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Allylic alkylation amino acid enolates

Allylic alkylation reactions with amino acid enolates. 397... [Pg.356]

The great importance of nonproteinogenic amino acids including a-substituted derivatives led to numerous investigations of modified amino acid enolates as nucleophiles in both classical alkylation or Mannich reactions and palladium-catalyzed allylic alkylations. [Pg.393]

Zinc enolates like 41 served as nucleophiles in a study aimed at a rhodium-catalyzed reaction with enantiomerically enriched allylic phosphates. Nonracemic products were obtained under efficient chirality transfer from the substrate and with remarkable diastereoselectivity [23]. Kazmaier enolates were used to manipulate the backbone of small peptides [27] by palladium-catalyzed allylations of a terminal glycine ester [28]. In the course of these studies, central glycine was also allylated in a diastereoselective manner through assumed chelated zinc enolates of glycine in a peptidic bond to proline or JV-alkyl amino acids [29]. Although this is, of course, not an asymmetric synthesis, the protocol is remarkable inasmuch as, in contrast to the palladium-mediated conversion, the noncatalyzed reaction of the enolate with the corresponding allylic bromide occurs in a more or less stereorandom manner. [Pg.270]

Keywords Catalyst, Alkylation, Allylation, Arylation, Mannich reaction, Carbon-nitrogen double bond, Imine, Nitrone, Aldimine, Organozinc reagents, Silyl ketene acetal, Silyl enol ether, Amine, (3-Amino acid... [Pg.107]

Najera and coworkers introduced a new class of cyclic alanine templates (227, equation 59), the structure of which was anchored on Schollkopf s bislactim ether . Palladium-catalyzed allylations of the chiral pyrazinone derivative 227 with allylic carbonates (228) as substrates led to the formation of y,i5-unsaturated amino acids (229a-c) under very mild and neutral reaction conditions, whereas the required base for enolate preparation has been generated in situ from the allylic carbonate during jr-allyl complex formation. With this protocol in hand, the alkylated pyrazinones 229 were obtained with excellent regio- and diastereoselectivities (>98% ds). Finally, hydrolysis with 6 N aqueous HCl under relatively drastic conditions (150 °C) led to the free amino acids. [Pg.398]

If the Claisen rearrangement is carried out with peptide allylic esters, the transfer of an allylic side chain to the a-position of the C terminal amino acid results in a modification of the peptide chain. This concept is comparable to the alkylations of peptide enolates described by Seebach et al. [93]. If it is possible to carry out the rearrangement not only with amino acids but also with peptide esters, the question arises if it is possible to transfer the chiral information from the peptide chain to the new chiral center formed during the rearrangement process, prohahly via some peptide metal enolate complexes. [Pg.277]

Transition Metal-Catalyzed Allylie Alkylation. Chelated amino acid ester enolates were found to be suitable nucleophiles for palladium-catalyzed allylie alkylations (eq 25). They were conveniently prepared by deprotonation of a glycine derivative with LHMDS followed by transmetallation with zinc chloride. The palladium-catalyzed allylie alkylation then takes place in the presence of allyl carbonates to produce the desired anti amino acid derivative. ... [Pg.360]

A simple, steieocontrolled synthesis of monofluoro ketomethylene dipepdde isosteres has been developed. N-Tritylated ketomethylene dipeptide isosteres, prepared from N-tritylated amino acids, are converted to their Z-TMS enol ethers and fluorinated with Selectfluor. There is cooperative stereocontrol between the allylic N-tritylamine group and the alkyl group at C-2. The method is short (6 steps) and diastereoselective (85->9S%) and enantioselective (>95%),... [Pg.52]

Rupintrivir (72, Scheme 2.11) is a peptidomimetic protease inhibitor developed by Agouron Pharmaceuticals (San Diego, CA) for the treatment of human rhinovirus (HRV). A key component of the rupintrivir pharmacophore is the a,(3-unsaturated ester moiety, which acts as a Michael acceptor, forming a covalent bond with cysteine residues in the active site of HRV 3C protease. Synthesis of the 7-amino a,(3-unsaturated ester portion of rupintrivir involved coupling L-glutamic acid derivative 66 with 4-benzyloxazolidinone 67 via a mixed anhydride. Formation of the corresponding sodium enolate, followed by alkylation with allyl iodide 69, gave the a-allyl amide 70. [Pg.53]


See other pages where Allylic alkylation amino acid enolates is mentioned: [Pg.397]    [Pg.275]    [Pg.278]    [Pg.115]    [Pg.24]    [Pg.791]    [Pg.7]    [Pg.446]    [Pg.29]    [Pg.176]    [Pg.9]    [Pg.397]    [Pg.158]    [Pg.158]    [Pg.594]    [Pg.745]    [Pg.54]    [Pg.873]    [Pg.181]    [Pg.86]    [Pg.71]    [Pg.331]    [Pg.934]    [Pg.951]    [Pg.974]    [Pg.7]    [Pg.61]    [Pg.466]    [Pg.649]    [Pg.1485]    [Pg.19]    [Pg.1485]    [Pg.1485]    [Pg.1485]    [Pg.156]    [Pg.361]   
See also in sourсe #XX -- [ Pg.397 , Pg.398 , Pg.399 ]




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5-Alkyl-2-amino

Alkylation allylic allylation

Alkylation amino acid enolates

Allylic alkylation

Allylic alkylation, enolates

Allylic alkylations

Amino acid alkylated

Amino acid alkylation

Amino acid alkylations

Amino alkylation

Enol alkyl

Enolate alkylation

Enolates alkylation

Enolates allylation

Enolic acids

Enols acidity

Enols alkylation

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