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1 ere brominated and iodinated dyes were photo-oxidized.
2 neighboring Se(2-) ligands, and Ag(+) is not oxidized.
3 ectrode area of a three-electrode system and oxidized.
4                                  TET enzymes oxidize 5-methylcytosine (5mC) to 5-hydroxymethylcytosin
5 dy suggested that PviPRX9 has the ability to oxidize a broad range of phenylpropanoids with rather si
6  effectors of actin that stereo-specifically oxidize actin's M44 and M47 residues to induce cellular
7               These mutants also lost chitin-oxidizing activity, which is typically observed for C1/C
8 ly, reactions with NOB yielded an additional oxidized adduct, the sulfonamide.
9                          These U(IV) species oxidize again when exposed to air.
10  an oxidation occurs without the need for an oxidizing agent and hence without the waste formation th
11 ions and simultaneously offering a source of oxidizing agents for combustion of reactive nanomaterial
12                         The effects of these oxidizing agents on the molecular, physicochemical, ther
13                     Addition of reducing and oxidizing agents respectively increased and decreased do
14 echanisms of starch oxidation with different oxidizing agents, including sodium hypochlorite, hydroge
15 ndogenous ROS levels and hypersensitivity to oxidizing agents.
16 a-MoO3-x(R-MoO3-x) and compare it with fully oxidized alpha-MoO3 (F-MoO3).
17 trated, first, by its ability to efficiently oxidize an array of aromatic and aliphatic aldehydes, in
18                           Anaerobic ammonium oxidizing (anammox) bacteria own a central position in t
19  pathway is mainly responsible for repairing oxidized and abasic sites into DNA.
20 lyst (State I); next, organic substrates are oxidized and degraded by serving as electron donors to r
21 hane where the carbon atom of the product is oxidized and has a FOS less negative than -IV.
22 products are both enhanced at the borders of oxidized and metallic surface regions.
23 easurement of reactive mercury (RM = gaseous oxidized and particulate bound Hg), was tested.
24           Differential comparison of DRIN in oxidized and reduced states reveals chains of residue in
25 ecule, we switch the redox group between the oxidized and reduced states, leading to reversible switc
26 ndin dehydrogenase (15-Pgdh) activity, which oxidizes and inactivates Delta(12)-PGJ2 and 15d-PGJ2 In
27 mple volume was imaged stepwise, first under oxidizing and reducing atmospheres (imitating calcinatio
28 um oxidation state, when alternating between oxidizing and reducing conditions.
29 nucleotides into p-ATP monolayers previously oxidized, and the covalent binding of amino-oligonucleot
30 ular stress, the clusters of mitoNEET become oxidized, and the formed [2Fe-2S](2+)-mitoNEET species r
31  gene families absent from all other ammonia-oxidizing archaea and, for most of these gene families,
32 s and whole water samples that is capable of oxidizing aromatic carboxylates.
33 ies: a naturally occurring variant, H50Q; an oxidized aS in which all methionines are sulfoxides (aS4
34                                       HCA is oxidized at a rate that is 12.6 times slower than BPA an
35                                Ammonia (NH3)-oxidizing bacteria (AOB) emit substantial amounts of nit
36 retreatment was treated by enriched ammonium oxidizing bacteria (AOB) in suspended sludge SBR at 12 d
37 n the expression of the amoA gene in ammonia-oxidizing bacteria (AOB) in the DMPP-amended treatments.
38                      The activity of ammonia oxidizing bacteria (AOB), however, typically decreases w
39  challenge is to exclusively enrich ammonium-oxidizing bacteria (AOB).
40                      Some arsenite [As(III)]-oxidizing bacteria exhibit positive chemotaxis towards A
41 portionating bacteria, and remarkably sulfur-oxidizing bacteria were also detected.
42                   With the pH shift, nitrite oxidizing bacteria were not further detected, but nitrou
43  relative abundances of ammonia- and nitrite-oxidizing bacteria, identified via metagenomic analysis.
44 tic birnessite or inoculated with the Mn(II)-oxidizing bacterium Leptothrix cholodnii.
