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2 eterocycle 2,5, 6-trichlorobenzimidazole was condensed with 1-bromo-3, 5-di-O-benzoyl-2-deoxy-2-fluor
3 to a salicylaldehyde, which is subsequently condensed with (1R,2R)-(-)-1,2-diaminocyclohexane to pro
4 afforded the parent heterocycle 9, and this condensed with 2 equiv of acetoxymethylpyrroles 10 in re
5 parent azatricycles, and these were further condensed with 2 equiv of an acetoxymethylpyrrole to giv
6 alt of 2,5,6-trichlorobenzimidazole (8a) was condensed with [2-(benzyloxy)ethoxy]-methyl chloride (9)
7 under low ionic conditions, as they are more condensed with a 20% smaller average nearest-neighbor di
8 afforded the key intermediate 10, which was condensed with a Boc-protected adenine, followed by depr
9 c-Annulated pyrrole dialdehydes were also condensed with a carbatripyrrin to generate PAH-fused ca
10 and following ester saponification, this was condensed with a dipyrrylmethane dialdehyde to afford th
11 udy, an azulenylmethylpyrrole dialdehyde was condensed with a dipyrrylmethane in the presence of HCl,
14 id, and following a deprotection step, these condensed with a pyrrole dialdehyde to give the related
17 ior to the formation of protoemetine that is condensed with a second dopamine molecule, followed by s
19 ver, the related dimethyl acetal 26 could be condensed with a variety of amines to give the desired t
21 des are bioactive bergamotane sesquiterpenes condensed with a variety of synthetically challenging ri
22 n the protein's microenvironment, it readily condenses with a neighbouring thiol to create a protecti
24 ity of the SPT enzyme such that palmitate is condensed with alanine and glycine, in addition to serin
25 ne afforded N-aminooxazolidinones which were condensed with aldehydes to afford N-acylhydrazones 3-8.
27 to give a bis(acetoxymethyl) derivative that condensed with an alpha-unsubstituted pyrrole tert-butyl
28 A previously known bis-alpha-diketone was condensed with an excess of 4-bromo-1,2-diaminobenzene i
33 cid phosphinodiamidites were synthesized and condensed with appropriately protected 5'-O-(4, 4'-dimet
34 ed alkylation of 1,3-monothiodiketones) were condensed with arylhydrazines in the presence of potassi
39 sized in three steps from chalcones and then condense with carbon disulfide to afford 8-azachromones
40 t comprising 4-(1-aminoethyl)phenol that can condense with carbonyl groups and undergo 1,6-eliminatio
41 e optical rotations, various arylamines were condensed with cholest-4-ene-3,6-dione (2) to give 3-ary
42 -(arylmethyl)cyclohexanones, which were then condensed with cyanoguanidine to form the tetrahydroquin
43 Phthalimide and N-phenylphthalimide smoothly condense with di-p-tolyl ether in triflic acid (CF(3)SO(
45 (DHIs), a series of asymmetric pyridines was condensed with dimethyl spiro[cycloprop[2]ene-1,9'-fluor
46 y, dipyrromethanyl-substituted azaBODIPY was condensed with dipyrromethane dicarbinol or 16-oxatripyr
48 mylmethylene-1,3-diselenole was prepared and condensed with dithiolium phoshonium bromides and dithio
49 ispersed in solution, but they independently condense with DNA into reversible nucleoprotein clusters
51 n anthraniloyl-PqsD intermediate, which then condenses with either malonyl-CoA or malonyl-acyl carrie
52 utidine, alpha,alpha-disubstituted aldehydes condense with electron-rich aromatic aldehydes to yield
53 i-O-TBS protected glyceraldehyde synthon was condensed with Ellman's reagent to form a bench-stable N
56 enzoylbenzodipyrrole was reduced to diol and condensed with five different tripyrranes such as aza, o
58 their structural similarity, PAR and RNA co-condense with FUS, driven by disparate modes of interact
60 two-step reaction in which the enzyme first condenses with GTP to form a covalent enzyme-GMP interme
61 wded milieu containing large genomes tightly condensed with histone proteins in the form of chromatin
62 ta-replacement reaction in which cysteine is condensed with homocysteine to form cystathionine and H2
