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1 C10 binding with mutant forms of Rho that are altered in
2 C10 peptide binding blocks access to OASS catalytic resi
3 C10/CCL6 neutralization also decreased the ability of IL
4 ysis rate constants of the studied FA (C8:0, C10:0>>C18:1 n-9>>C12:0>C14:0>C16:0 approximately C16:1
5 ctiveness of C18:1/C10-EPC relative to C18:0/C10-EPC (and to many other cationic lipoids) was suggest
10 (wt/wt)]; in contrast, the unsaturated C18:1/C10-EPC exhibited a lamellar-nonlamellar phase transitio
11 Indeed, FRET experiments showed that C18:1/C10-EPC exhibits lipid mixing with negatively charged me
13 ason for the superior effectiveness of C18:1/C10-EPC relative to C18:0/C10-EPC (and to many other cat
14 eoyldecanoyl-ethylphosphatidylcholine (C18:1/C10-EPC) and stearoyldecanoyl-ethylphosphatidylcholine (
15 13)C ENDOR then reveals the locations of (13)C10 and reactive (13)C11 of linoleic acid relative to th
18 l diphosphate synthase 1 (PcIDS1) yields 96% C10-geranyl diphosphate (GDP) and only 4% C15-farnesyl d
19 in, including a truncated macrolactone and a C10 E-alkene, which were 400- and 50-fold less active th
22 lectron density map surprisingly indicated a C10 hydroxyl in the adduct rather than a bromide and sug
23 ise in [Ca2+]i in response to decanoic acid (C10), dodecanoic acid (C12) and tetradecanoic acid (C14)
24 noic acid (C9), nonadecafluorodecanoic acid (C10), heneicosafluoroundecanoic acid (C11) and pentacosa
25 is able to convert medium-chain fatty acids (C10-C14) into their corresponding terminal olefins using
34 iphosphate analogues with fluorine at C2 and C10 acted as inhibitors of DCS, but intriguingly, after
37 parately exposed to a mixture of C6, C8, and C10 monoalkylated PFPAs and a mixture of C6/C6, C6/C8, a
41 tion of a cis double bond between the C9 and C10 positions of stearoyl-ACP (18:0-ACP) to produce oleo
42 ctive asymmetric aldol to install the C9 and C10 relative and absolute stereochemistry (for natural a
44 tions of the stereogenic centers C8, C9, and C10 have been determined to be the same as for migrastat
45 f the cucurbitacins, epimeric at C8, C9, and C10, 51, was synthesized via a highly regio- and stereos
48 ersible thioether linkage between Cys499 and C10 of the chromophore, providing the basis for the blue
50 f rapamycin, C10 regulator of kinase II, and C10 regulator of kinase-like, suggesting that PDGFRalpha
53 teraction (hydrogen bonds A13 NH6-C10 O2 and C10 N3-A14 NH6) stabilizing the loop structure is inferr
54 f peritoneal C10 levels with polyclonal anti-C10 antiserum during CLP-induced peritonitis negatively
57 growth factor receptor (EGFR) scFv antibody C10 was increased using molecular evolution and yeast di
60 ed rings (C6a/C6a), conformers 1A and 2B are C10 single H-bonded rings, conformers 1C and 2D are doub
61 itoring important biomarker classes, such as C10 demethylated terpanes, alphaalphaalpha-steranes, and
66 provide evidence that hydrogen(s) present at C10 of AA play a critical role in the catalysis of prost
69 (AtOASS) and the C-terminal ligand of AtSAT (C10 peptide) as a function of temperature and salt conce
70 tients with cirrhosis (Child-Pugh classes B7-C10) with demonstrated patent portal veins and without h
72 in-coated poly(bisphenol A decane ether) (BA-C10) films prepared with chloroform and tetrahydrofuran
73 uster in the intermediate size range between C10 and C20 is in apparent conflict with theoretical cal
