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Oxazolone intermediate

When HOBt and HOAt are used with phosphonium and uronium salt-based reagents, they are present as anions, and they suppress epimerization by trapping the O-acyloxyphosphonium, O-acy I uronium, and oxazolone intermediates as the activated esters (see Section 2.21). [Pg.62]

Alternatively, if the dehydroamino acid is C-terminal or is central in the peptide chain, then the oxazolone precursor to the dehydropeptide must be in position two in order to apply this methodology (Scheme 7.165). The requisite unsaturated 5(4//)-oxazolone intermediate 518 is obtained from the appropriate precursors following standard cyclization procedures and avoiding experimental conditions that would epimerize the chiral center. This methodology has been applied to access analogues of important peptides including dehydroaspartame, somatostatin, and dermorphin. In these cases, a dehydroamino acid was incorporated into the peptide backbone to study the relationship between conformational restriction and biological properties of the modified peptide. [Pg.242]

A resolution method involving the aminolysis of a racemic oxazolone intermediate 158 with L-Pro-NHMe hydrochloride allowed the incorporation of enantiomerically pure ( R,2S)-and (lS,2f )-l-amino-2-hydroxycyclohexane-l -carboxylic acids (c6Ser) into Xaa-Pro dipeptide, a ffording d iastereomers 159 and 160 separated by column chromatography the... [Pg.273]

Sarcosinate specialty surfactants are currently made by acylation of naturally occurring amino acids with an acyl chloride. The use of a secondary amide for amidocarbonylation has been reported to give poor yields of amido acid since the corresponding oxazolone intermediate cannot be formed. Lin has demonstrated, however, that the amidocarbonylation of A-methylamine gives excellent yields of A-acyl sarcosinates (eq. (11)) when conducted in the presence of dicobalt octacarbonyl at 120°C with CO/H2 = 3 1. Sarcosinate selectivity is typically 95 %, at 92 % A-methylamine conversion. [Pg.161]

The preparation of 2,5-oxazolidinediones, the A -carboxy a-amino acid anhydrides, has received considerable attention, because of their usefulness in peptide chemistry. In a modification of a common route, A-Boc amino acids were reacted with triphosgene, followed by triethylamine <92JOC2755>. The products were obtained in 65-83% yield (Equation (31)). Oxidation of 1-arylvinyl carbamates (198) with lead tetraacetate proceeds through an oxazolone intermediate to afford 2,5-oxazolidinediones in moderate yield (Scheme 101) <90JOC1753>. [Pg.314]

Only 2,3-dihydropyrrolo[2,l-(>]thiazoles have been described. Reaction of 7V-acetylthiazolidine-2-carboxylic acid (303) in the presence of acetic anhydride provides mesoionic oxazolone intermediates (304) which undergo 1,3-dipolar cycloaddition with DMAD, to give unstable intermediate (305) which rapidly eliminates carbon dioxide to give 2,3-dihydro-5-methylpyrrolo[2,l-( ]thiazole-6,7-dicarboxylate (306) (Scheme 55) <88JMC1427>. [Pg.70]

Diazoalkanes add to the carbon-carbon double bonds of 2,3-diphenylthiirene 1-oxide and 1,1-dioxide. The adducts lose SO or SO2 to give pyrazoles and related compounds (Scheme 103) (80CB1632). Mesoionic oxazolones (75CLH53), 4-methyl-5-phenyl-l,2-dithiolene-3-thione (80JOU395) and pyrylium betaines (72JOC3838) react similarly via intermediate adducts (Scheme 104). Enamines (Scheme 96) and ynamines add to the double bond of 2,3-diarylthiirene 1,1-dioxides to give acyclic and cyclic sulfones by a thermal. [Pg.167]

Carbamates can be used as protective groups for ammo acids to minimize race-mization in peptide synthesis. Raccmi/ation occurs during the base-catalyzed coupling reaction of an W-protected, catboxyl-uc ivated amino acid, and takes place in the intermediate oxazolone that foro S readily from an N-acyl protected amino... [Pg.315]