45 ation from catalytic water splitting to a H2-oxidizing bacterium Xanthobacter autotrophicus, which pe
46 induce point mutations by mis-replication of oxidized bases and other lesions in the genome.
47 replicating chromatin, and allow repair when oxidized bases are induced in the genome.
48  chaperones sequester the repair complex for oxidized bases in non-replicating chromatin, and allow r
49  Regulation of the BER pathway for mutagenic oxidized bases, initiated by NEIL1 and other DNA glycosy
50 (*-), indicating that SO4(*-) preferentially oxidized benzene via pathways involving fewer hydroxylat
51 esponse in microbial communities involved in oxidized biodiesel compound biodegradation.
52  the Sec61 protein-conducting channel, while oxidized Bip (Kar2) inhibits transport.
53 states in solution, but evidence of a stable oxidized Bk chelate has so far remained elusive.
54 ivity, which is typically observed for C1/C4-oxidizing, but not for C1-oxidizing, cellulose-active LP
55  243, 244, 245, and 248 were most frequently oxidized by catechol/Cu(2+)/NADPH with relative oxidatio
56 se it is preferentially and regioselectively oxidized by CYP3A4.
57          Contrastingly, VC was metabolically oxidized by ethenotrophs in low-TOC sediments with low r
58 volved in the repair of periplasmic proteins oxidized by hypochlorous acid.
59 .7% of the dissolved methane was aerobically oxidized by microbes and a minor fraction (0.07%) was tr
60 nic compounds in the atmosphere, are readily oxidized by ozone.
61 he proximal C-gamma(sp(3))-H bonds have been oxidized by palladium-catalyzed acetoxylation reaction.
62 entification of specific amino acid residues oxidized by reactive oxygen species provides insights in
63  to form an aryl radical anion which is then oxidized by the [4Fe-4S](+2) cluster.
64 rbon exceeded the amount that could be fully oxidized by the available oxygen.
65 nd the pyridine base, and the adduct is then oxidized by the ferrocenium in a bimolecular MS-CPET ste
66  and yet the mechanisms by which sulfurs are oxidized by these enzymes are unknown, in part because i
67 eries of O-type species (O(MeAN)-LA) able to oxidize C-H and O-H bonds.
68  that graphene nanosheets (both pristine and oxidized) can produce holes (pores) in the membranes of
69                                         H2O2 oxidizes capping agent CSH, modulating the growth of CSH
70 er fasting RQ) and/or an impaired ability to oxidize carbohydrate during feeding or insulin-stimulate
71                   Photoautotrophs assimilate oxidized carbon obtained from one of two sources: dissol
72                                    The Tyr67-oxidized/carbonylated protein has a vacant distal ligati
73 observed for C1/C4-oxidizing, but not for C1-oxidizing, cellulose-active LPMO10s.
74 with 2,2'-bipyrazine backbones were found to oxidize chloride ions in acetone solution.
75 esponse to 27-hydroxycholesterol (27OHC), an oxidized cholesterol metabolite associated with neurodeg
76  in the recruitment of endogenous XRCC1 into oxidized chromatin we have established 'isogenic' human
77 A2gamma is responsible for the hydrolysis of oxidized CL and subsequent signaling mediated by the rel
78                           In sharp contrast, oxidized CLs were readily hydrolyzed in mitochondria fro
79 parison to 13-hydroxy-octadecenoic acid from oxidized CLs.
80 O2 to open a cobalt coordination site and to oxidize Co(II) to Co(III), as evidenced by operando X-ra
81 ases that contained both near-zerovalent and oxidized Co species, in addition to reduced and oxygenat
82                                  This doubly oxidized Co(IV)2 state may be captured in a Co(III)2(IV)
83 ngle collisions of energetic water ions with oxidized cometary surface analogues.
84 t topology and copper binding of a manganese oxidizing complex, and describe early stage formation of
85 tive juvenile recovery assay, indicating the oxidized compound is not required for the food signal.
86 um-induced inflammation is the production of oxidized compounds by infiltrating neutrophils.
87 sistent with this factor representing highly oxidized compounds.