74 ing microscopy of the molecular rotor BODIPY C10 in the membranes of live Escherichia coli bacteria t
75 uterated bis-allylic carbons to include both C10 and C13 leads to a massive increase in the PKIE for
77 xpression of antA was influenced the most by C10-HSL and to a lesser extent by other acyl-HSLs, inclu
83 ids with systematic modifications at the C2, C10, and C3'N positions were synthesized and their struc
84 and selectivities of C-C bond cleavage in C2-C10 n-alkanes on metal catalysts and provide a general d
86 fficiently deprotected and coupled to the C2-C10 amino acid fragment to provide desepoxyarenastatin A
89 ermini subunits is such that any of the C30, C10, or C4 natural acetogenins or stereoisomers thereof
90 interval: 1.24, 6.67) for shorter chain (C4-C10) fatty acid intakes demonstrated increased risk for
91 rencing 3570 possible compounds including C4-C10 perfluoro- and polyfluoroalkyl, polyfluorochloroalky
92 Here a new global emission inventory of C4-C10 perfluoroalkanesulfonic acids (PFSAs) from the life
93 olated C-terminal half of cardiac MyBP-C (C5-C10) had effects similar to those of the full-length pro
97 up was selectively introduced to the C6, C7, C10 and the central C21 position of diazafenestrane syst
101 e analyzed for a suite of PFSAs (C4, C6, C8, C10) and selected PFOS precursors (MeFOSAA, EtFOSAA, FOS
103 ification of nontargeted DADMAC C8:C8 and C8:C10, two widely used biocides previously unreported in e
107 wer limit of quantitation (LLOQ) for C8, C9, C10, C11, and C13 was determined to be 25 ng/L in water.
108 tially removed the 9-cis-ring site at the C9,C10 double bond from this substrate, providing an all-tr
109 ns (J-K), for the formation of the C5-C6, C9-C10, and C17-C18 double bonds, a Suzuki-Molander C21-C22
110 -Wadsworth-Emmons olefination to form the C9-C10 bond, and Evans methylation to install the C-8 cente
111 vity and that, in fact, engagement of the C9-C10 diol as an acetonide actually leads to notably enhan
114 tively exclude rotation around either the C9=C10, C11=C12, or C13=C14 bond show that formation of the
115 MC) fatty acids, caprylic (C8:0) and capric (C10:0) were incorporated into palm olein by 1,3-specific
118 activate IKK in mouse lung epithelial cells (C10) was inhibited and that H2O2 alone was sufficient to
119 in murine alveolar epithelial type II cells (C10) and primary lung fibroblasts confirmed that asbesto
121 howed diminished affinity for shorter chain (C10-C16) fatty acids and weak substrate-induced high spi
122 taken to define the role(s) of the chemokine C10/CCL6 in the pathogenesis of IL-13-induced alteration
125 hile this route does not provide the correct C10 stereochemistry, it showcases an efficient method to
129 ion R364H), Chinese hamster fibroblasts DC3F/C10 (mutation G503S), and human leukemia CEM/C2 cells (N
130 ese hamster DC3F cells, the TOP1 mutant DC3F/C10 cells demonstrated cross-resistance to the cytotoxic
131 singly lipophilic octanoate (C8), decanoate (C10) and dodecanoate (C12) derivatives were evaluated in
132 rmination of delta-lactones (delta-C8, delta-C10) and gamma-lactones (gamma-C6, gamma-C8, gamma-C10).
134 iganin and its unnatural diastereoisomer (+)-C10-epi-giganin has been completed in a total of 13 line
135 unsubstituted, 3'-Cl, 4'-C1, and 3',4'-diCl C10 analogues of cryptophycin-24 were prepared via total
136 proceeds through either geranyl diphosphate (C10) or trans-farnesyl diphosphate (C15), to yield monot
138 enesis of the btaI2 (luxI) allele eliminated C10-HSL accumulation and reduced lipase production.