63 dation to give beta-ketoesters H, which were condensed with hydrazine derivatives to provide hydrazon
65 lysis shows that telomeric nucleosome arrays condense with increasing ionic strength and molecular we
66 d using conventional methods, and these were condensed with indene-1,3-dicarbaldehyde, 5-formylsalicy
67 al prion-like protein Fused-in-Sarcoma (FUS) condenses with individual molecules of single- and doubl
69 4,5-Tetrazines (prepared from aryl nitriles) condense with isoxazolylcyclobutanones (prepared from 3-
70 Ca@SiO(2) (3.0 equiv), aldehydes (1.0 equiv) condensed with ketones (1.0 equiv) in 2-MeTHF to yield a
73 enic acid that escapes the action of the LFS condenses with loss of water to form S-benzyl phenylmeth
74 ates formaldehyde and formic acid which then condense with methanol to form dimethoxymethane and meth
75 th CuBr2 provided 3-bromo-2-ketoesters which condensed with methyl carbamate in the presence of p-TSA
76 o carbonyl Fe(S(2)C(3)H(6))(CO)(2)(dppe) (1) condenses with NiCl(2)(dppe) to give [FeNi(pdt)(mu-Cl)(C
77 In yet another strategy, the synthon 1 was condensed with nitromethane followed by electrophilic io
78 servations, pyrroline-5-carboxylic acid also condenses with other aromatic and aliphatic aldehydes an
79 the active site base, its failure to further condense with oxaloacetate to form a sulfur-less analog
80 itions, glucose provides the acetyl-CoA that condenses with oxaloacetate to support citrate productio
81 teroaromatic, and alkyl carboxaldehydes were condensed with oxalyl boronates to afford substituted bo
82 se residues are replaced by serine in B1 and condense with PBA to form a boronic ester with the same
83 29 was obtained from phenylthioacetal 24 and condensed with phosphorane 30, representing subunit B, i
84 nasally with polyinosinic-polycytidylic acid condensed with poly-l-lysine and carboxymethylcellulose
88 2,6-dibromo-4-trimethylsilybenzaldehyde was condensed with pyrrole, and a variety of boronic acids w
92 piratory syndrome coronavirus 2 (SARS-CoV-2) condenses with RNA via liquid-liquid phase separation (L
93 Compound 9', in the presence of ATP, then condenses with (S)-2-hydroxyglutaric acid to form demeth
95 -O-acetylated pentose sugar derivatives were condensed with silylated 4-amino-5-oxopyrido[2,3-d]pyrim
97 peptide can exploit dynamic imine linkage to condense with simple aldehydes to access spherical aggre
101 t a large fraction of PM ergosterol is found condensed with sphingolipids in membrane rafts that coex
102 to the mitochondrial matrix where glycine is condensed with succinyl coenzyme A to yield delta-aminol
103 ine and the obtained diamines can be further condensed with the diketones with a thiadiazole unit.
104 , noteworthy, the X shape of orphan GlyRS is condensed with the largest known spatial rearrangement n
111 ith H2O2 to form a sulfenic acid, which then condenses with the resolving cysteine of the adjacent Pr
112 liquid-liquid phase separation (LLPS) and co-condenses with the SG core protein G3BP1 in a dsRNA-depe
113 rivatives (5, 6, and 11-15), which were then condensed with thiosemicarbazide to yield the respective
116 In particular, 1,3-indenedicarbaldehyde condenses with tripyrranes in the presence of TFA to giv
118 bobenzyloxy-(2S)-4,5-dehydroleucine (22) was condensed with valine ethyl ester (19) to give dipeptide
119 alpha-L-arabinofuranose (10), which was then condensed with various 5-substituted pyrimidine bases to
120 gand (1,4,8,11-tetraazacyclotetradecane) was condensed with various azomycin-containing synthons to p
121 pylidene-l-glyceraldehyde 1 in 13 steps, was condensed with various pyrimidine and purine bases follo
122 y to obtain the mesylate 8a or 8b, which was condensed with various silyl-protected pyrimidines.
123 post-treatment, treated tumors appeared less condensed with widening of the stromal areas which incre
124 -deoxy-D-ribose 5-phosphate, were separately condensed with (Z)- and (E)-[3-(2)H]-phosphoenolpyruvate