88 ay mineral formation may have occurred under oxidized conditions conducive to the destruction of orga
89 ls such as nontronite can form rapidly under oxidized conditions, which could help explain low concen
90  cysteines do not form disulfides, but under oxidizing conditions they are highly amenable to modific
91                                        Under oxidizing conditions, immobilized chromium reduced under
92 ted for several months after introduction of oxidizing conditions, presumably due to the presence of
93 nd thereby inhibits matrix production during oxidizing conditions.
94 ium precipitates to remain immobilized under oxidizing conditions.
95 yclic carbenes and its one- and two-electron oxidized congeners.
96                             Various forms of oxidized copper have been demonstrated as electrocatalys
97 here the majority of efforts has been to use oxidized copper-based materials.
98 active catalyst core together with partially oxidized Cu species was unraveled.
99 alize primarily in Cu(3d) orbitals, formally oxidizing Cu(+) to Cu(2+), in Ag(+):CdSe NCs they locali
100 igand to olefin and sulfide sites as well as oxidize cyclohexadiene substrates to benzene in a formal
101 ps on the transmembrane domain and the NADPH-oxidizing dehydrogenase domain.
102                           The distinction of oxidized di- and triterpenes, for example, is hindered b
103             We investigated SOA formation by oxidizing dilute, ambient-level exhaust concentrations f
104 lites can react with metal ions and NADPH to oxidize DNA or participate in SN2 reactions to form cova
105 H to form reactive oxygen species (ROS) that oxidize DNA.
106          Furthermore, there was evidence for oxidized DNA lesions, double-strand DNA strand breaks, a
107 pyrimidinic endonuclease 1 (Ape1), the major oxidized DNA repair enzyme.
108                       The quinones, known to oxidize DTT in the efficiency order of PQ > 5H-1,4NQ > 1
109 xpected considering the low concentration of oxidized dyes (less than 1 in 100,000) under full solar
110 ak intermolecular interactions between photo-oxidized dyes and the electrolyte can impact device phot
111 10 h, although NO and NO2 may have exhibited oxidizing effects (e.g., exposure to 250 ppmv NO/N2 resu
112  redox shift from originally reducing toward oxidizing environments, when nitrate input has consumed
113 tive sites are stable up to 800 degrees C in oxidizing environments.
114  study evaluated the effects of electrolyzed oxidizing (EO) water treatment on the removal of pestici
115  is proposed in which propionate 2 relays an oxidizing equivalent from a coproheme compound I interme
116 l-established, how cells cope with an overly oxidizing ER remains largely undefined.
117 ly, enrichment and isolation of metabolic VC-oxidizing ethenotrophs was successful only from the low-
118                      All starved cells could oxidize exogenous glutamine, whereas the capacity for ox
119  FAD chromophore, which is most likely fully oxidized (FADox) in the dark state and photoreduced to t
120 e most reactive, whereas the ortho isomer is oxidized fastest in nonpolar solvents.
121 ng et al. (2016) show that endothelial cells oxidize fatty acids to produce acetyl-CoA for epigenetic
122 s, diglycerides, fatty acids, ceramides, and oxidized fatty acids, as well as low levels of SAMe and
123 ubsequent signaling mediated by the released oxidized fatty acids.
124       Recently, inhibition of the release of oxidized fatty acyl chains from CL by the calcium-indepe
125                             2 was capable of oxidizing ferrocene and weak O-H bonds upon activation w
126 ation are sources of Hg to the Arctic in its oxidized form (Hg(ii)).
127 annulenoid macrocycle and its [38]annulenoid oxidized form display residual macrocyclic ring currents
128 at CuZ degrees is the catalytically relevant oxidized form of N2OR.
129 lfonate, PFOS(-)) as doping ion by which the oxidized form of the ECP becomes hydrophobic.
130  (FHL) enzyme from Escherichia coli normally oxidizes formic acid to carbon dioxide and couples that
131 ological advances in mapping and tracing the oxidized forms of 5mC allow further dissection of their
132 patial resolution the reactivity of the more oxidized forms of Pu(V,VI) within Opalinus Clay (OPA) ro
133 equilibria between free, metal-complexed and oxidized forms of VSCs.