The dlenophlle, 3-acetyl-2(3H)-oxazolane, Is an attractive Intermediate for the synthesis of vicinal aminoalcohols with cIs configurations. It reacts with 1,3-dienes, even under quite mild conditions, to form (4+2) cycloadducts. Its high reactivity with deactivated 1,3-dienes Is noteworthy. This property is present also in 2(3H)-oxa201one which can be obtained easily through solvolysis of 3-acetyl-2(3H)-oxa2olone In methanol. 3-Acetyl-2(3H)-oxazolone, on UV irradiation In the presence of a sensitizer, combines easily with olefins to form (2+2) cycloadducts, the hydrolysis of which leads to the class of cis-2-aminocyclobutanols. [Pg.156]

The azlactones of a-benzoylaminocinnamic acids have traditionally been prepared by the action of hippuric acid (1, Ri = Ph) and acetic anhydride upon aromatic aldehydes, usually in the presence of sodium acetate. The formation of the oxazolone (2) in Erlenmeyer-Plochl synthesis is supported by good evidence. The method is a way to important intermediate products used in the synthesis of a-amino acids, peptides and related compounds. The aldol condensation reaction of azlactones (2) with carbonyl compounds is often followed by hydrolysis to provide unsaturated a-acylamino acid (4). Reduction yields the corresponding amino acid (6), while drastic hydrolysis gives the a-0X0 acid (5). ... [Pg.229]

Comforth has reviewed literature reports and independently studied the special cases of reaction of 1 with salicylaldehyde and with 2-acetoxybenzaldehyde. Coumarins (10) are afforded in the condensation of 1 with salicylaldehyde or its imine, whereas when 2-acetoxybenzaldehyde is used, acetoxy oxazolone 12 is the major product. The initial aldol condensation product between the oxazolone and 2-acetoxybenzaldehyde is the 4-(a-hydroxybenzyl)oxazolone 11, in which base-catalyzed intramolecular transacetylation is envisioned. The product 9 (R = Ac) can either be acetylated on the phenolic hydroxy group, before or after loss of acetic acid, to yield the oxazolone 12, or it can rearrange, by a second intramolecular process catalyzed by base and acid, to the hydrocoumarin, which loses acetic acid to yield 10. When salicylaldehyde is the starting material, aldol intermediate 9 (R = H) can rearrange directly to a hydrocoumarin. Comforth also accessed pure 4-(2 -hydroxyphenylmethylene)-2-phenyloxazol-5(4//)-one (13) through hydrolysis of 12 with 88% sulfuric acid. [Pg.230]

The isolation of several pairs of geometric isomers of 4-unsaturated-5-oxazolones has been described. Generally, only one isomer is obtained when an aldehyde reacts with hippuric acid in the presence of acetic anhydride. Occasionally, mixtures have been separated in base-catalyzed reactions. In acetic anhydride-sulfuric acid or in 100% sulfuric acid, a mixture is obtained, and it has been suggested that sulfuric acid inhibits mutarotation of the intermediate addition product 53, which is a mixture of diastereomers (see, e.g., compound... [Pg.95]

The preparation of the less stable isomer (53b) of the oxazolone 53a involves a rather tedious procedure. It has been reported that 53a is rapidly isomerized to 53b in 48% hydrobromic acid saturated with gaseous HBr. In this way four azlactones have been converted into their isomers.It has been established, moreover, that the isomerization is radical-initiated and does not involve a carbonium ion intermediate. The isomerization can be reversed by pyridine. ... [Pg.96]

A reversal of the 5 4H) 5 2H) equilibrium was established by demonstrating the presence of 4-isopropyl-2-trifluoromethyl-5(2fl )-oxazolone as an intermediate in the reaction of A-TFA-l-valine with the methyl ester of L-valine [Eq. (35)] using gas chromatography. The resulting product is a mixture of 74% l,l- and 26% d,l-A-TFA dipeptide methyl ester (see Section II, B, 4). [Pg.103]

