.
36                                          The oxidizable directing group N-methoxyamine (NHOMe) assist
37 ct an electron from guanine, the most easily oxidizable DNA base.
38 evel, that embedding [(Se(IV)O3)2](4-) as an oxidizable dopant in the cluster core allows the oxidati
39 he glycogen shunt prior to conversion to the oxidizable energy fuel L-lactate.
40         While in vitro studies show that the oxidizable energy substrate, lactate, is a preferred fue
41 ) appears to be in a relatively hydrophilic, oxidizable environment compared with Cys(127) and Cys(28
42 s will be predominantly formed by only a few oxidizable enzymes.
43 lycerol oil-in-water emulsions containing an oxidizable fluorescent dye, BODIPY(665/676), was blended
44 uminescence of cyclic peroxides activated by oxidizable fluorescent dyes is an example of chemically
45 he large quantity of isoCr(III) in an easily oxidizable form competes with sample Cr(III) in the oxid
46 in the exchangeable (As, Mn, and Ba) and the oxidizable forms (Pb), whereas greater than 97% of metal
47              Volcanism is required to supply oxidizable fresh basalt and reduced gases to the atmosph
48                The catalyst system tolerates oxidizable functionality and is selective for the dehydr
49 chemoselectivity (that is, tolerance of more oxidizable functionality) remains an unsolved problem.
50 zylic C(sp(3))-H position despite the highly oxidizable hydrazide group remaining intact in the react
51 f thiosalt-contaminated mine water and other oxidizable inorganic-impacted wastewaters.
52 d thus minimized the potential response from oxidizable interferences.
53 ntration, (ii) high concentrations of easily oxidizable interfering compounds in the sample, and (iii
54     7-Dehydrocholesterol (7-DHC) is the most oxidizable lipid molecule reported to date, with a propa
55 alpies (BDEs) of organic model compounds and oxidizable lipids (R[bond]H) and the carbon[bond]oxygen
56 is found by this clock to be one of the most oxidizable lipids known.
57 pplication of JA caused a quantal release of oxidizable material from gland cells monitored as distin
58 uestions concerning Nature's selection of an oxidizable Met residue to facilitate C-H oxygenation.
59 nificant role, and an insufficient supply of oxidizable metabolic fuels inhibits reproduction in fema
60 rcome limitations associated with the use of oxidizable metal films.
61 t stress exposure, and its catalase contains oxidizable methionine (Met) residues.
62                                          The oxidizable methionine residues were found to be relative
63  equilibration, within P450 active sites, of oxidizable methyl groups located between 3 and 10 A apar
64 lly reactive sites, such as electrophilic or oxidizable moieties.
65 ractions demonstrated the presence of highly oxidizable molecular species containing C(22:6) fatty ac
66 me provides direct measurements of cytosolic oxidizable molecules in single mammalian cells.
67             Carbon-fiber amperometry detects oxidizable molecules released by exocytosis.
68 e peptides for quantitation, considering the oxidizable nature of tyrosine.
69 ynitro-aryl-pyrazole/imidazoles with readily oxidizable -NH(2)/NO(2)/NHNO(2)/diazo functional groups
70 ns of polyphenolic antioxidants can form new oxidizable -OH moieties in their polymeric products resu
71                                              Oxidizable olefins, such as styrenes, trisubstituted ali
72 ed that lepidocrocite-bound Sb(V) was mostly oxidizable or nonreactive (i.e., bound in sulfides, orga
73                  It demonstrates that easily oxidizable organic carbon (EOC, 55-84%) and microbes (16
74  (TN), total phosphorus (TP), turbidity, and oxidizable organic matter (OOM).
75                 The peroxide product and the oxidizable p-aminohippuric and uric acids are detected e
76  proximal tryptophan was replaced with a non-oxidizable phenylalanine exhibited higher catalase activ
77 suitable for purifying water of recalcitrant oxidizable pollutants.
78     GCIB-SIMS also reliably mapped losses of oxidizable polyunsaturated CL species (but not the oxida
79 e two asymmetrically positioned fatty acyls: oxidizable polyunsaturated fatty acids (PUFA) attached p
80 els the GBM lipidome, notably redistributing oxidizable polyunsaturated fatty acids into distinct lip
81 rated a nonrandom distribution of individual oxidizable (polyunsaturated fatty acid containing) and n
82 llylic C-H oxidation in the presence of four oxidizable positions.
83 analysis for 41 PFAS and by a modified total oxidizable precursor (dTOP) assay to capture also unknow
84 mmonly used methods for PFAS analysis: total oxidizable precursor (TOP) assay and LC-high resolution
85                                    The total oxidizable precursor (TOP) assay and suspect screening a
86                                    The total oxidizable precursor (TOP) assay has been extensively us
87                                    The total oxidizable precursor (TOP) assay revealed the presence o
88 and ionic PFASs, respectively, and the total oxidizable precursor (TOP) assay was used to quantify pr
89  adsorbable organic fluorine (AOF) and total oxidizable precursor (TOP) assay were found to provide o
90  discovered new end products through a total oxidizable precursor (TOP) assay.