134 their oxidized forms, the inability of their oxidized forms to activate a water oxidation catalyst, o
135 phores arising from the instability of their oxidized forms, the inability of their oxidized forms to
136 igma(54) -dependent transcription of sulfide-oxidizing genes for sulfide removal.
137 re relatively common for controlling sulfide-oxidizing genes under sulfide stress in the Proteobacter
138 ene is adjacent to the operon of the sulfide-oxidizing genes, encoding a sigma(54) -dependent transcr
139 resence of sulfide and activates the sulfide-oxidizing genes.
140 t human non-small-cell lung cancers (NSCLCs) oxidize glucose in the tricarboxylic acid (TCA) cycle.
141                                Besides being oxidized, glucose was mainly metabolized via glycerol pr
142 mine the concentrations of reduced (GSH) and oxidized glutathione (GSSG), and it enables the calculat
143  of the NR selectivity, we treated partially oxidized graphene sheets (po-Gr) with NR to obtain po-Gr
144 and oxidation state (unmodified graphene vs. oxidized graphenes) is essential for the translation of
145  modified electrode toward reduced (GSH) and oxidized (GSSG) forms of glutathione was assessed by CV
146                           How to efficiently oxidize H2O to O2 (oxygen evolution reaction, OER) in ph
147 ge at 10 mA cm(-2), reducing CO2 into CO and oxidizing H2O to O2 with a 64% electricity-to-chemical-f
148 obins like hemoglobin and myoglobin can also oxidize H2S to thiosulfate and hydropolysulfides.
149 self provides a rare example of one electron oxidized halide species coordinated to a metal ion of po
150           But the reason that the fluids are oxidizing has been unclear.
151 globin in a dioxygenation reaction that also oxidizes hemoglobin to methemoglobin, a non-oxygen-bindi
152 ification, as well as hydroxylation of photo-oxidized heterocyclic rings, have been identified during
153                 Novel cross-links between an oxidized histidine and intact histidine, lysine, or cyst
154 lent cross-links in the HMW fractions, where oxidized histidines react with intact histidine, lysine,
155                                       Highly oxidizing hydroxyl radicals (OH(*)) are believed to be t
156 e at the lowest increase (1%) through spiked oxidized IgG1.
157 r providing monodisperse droplets, which are oxidized in a subsequent heat treatment.
158 urinimide (dipropoxy-BPI), which was readily oxidized in oxygen atmosphere yielding the corresponding
159                   We found that Prx2 becomes oxidized in PDGF-treated fibroblasts, but only when TrxR
160  9,10-dihydroanthracene is electrochemically oxidized in the presence of this cluster both via H-atom
161 d that allows the localized visualization of oxidized intermediates of PTPs inside cells during signa
162                             As thiols can be oxidized into catalytically inactive disulfides, the iso
163 ctor 2, receptor-interacting protein 1, Hemo-oxidized iron regulatory protein 2 ligase 1 (HOIL-1), HO
164  Furthermore, the generated acidic H2 O2 can oxidize l-Arginine (l-Arg) into NO for enhanced gas ther
165 ardiomyocytes in relation to the lectin-like oxidized LDL receptor (LOX-1).
166    Hypoxic lipid accumulation and storage of oxidized LDL, cholesteryl esters and triglycerides were
167 ve antibody responses, such as those against oxidized lipid epitopes, are thought to mainly derive fr
168 tandem mass spectrometry (MS/MS) to quantify oxidized lipids (glycerides, fatty acids, phospholipids,
169  platelet scavenger receptor CD36 recognizes oxidized lipids in oxidized low-density lipoprotein (oxL
170           A total of 353 nonoxidized and 559 oxidized lipids with up to four additional oxygen atoms
171 on rules of lipids into the fragmentation of oxidized lipids.
172  bacteria and their products or host-derived oxidized lipids.
173  annotation and acyl composition analysis of oxidized lipids.
174 he presence of secondary amines, which, when oxidized, lose their CO2 capture capacity.