This procedure offers a reproducible method for the preparation of 2-phenyl-5-oxazolone, which is not commercially available It illustrates that strict attention to detail often smooths out an erratic procedure 2-Phenyl-5-oxazolone is, of course, an important intermediate in the synthesis of a-amino acids and related materials6... [Pg.103]

Compounds of special interest whose preparation is described include 1,2,3-benzothiadiazole 1,1-dioxide (a benzyne precursor under exceptionally mild conditions), bis(l,3-diphenylimida-zolidinylidene-2) (whose chemistry is quite remarkable), 6- di-melhylamino)julvene (a useful intermediate for fused-ring non-benzenoid aromatic compounds), dipkenylcyclopropenone (the synthesis of which is a milestone in theoretical organic chemistry), ketene di(2-melhoxyethyl) acetal (the easiest ketene acetal to prepare), 2-methylcyclopenlane-l,3-dione (a useful intermediate in steroid synthesis), and 2-phenyl-5-oxazolone (an important intermediate in amino acid chemistry). [Pg.145]

When Wa = substituted aminoacyl, that is, when Wa-Xaa is a peptide, there is a strong tendency to form an oxazolone. The 2-alkyl-5(4//)-oxazolone that is formed is chirally unstable. Isomerization of the 2-alkyl-5(4//)-oxazolone generates diaste-reomeric products. When Wa = R0C=0, there is a lesser tendency to form an oxazolone. The 2-alkoxy-5(4/7)-oxazolone that is formed is chirally stable. No isomerization occurs under normal operating conditions. Finally, when Wa = R0C=0, an additional productive intermediate, the symmetrical anhydride, can and often does form. [Pg.11]

ALKOXY-5(4H)-OXAZOLONES AS INTERMEDIATES IN REACTIONS OF A/-ALKOXYCARBONYLAMINO ACIDS... [Pg.17]

FIGURE 1.18 2-AI koxy-5(4/7)-oxazol ones as intermediates in reactions of IV-alkoxycarbo-nylamino acids.22 After removal of the symmetrical anhydride from a reaction mixture containing Boc-valine and ethyl-(3-dimethylaminopropyl)-carbodiimide hydrochloride, the filtrate contained a novel activated form of Boc-valine (20% yield) that was established to be the 2-alkoxy-5(4H)-oxazolone. Slow addition of Boc-valine to ethyl-(3-dimethylamino-propyl)-carbodiimide hydrochloride in dilute solution gave a 55% yield. Petrol = petroleum ether, bp 40-60°. [Pg.18]


See other pages where Oxazolone intermediate is mentioned: [Pg.115]    [Pg.225]    [Pg.393]    [Pg.115]    [Pg.364]    [Pg.581]    [Pg.213]    [Pg.280]    [Pg.914]    [Pg.119]    [Pg.31]    [Pg.544]    [Pg.89]    [Pg.54]    [Pg.115]    [Pg.225]    [Pg.393]    [Pg.115]    [Pg.364]    [Pg.581]    [Pg.213]    [Pg.280]    [Pg.914]    [Pg.119]    [Pg.31]    [Pg.544]    [Pg.89]    [Pg.54]    [Pg.13]    [Pg.469]    [Pg.122]    [Pg.118]    [Pg.45]    [Pg.50]    [Pg.32]    [Pg.197]    [Pg.570]    [Pg.10]    [Pg.13]    [Pg.13]   
See also in sourсe #XX -- [ Pg.75 ]

See also in sourсe #XX -- [ Pg.100 ]

See also in sourсe #XX -- [ Pg.89 ]




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Oxazolones as Intermediates in Reactions of A-Alkoxycarbonylamino Acids

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