140 In contrast, prior exposure of gB-expressing C10 cells to soluble gD did not promote subsequent fusio
141 higher level was achieved when gB-expressing C10 cells were exposed to a combination of soluble gH/gL
142 econd, fusion occurred when gH/gL-expressing C10 cells preexposed to soluble gD were subsequently coc
146 t was hypothesized that fl-C2, fl-C4, and fl-C10 adopted primarily extended molecular conformations o
147 cally with chain length for fl-C2 through fl-C10; however, fl-C15 did not follow this trend but inste
148 trates that these residues are important for C10 peptide binding and that changes at these positions
150 sphate and dimethylallyl diphosphate to form C10 prenyl diphosphates that can be elongated by the add
151 thway with unlabeled AA but abstraction from C10 predominating when the methylene group at position 1
152 pg/injection) for standard fatty acids from C10 to C24 and spanned approximately 2 orders of magnitu
157 T cells, and the conditioned medium from FSD-C10-treated microglia promoted OPC survival and oligoden
161 ogether, these findings demonstrate that FSD-C10 promotes neural repair through mechanisms that invol
165 en and the protruding angular methyl groups (C10, C13 methyls) in the beta face calls for adequate re
167 er of incorporation of fatty acids was C22:0>C10:0>C8:0, to the extent of 53%, 42.5%, 35.8%, respecti
168 s of autoxidation products (octane, hexanal, C10 hydrocarbons) and other compounds that could origina
171 the beetle larvae suggests flux control into C10 vs. C15 isoprenoids could be accomplished by these i
174 In this paper, we studied HSV entry into C10 murine melanoma cells and identified a third entry p
175 e oxides) allowed assignment at the isomeric C10 epoxy-ene carbon as Z in the new isomer and the E co
176 s anchored in the major groove of DNA by its C10 covalently linked to G4(N7) and is oriented 3' to th
178 ression in a pulmonary epithelial cell line (C10) in both log versus confluent cells and in cells aft
179 ormed alveolar type II epithelial cell line (C10), we show that alpha-quartz silica causes persistent
182 nzymatic activity, whereas poorly metastatic C10, C19, and C23 tumor cells express much lower levels.
183 ation of activity; and several monoterpenes (C10), sesquiterpenes (C15) and diterpenes (C20) have bee
186 mation of even the simplest PAH-naphthalene (C10 H8 )-via the hydrogen-abstraction/acetylene-addition
187 H6 ) intermediate together with naphthalene (C10 H8 ) under combustion-like conditions by photo-ioniz
188 l clones expressing high (C9) or negligible (C10) levels of TGFalpha were implanted into the cecal wa
190 challenged by mosquitoes infected with NF135.C10 and 4 of 5 challenged with NF54 developed parasitemi
192 ple base interaction (hydrogen bonds A13 NH6-C10 O2 and C10 N3-A14 NH6) stabilizing the loop structur
193 The tumor microenvironment of C9, but not C10, contained cells enriched in vascular endothelial gr
197 rthermore, we discovered that deuteration of C10 promotes the formation of the resolving lipid mediat
198 ble gH/gL triggered a low level of fusion of C10 cells expressing gD and gB; a much higher level was
199 of C10/CCL6 and highlight the importance of C10/CCL6 and signaling via CCR1 in the pathogenesis of t
201 re, the specificity of positive selection of C10.4 TCRtrans+ T cells was examined using a fetal thymi
202 med from the reaction of OH with a series of C10 (cyclo)alkanes, with 0-3 rings, in order to better u
204 nstrate that IL-13 is a potent stimulator of C10/CCL6 and highlight the importance of C10/CCL6 and si
206 aled that virions attached to the surface of C10 cells were localized to membrane invaginations, wher
207 While the developed asymmetric synthesis of C10 substituted anthrones is anticipated to find wider a
210 ], and retention of 3-hydroxydecanoate [3-OH C10 fatty acid]) were determined for Pseudomonas aerugin
213 zes and detects (S)-3-hydroxytridecan-4-one (C10-CAI-1), whereas Vibrio harveyi produces and detects
217 te plant growth, treatments with C6-HSL, oxo-C10-HSL, or oxo-C14-HSL resulted in different transcript
221 immortalized/cancer salivary cell lines (Par-C10, HSY, HSG), indicating significant differences betwe
223 ells with a luminescent complex, Tb/DTPA-PDA-C10, we observed DEFRET between the Tb3+ complex and ext
225 hesis with 2, we found that neryl phosphate (C10 phosphate) can be recognized by MraY/MurX to generat
226 the retinal polyene chain between positions C10 and C15 as well as the Schiff base nitrogen in the g
227 arbonyl cations 1d-4d support a degree of Pt-C10 multiple bonding, increasing in the order 3 < 4 < 2
228 a targeted null mutation of CCR1, a putative C10/CCL6 receptor, also decreased IL-13-induced inflamma
233 ion kinase, mechanistic target of rapamycin, C10 regulator of kinase II, and C10 regulator of kinase-
234 ated substitution reaction of the bay-region C10 acetoxy group in four stereoisomeric 7,8,9,10-tetraa
235 trisubstituted tetrahydrofuran representing C10-C18 of the toxin was prepared via a highly stereosel
238 xindole carboxylation (dr 5.2:1.0) that sets C10 configuration in a potential diazonamide precursor.