175  receptor CD36 recognizes oxidized lipids in oxidized low-density lipoprotein (oxLDL) particles, a pr
176 receptors that internalize lipids, including oxidized low-density lipoprotein (oxLDL).
177                   Exposure of macrophages to oxidized low-density lipoprotein downregulated LKB1 in v
178                     Exposure of monocytes to oxidized low-density lipoprotein, 7-ketocholesterol, pho
179 function induced by cholesterol crystals and oxidized low-density lipoproteins (ox-LDL), potentially
180                        The lower affinity of oxidized LPMO could support its desorption after catalys
181                    This Cu metal embedded in oxidized matrix (MEOM) catalyst is consistent with obser
182 ation of either 5-methylcytosine (mC) or TET-oxidized mC bases (ox-mCs), which include 5-hydroxymethy
183 er mild conditions when incubated in various oxidizing media.
184 rmed when the electrode is able to decompose/oxidize MeOH to form (adsorbed) methoxy groups that can
185                                      Gaseous oxidized mercury (GOM) measurement uncertainties undoubt
186 fatty acid in the US diet, is a precursor to oxidized metabolites that have unknown roles in the brai
187 shkevich et al report on the use of water to oxidize methane to methanol.
188                 MsrB1-dependent reduction of oxidized methionine in proteins may be a heretofore unre
189                                 Reduction of oxidized methionine residues is catalyzed by methionine
190                                         TET1 oxidizes methylated cytosine into 5-hydroxymethylcytosin
191 ysis, release of Pi, and dissociation of the oxidized, MgADP-bound Fe protein from the MoFe protein.
192 formation by the different clades of ammonia-oxidizing microbes.
193 essential role in producing MnOx minerals by oxidizing Mn(2+)(aq) at rates that are 3 to 5 orders of
194                     Thermal treatment of the oxidized MOF causes homolytic cleavage of the Co(III)-ha
195 s a major hepatic and intestinal enzyme that oxidizes more than 60% of administered therapeutics.
196                      Here we show that Mical-oxidized (Mox) actin can undergo extremely fast (84 subu
197 micro solid-phase extraction with the use of oxidized multiwalled carbon nanotubes and batophenanthro
198 e of this work which offers access to highly oxidized natural products from an abundant and renewable
199 NH2OH to NO2(-) We provide evidence that HAO oxidizes NH2OH by only three electrons to NO under both
200  global N-cycle, as they have the ability to oxidize NH4(+) to N2 under anoxic conditions using NO2(-
201  analyzed for G6PD enzyme activity, cellular oxidized nicotinamide adenine dinucleotide phosphate/NAD
202 ley non-symbiotic hemoglobin gene HvHb1 that oxidizes NO to NO3(-).
203 able DNA problems caused by incorporation of oxidized nucleotides into nascent DNA followed by incomp
204 ent cascade reaction employing an internally oxidizing O-N bond as a directing group.
205              The reaction is chemoselective, oxidizing one alkene in the presence of others, and is c
206 ugs are supposed to preferentially stimulate oxidized or heme-depleted, but not native sGC.
207 active functional groups that are capable of oxidizing or reducing organic compounds and of generatin
208 luable insight into the ability of Fe(V)O to oxidize organic molecules.
209 ical production of sulphuric acid and highly oxidized organic compounds in maintaining atmospheric NP
210 ile organic compounds (SVOC) and even highly oxidized organic molecules (HOMs) present in the parts p
211 ulibacter) Acc-SG2, and the dominant ammonia-oxidizing organism was Nitrosomonas oligotropha; however
212  followed the population dynamics of ammonia oxidizing organisms and reactor performance in synthetic
213 ogenesis was observed following ingestion of oxidized OS or latex beads.
214 urated Quincy sand (QS) columns amended with oxidized (OX) or unoxidized (UO) pine wood (PW) or pine
215                                         Less-oxidized oxygenated OA has the lowest water-solubility a
216                                         More-oxidized oxygenated OA is dominantly water-soluble, cons
217 xogenous glutamine, whereas the capacity for oxidizing palmitate was limited to human hepatocarcinoma
218 dies, these observations suggest that iodine oxidizes Pd prior to addition of the amine substrate.
