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2-Oxazolidinone ring synthesis

Other Oxazolidine as well as Thiazolidine Derivatives for Branching Amino Acids. The cyclic derivative of alanine and other amino acids employed most frequently for a-allq lation is not (1) but rather the benzaldehyde acetal (5), either with a benzoyl or with a Cbz group on nitrogen. These compounds were used for the preparation of 2-methyl-2-aminobutanoic acid, a-methylphenylalanine, a-methyllysine, 2-methylaspartic acid, and 2-methylglutamic acid. Bicyclic compounds containing oxazolidinone rings such as (6) (from alanine, leucine, and phenylalanine) and (7) (from azetidinecaiboxylic acid, proline, " hydroxyproline, and cysteine ) have also been applied to the synthesis of branched amino acids. [Pg.51]

Substituted oxazolidin-5-one derivatives, which are prepared from N -protected a-annino dicarboxyhc acids and paraformaldehyde, are employed for dual protection of the a-annino and a-carboxy groups in the synthesis of P-aspartyl and y-glutamyl esters (Scheme 4).Py For this purpose the oxazolidinone derivatives are synthesized by treatment of the Z amino acids with paraformaldehyde in a nnixture of acetic anhydride, acetic acid, and traces of thionyl chloride or by azeotropic distillation of the Z amino acids with paraformaldehyde and 4-toluenesulfonic acid in benzene. The resulting heterocychc compounds are readily converted into the tert-butyl esters with isobutene under acid catalysis. Esterification is achieved with tert-butyl bromidet or with Boc-F.P l Finally, the oxazolidinone ring is opened by alkaline hydrolysis or catalytic hydrogenolysis to yield the tert-butyl esters. [Pg.244]

In the case of the TMM-Pd procedure for cycloaddition, it is found that the oxazolidinone and camphorsultam systems do not translate well to five-membered-ring synthesis. [Pg.847]

Lactaldehyde 689 has been used as the chiral source in an interesting synthesis of unnatural D-threonine (695) [204] (Scheme 93). The first of the two most important reactions in the sequence is the conversion of 691 to 692. The transformation proceeds by partial methano-lysis of the trichloroacetyl group followed by intramolecular conjugate addition, which forms the oxazolidinone ring in 692 stereospecifically at C-4 and C-5. The second critical reaction is a Pummerer rearrangement of 693 to 694, which introduces the requisite carboxyl function (as... [Pg.95]

Marti, R.E., Yan, B. and Jarosinski, M.A., Solid-phase synthesis via 5-oxazolidinones. Ring opening reactions with amines and reaction monitoring by single-bead FTIR microspectroscopy, J. Org. Chem., 62 (1997) 5615-5618. [Pg.38]

The synthesis of the E-ring intermediate 20 commences with the methyl ester of enantiomerically pure L-serine hydrochloride (22) (see Scheme 9). The primary amino group of 22 can be alkylated in a straightforward manner by treatment with acetaldehyde, followed by reduction of the intermediate imine with sodium borohydride (see 22 —> 51). The primary hydroxyl and secondary amino groups in 51 are affixed to adjacent carbon atoms. By virtue of this close spatial relationship, it seemed reasonable to expect that the simultaneous protection of these two functions in the form of an oxazolidi-none ring could be achieved. Indeed, treatment of 51 with l,l -car-bonyldiimidazole in refluxing acetonitrile, followed by partial reduction of the methoxycarbonyl function with one equivalent of Dibal-H provides oxazolidinone aldehyde 52. [Pg.538]

Ring cleavage of the bicyclic dihydro-oxazolo [3,4-c]oxazol-3-one 111 derived from D-serine was realized by action of boron trifluoride-acetic acid complex leading to the oxazolidinone 112, a useful building block for the synthesis of... [Pg.146]

Finally, single bead FT-IR has been further exploited in many applications, such as the study of the tetrapropylammonium perrutherate (TPAP)-catalyzed oxidation of supported alcohols [167], the ring opening of a supported oxazolidinone [173], and the solid-phase synthesis of a benzimidazole [174]. [Pg.36]

Linezohd (Zyvox) is an oxazolidinone, a tive-membered heterocychc ring that forms the core of the hnezohd structure. The approval of hnezohd by the FDA in 2000 marked the first new structural class of antibacterial introduced into medical practice in the United States in 40 years. It is notable for its activity against methicillin-resistant Staph aureus, MRSA, and vancomycin-resistant Enterococcus faecium, VRE. It is bacteriostatic rather than bactericidal but finds significant use in patients with an intact immune system. Like several other classes of antibacterials, linezolid is an inhibitor of protein synthesis. It interacts specifically with the RNA component of a bacterial ribosome subunit to prevent initiation of protein synthesis. [Pg.328]

The next phase of the synthesis was installation of the dimethylamino-oxazoline ring system. This was constructed from the oxazolidinone precursor 19. Oxazolidinone formation occurred when 25 was reacted with thionyl chloride. The more nucleophilic carbonyl of 19 was then O-alkylated with the Meerwein reagent to give an iminium ion that readily participated in a nucleophilic addition/elimination reaction with dime-thylamine to give 26. The final step of the synthesis was O-deacetylation of 26 with sodium methoxide to provide (—)-allosamizoline hydrochloride in 98% yield after acidification. [Pg.243]


See other pages where 2-Oxazolidinone ring synthesis is mentioned: [Pg.59]    [Pg.61]    [Pg.47]    [Pg.267]    [Pg.265]    [Pg.146]    [Pg.149]    [Pg.256]    [Pg.33]    [Pg.557]    [Pg.143]    [Pg.405]    [Pg.11]    [Pg.191]    [Pg.214]    [Pg.381]    [Pg.71]    [Pg.11]    [Pg.252]    [Pg.191]    [Pg.183]    [Pg.144]    [Pg.175]    [Pg.44]    [Pg.307]    [Pg.246]    [Pg.706]    [Pg.1013]    [Pg.106]    [Pg.253]    [Pg.47]    [Pg.407]    [Pg.408]    [Pg.123]    [Pg.229]    [Pg.214]    [Pg.390]    [Pg.38]    [Pg.603]    [Pg.365]    [Pg.475]   
See also in sourсe #XX -- [ Pg.12 , Pg.166 ]

See also in sourсe #XX -- [ Pg.12 , Pg.166 ]




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