239 hat wild type Rho binds between five and six C10 oligomers per hexamer with KD = 0.3 microm, and five
241 the GAF domain of Cph1 predicts a C5-Z,syn, C10-Z,syn, C15-Z,anti configuration for the chromophore
242 mus and activation-related chemokine (TARC), C10), and d) constitutive (lungkine, secondary lymphoid-
244 protein cross-linking assays confirmed that C10(mut) causes the loss of C10 domain interaction with
245 In addition, in vivo evidence suggested that C10 therapy significantly reduced the amount of material
250 , Tx-67, with a succinate group added at the C10 position of Taxol, was synthesized and identified as
252 on, thereby facilitating attack of C1 by the C10-C11 double bond to produce the cis-fused Decalin S-g
253 the cytochrome P450 enzyme that cleaves the C10-C19 carbon-carbon bond of androgens to form estrogen
255 w insights into the structural basis for the C10/C12 and C12/C14 hydroxylation patterns for the 12-(Y
259 Although this mutation causes changes in the C10 domain of cMyBP-C (cMyBP-C(C10mut)), which binds to
260 lts permit us to check this structure in the C10-C11=C12-C13 region and then to check the global stru
263 ndividual short-chain IDSs (scIDSs) make the C10, C15, and C20 isoprenyl diphosphates separately.
267 o demonstrate that the C-terminal Ile of the C10 peptide is required for molecular recognition by At-
268 is work, which defines the importance of the C10 stereochemistry for this class of inhibitors of GAR
269 An unexpected, overriding impact of the C10 stereochemistry in stereoselectivity and reaction ra
271 addition to the natural product, each of the C10-C11 diastereomers of cytostatin was divergently prep
274 e of the presence and stereochemistry of the C10-methyl and C11-hydroxy groups for potent PP2A inhibi
275 , we determined the cryoEM structures of the C10-ZIKV complex at pH levels mimicking the extracellula
276 n dynamically transition via breakage of the C10/Cys-494 thioether bond, opposite rotations of the A
277 e of a 3'-C1 and/or 4'-C1 substituent on the C10 phenyl ring increased cytotoxicity in the MCF-7 cell
279 city and the m-Cl substituent present on the C10 side chain did not induce any large change in activi
281 eaction with an N-acyliminium ion to set the C10 quaternary stereocenter, a mild dissolving-metal cle
283 alignment of the C-S bond with regard to the C10-C11 pi system that would be required for C1-C10 bond
285 cids or acylcarnitines (ranging from C2:0 to C10:0) fail to achieve a stable conformation with oxy-Mb
286 structure containing ten sub-domains (C1 to C10) of which seven are immunoglobulin-type domains and
287 hesis is modular, with ELO1 converting C4 to C10, ELO2 extending C10 to C14, and ELO3 elongating C14
288 s, we synthesized 12 peroxy acids with C8 to C10 carbon backbones and mono- or diperoxy acid function
295 al, synthetic array of natural and unnatural C10, C20, C30, and C40 polyisoprenol sugar pyrophosphate
296 at sn-2 position in modified products were: C10:0, 4%; C16:0, 13%; C18:1, 66%; and C18:2, 15.4%.
298 ribe a C10/CCL6 target gene cascade in which C10/CCL6 induction is required for optimal IL-13 stimula
300 smaller amounts of lipid IV(A) modified with C10 or C12 acyl groups, Y. pseudotuberculosis contained
301 s that small amounts of neryl diphosphate (Z-C10) and (Z,E)-FPP are formed along with the E-isomers d
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