219 stem for oxidative cross-coupling of readily oxidized phenols with poor nucleophilic phenolic partner
220 d show that they are produced by PAF-AH2, an oxidized-phospholipid-selective phospholipase A2.
221 embranes and lipoproteins are converted into oxidized phospholipids (OxPL) by oxidative stress promot
222                               In particular, oxidized phospholipids (OxPls) formed under intracellula
223 urther demonstrate that exposure of HAECs to oxidized phospholipids or pro-inflammatory cytokines res
224 r-enhancing and anti-inflammatory effects of oxidized phospholipids.
225 ting the strength of ion pairing between the oxidized photocatalyst and the bromide anion and thus th
226 ron transfer precedes formation of the fully oxidized prFMN.
227 nding of H2S and its efficient conversion to oxidized products.
228 eory, aging derives from the accumulation of oxidized proteins induced by reactive oxygen species (RO
229 and involved in the reduction of periplasmic oxidized proteins.
230                          The newly generated oxidized proteoforms are shown to possess significantly
231                          Urate hydroperoxide oxidized Prx2 from intact erythrocytes to the same exten
232 ancer cell membranes encapsulating thermally oxidized PSi nanoparticles or PSi-polymer nanosystems bi
233 eviously described reactivation of end-point oxidized PTP1B, which requires both Trx1 and TrxR1.
234                                              Oxidized purine nucleotides can be inserted into DNA dur
235  we present a modified method in which NO is oxidized quantitatively to NO2 by chromium trioxide (CrO
236  with lower NOx and higher oxidants (O3) and oxidized reactive nitrogen (N2O5) aloft.
237  is comparable to the potentials of the most oxidizing redox cofactors in nature.
238           We propose, therefore, that highly oxidized, REE-rich fluids, derived from external, isotop
239 esins, and asphaltenes (SARA), was partially oxidized, resulting in a decline in saturates and aromat
240 yme able to recognize and process abasic and oxidized ribonucleotides embedded in DNA.
241 ount from 212 to 645ngg(-1) and 6-14% for an oxidized sample with a higher amount (3651ngg(-1)).
242 xidation requires NADPH oxidases (NOXs), and oxidized SHP2 co-localizes with platelet-derived growth
243 , 13776) improved the reaction conditions to oxidize similar substrates with excellent yields.
244                                 The last was oxidized slowly to the corresponding benzaldehyde 12.
245 the mantle wedge could therefore provide the oxidized source for the genesis of primary arc magmas th
246 er uses bacteriochlorophyll-a and the sulfur-oxidizing sox cluster for energy acquisition.
247 racyclophane in the neutral state and in the oxidized species (radical cations, dications and radical
248 rface proximity disfavors poisoning by CO or oxidized species.
249 losin, implicating compound I as the initial oxidizing species.
250 ous substrates with the cellular capacity of oxidizing specific substrates, namely glutamine, pyruvat
251 tion may facilitate the development of novel oxidized starches for both food and non-food application
252                            Both films of the oxidized starches, single and dual, had increased stiffn
253 an by high ATP levels; and a role for a more oxidized state (NAD(+)/NADH) in the cytosol during GIIS
254 io in INS-1(832/13) cells, indicating a more oxidized state of NAD in the cytosol upon glucose stimul
255 e and iron-sulfide bonds would stabilize the oxidized state of the [Fe4S4] clusters.
256 ation and cyclic electron flow due to a more oxidized state of the chloroplast stroma, which is cause
257 riterion requires that the ECPs are in their oxidized state, but the high charge density of this stat
258 nd two cyanide (CN(-)) ligands (e.g., in the oxidized state, Hox).
259 nd the [4Fe4S] cluster in the reduced versus oxidized state.