91 ss spectrometry (HRMS) and an improved total oxidizable precursor (TOP) assay.
92 e precursors in each fraction with the total oxidizable precursor (TOP) assay.
93 d test their transformation during the total oxidizable precursor (TOP) assay.
94 rated by precursor oxidation using the total oxidizable precursor (TOP) assay.
95 hotocatalysis (UV/TiO(2)) as a further total oxidizable precursor approach (PhotoTOP) to characterize
96 ned by mass balance analysis using the total oxidizable precursor assay and detection of 6:2 fluorote
97                                    The total oxidizable precursor assay interpreted using Bayesian in
98 based on the results of hydrolysis and total oxidizable precursor assay.
99 ferred using Bayesian inference on the total oxidizable precursor assay.
100  with concentrations determined by the total oxidizable precursor assay.
101                           Results from total oxidizable precursor assays conducted using groundwater
102        Leaching experiments and direct total oxidizable precursor assays revealed the presence and le
103 e concentration range (~10-10(5) ng/L; total oxidizable precursors (TOP) ~10(2)-10(5) ng/L, total flu
104 oncentration range (~0.01 to 100 mg/L; total oxidizable precursors (TOP) ~4000 to 10000 mg/L).
105 ), extractable organic fluorine (EOF), total oxidizable precursors (TOP), and selected target PFAS, t
106 ers comprising total fluorine (TF) and total oxidizable precursors (TOPs) indicate that no significan
107 high-resolution mass spectrometry, and total oxidizable precursors assay) in a three-step suspect scr
108 spectrometry techniques as well as the total oxidizable precursors assay.
109 )(*) oxidation greatly expanded the scope of oxidizable precursors.
110 he EOF can be explained by targeted PFAS and oxidizable precursors.
111 t herein a new class of donepezil-based "bio-oxidizable" prodrugs 1 designed to be converted into dua
112  explosives are reduced electrochemically to oxidizable products such as hydroxlamines and nitrosamin
113 mixtures containing arachidonate as the only oxidizable PUFA, but yields of these biologically active
114 nese(II) complex with a ligand containing an oxidizable quinol group serves as a turn-on sensor for H
115         Photosynthesis relies on many easily oxidizable/reducible transition metals found in the meta
116 ino acid residues to the corresponding, less oxidizable residues in lignin peroxidase (LiP) resulted
117 e distal histidine, or tryptophan 7 with non-oxidizable residues.
118 d predominantly at the sn2 position, and non-oxidizable saturated/monounsaturated acids (SFA/MUFA) lo
119  of the capacitance increases, no release of oxidizable secretory products was detected.
120 iggered by uncaging Ca2+, and the release of oxidizable secretory products.
121 random character independent of abundance of oxidizable species and included only one mitochondria-sp
122                                    The three oxidizable species are detected at the downstream gold-c
123 m ascorbate, urate, acetaminophen, and other oxidizable species are greatly diminished.
124                            Removal of easily oxidizable species from the solution causes the measured
125 l to the concentrations of the reducible and oxidizable species of a redox couple, respectively.
126 re were differences observed in the types of oxidizable species present within EVs from MCF7 and A549
127 n electrodes are useful for the detection of oxidizable species with cyclic voltammetry.
128 not due to the fusion of granules containing oxidizable substances.
129        The dissociation constants of the non-oxidizable substrate analogs, 3-thiaglutaryl-CoA and ace
130  storing lungs inflated with oxygen and with oxidizable substrate improves results of lung transplant
131 thesis as the addition of the cell penetrant oxidizable substrate methyl-pyruvate was sufficient to m
132 itol medium containing 10 mM Pi and ethanol (oxidizable substrate), yeast mitochondria accumulate lar
133  in the presence and absence of an exogenous oxidizable substrate.
134 n channel closes, thereby preventing ADP and oxidizable substrates from being taken up into mitochond
135 nhanced by the presence of non-nucleophilic, oxidizable substrates such as 1,4-cyclohexadiene (M = Cu
136 ficient in (i) chemotaxis to several rapidly oxidizable substrates, (ii) taxis to terminal electron a
137  mitochondria, after incubation with ADP and oxidizable substrates, gave similar results.
138  sluggish oxidant, reacting only with easily oxidizable substrates, such as PPh(3) or 2-phenylpropion
139                   In the absence of suitable oxidizable substrates, the peroxidase reaction of copper
140 osphorylating respiration in the presence of oxidizable substrates.
141 native electron acceptors, and chemotaxis to oxidizable substrates.
142 s, based on the electrochemical oxidation of oxidizable surrogate peptides, followed by mass spectrom
143 ully achieving higher luminescent and easier oxidizable syn- syn bis[1]benzothieno[1,4]thiazines.
144 ric current that correspond to exocytosis of oxidizable transmitter from individual vesicles, i.e., q
145 hnique to cells that do not normally secrete oxidizable transmitters.

 
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