Asymmetric synthesis of α-amino acids based on carbon radical addition to glyoxylic oxime ether

被引:144
作者
Miyabe, H [1 ]
Ushiro, C [1 ]
Ueda, M [1 ]
Yamakawa, K [1 ]
Naito, T [1 ]
机构
[1] Kobe Pharmaceut Univ, Kobe, Hyogo 6588558, Japan
关键词
D O I
10.1021/jo991353n
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
The first asymmetric synthesis of cr-amino acids based on diastereoselective carbon radical addition to glyoxylic imine derivatives is reported. The addition of an isopropyl radical, generated from i-PrI, Bu3SnH, and Et3B in CH2Cl2 at 25 degrees C, to achiral glyoxylic oxime ether 1 proceeded regioselectively at the imino carbon atom of the oxime ether group to give an excellent yield of the C-isopropylated product 2. The competitive reaction using glyoxylic oxime ether 1 and aldoxime ether 4 showed that the reactivity of the glyoxylic oxime ether toward nucleophilic carbon radicals was enhanced by the presence of a neighboring electron-withdrawing substituent. Thus, the alkyl radical addition to glyoxylic oxime ether 1 proceeded smoothly even at -78 degrees C, in contrast to the unactivated aldoxime ether 4. A high degree of stereocontrol in the carbon radical addition to the glyoxylic oxime ether was achieved by using Oppolzer's camphorsultam as a chiral auxiliary. The stannyl radical-mediated reaction of the camphorsultam derivative 6 with an isopropyl radical at -78 degrees C afforded a 96:4 diastereomeric mixture, 7a, of the C-isopropylated product. The reductive removal of the benzyloxy group of the major diastereomer (R)-7a, by treatment with Mo(CO)(6) and the subsequent removal of the sultam auxiliary by standard hydrolysis, afforded the enantiomerically pure D-valine (R)-12 without any loss of stereochemical purity. To evaluate the new methodology, a variety of alkyl radicals were employed in the addition reaction which gave the alkylated products 7 with excellent diastereoselectivity, allowing access to a wide range of enantiomerically pure natural and unnatural a-amino acids. Even in the absence of Bu3SnH, treatment of 6 with alkyl iodide and Et3B at 20 degrees C gave the C-alkylated products 7 with moderate diastereoselectivities. The use of Et2Zn as a radical initiator, instead of Et3B, was also effective for the radical reaction. The enantioselective isopropyl radical addition to 1 using (R)-(+)-2,2'-isopropylidenebis(4-phenyl-2-oxazoline) and MgBr2 gave excellent chemical yield of the valine derivative 2 in 52% ee.
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页码:176 / 185
页数:10
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共 122 条
[1]  
[Anonymous], [No title captured]
[2]   Diastereoselective chelation-controlled radical cyclization of chiral oxazolidinone-derived 2-alkenamides and modeling of the transition state [J].
Badone, D ;
Bernassau, JM ;
Cardamone, R ;
Guzzi, U .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 1996, 35 (05) :535-538
[3]   Stereochemical course of the [4+2] cycloaddition of 1-methoxybuta-1,3-diene to N-glyoxyloyl-(2R)-bornane-10,2-sultam. The formal synthesis of compactin and mevinolin [J].
Bauer, T ;
Chapuis, C ;
Jezewski, A ;
Kozak, J ;
Jurczak, J .
TETRAHEDRON-ASYMMETRY, 1996, 7 (05) :1391-1404
[4]   Highly stereoselective addition of 2-trimethylsilyloxyfuran to N-glyoxyloyl-(2R)-bornane-10,2-sultam [J].
Bauer, T .
TETRAHEDRON-ASYMMETRY, 1996, 7 (04) :981-984
[5]   HIGHLY DIASTEREOSELECTIVE ADDITION-REACTIONS OF A RADICAL DERIVED FROM A BETA-ETHOXYCARBONYL SULFOXIDE [J].
BECKWITH, ALJ ;
HERSPERGER, R ;
WHITE, JM .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1991, (17) :1151-1152
[6]  
Bertrand MP, 1999, SYNLETT, P1148
[7]  
Bertrand MP, 1998, SYNLETT, P780
[8]   Synthesis of novel nucleic acid mimics via the stereoselective intermolecular radical coupling of 3'-iodo nucleosides and formaldoximes [J].
Bhat, B ;
Swayze, EE ;
Wheeler, P ;
Dimock, S ;
Perbost, M ;
Sanghvi, YS .
JOURNAL OF ORGANIC CHEMISTRY, 1996, 61 (23) :8186-8199
[9]   Additions of organometallic reagents to C=N bonds: Reactivity and selectivity [J].
Bloch, R .
CHEMICAL REVIEWS, 1998, 98 (04) :1407-1438
[10]   Synthesis of trehazolin from D-glucose [J].
Boiron, A ;
Zillig, P ;
Faber, D ;
Giese, B .
JOURNAL OF ORGANIC CHEMISTRY, 1998, 63 (17) :5877-5882