260                 We also demonstrate that the oxidized sterol, ergosterol peroxide, is necessary and s
261      Some heterotrophic bacteria are able to oxidize sulfide (H2 S, HS(-) and S(2-) ) to sulfite and
262 nt bacterium has the metabolic capability to oxidize sulfide yet displays reduced metabolic potential
263     Sulfite oxidases are metalloenzymes that oxidize sulfite to sulfate at a molybdenum active site.
264 range of environments, which we attribute to oxidized sulfur in PPR DOM that would increase molecular
265 vitro gastrointestinal digestion of slightly oxidized sunflower and flaxseed oils was addressed.
266 ses on commercially pure Mg with metallic or oxidized surfaces and on MgY alloy with oxidized surface
267 c or oxidized surfaces and on MgY alloy with oxidized surfaces.
268 hronic oxidative stress and recruits CK1 and oxidized TDP-43 to facilitate its phosphorylation, as se
269 east degassed magmas from Mauna Kea are more oxidized than midocean ridge basalt (MORB) magmas, sugge
270 versibly associates with the enzyme; then it oxidizes the peroxidatic cysteine, and finally, the rate
271 dA), a hitherto uncharacterized protein that oxidizes the pyocyanin methyl group to formaldehyde and
272 at hydrogen peroxide might whiten HA-AAAs by oxidizing the benzene ring in AAAs.
273              The strategy involves partially oxidizing the methionine and quantifying the oxidation l
274 rect reactions with various radical species, oxidizing themselves into radicals in the process.
275 -dependent monooxygenases (FMOs) efficiently oxidize TMA to TMAO.
276 oss-section of (3)CDOM* moieties are able to oxidize TMPD and that the complex mixture of (3)CDOM* ca
277                  These complexes can cleanly oxidize to [Ir(V) (dpyp)2 ](+) , which to our knowledge
278 ydroxyl groups of starch molecules are first oxidized to carbonyl groups, then to carboxyl groups.
279                 It was shown that Cr(III) is oxidized to Cr(VI) during toasting of bread.
280          In charge, a portion of Cu metal is oxidized to CuO, which maintains a cube-on-cube orientat
281                             Purified Hb auto-oxidized to metHb more rapidly than Hb in the hemolysate
282  metabolism by which phosphite (HPO3(2-)) is oxidized to phosphate (PO4(3-)), is the most energetical
283 he side chains of several amino acids can be oxidized to reactive carbonyls, which are often used to
284 rogen peroxide-Amplex red (AR) system (AR is oxidized to resorufinat, with the resorufin fluorescence
285 s a precipitate, whereas Sb(III) needs to be oxidized to Sb(V) before being incorporated in the new p
286         We show that various alcohols can be oxidized to the corresponding aldehydes and ketones with
287 , alpha-fluoro-beta-ketosulfides, are easily oxidized to the corresponding alpha-fluoro-beta-ketosulf
288 at cyclopalladated NO2 complexes are rapidly oxidized to the corresponding NO3 adducts on exposure to
289 y-2,2,6,6-tetramethylpiperidine (TEMPOH) was oxidized to the stable radical TEMPO by electron transfe
290 ulfuric acid mixtures, are too corrosive and oxidizing to preserve structural integrity of highly ord
291 themal, while TcALDH1 encodes an enzyme that oxidizes trans-chrysanthemal into trans-chrysanthemic ac
292 monstrate that TcADH2 encodes an enzyme that oxidizes trans-chrysanthemol to trans-chrysanthemal, whi
293 mpounds viz., triglyceride polymers, dimers, oxidized triglyceride monomers, diglycerides and free fa
294 aces and has obvious correspondence with the oxidized TTF(+) distributions in the electric fields of
295 duced form, U(IV), which is less mobile than oxidized U(VI).
296 tracted with ethyl acetate, and subsequently oxidized under basic conditions.
297 ated, irradiated (253.7 nm, 310-410 nm), and oxidized (UV-H2O2, ozone) poultry litter extracts.
298 pecies (most likely superoxide) that in turn oxidize VMAT2.
299 he dipyrramethanyl groups of azaBODIPYs were oxidized with DDQ and complexed with BF3.Et2O to obtain
300 u(IV) to more soluble Pu(III), which then re-oxidizes yielding Pu(IV) colloid.
301 c polymers - the metabolic byproduct of iron-oxidizing Zetaproteobacteria.

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