An improved procedure for N- to C-directed (inverse) solid-phase peptide synthesis

被引:29
作者
Johansson, A [1 ]
Åkerblom, E [1 ]
Ersmark, K [1 ]
Lindeberg, G [1 ]
Hallberg, A [1 ]
机构
[1] Uppsala Univ, Dept Organ Pharmaceut Chem, BMC, SE-75123 Uppsala, Sweden
来源
JOURNAL OF COMBINATORIAL CHEMISTRY | 2000年 / 2卷 / 05期
关键词
D O I
10.1021/cc000022h
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
A method for solid-phase peptide synthesis in the N- to C-direction that delivers good coupling yields and a low degree of epimerization is reported. The optimized method involves the coupling, without preactivation, of the resin-bound C-terminal amino acid with excess amounts of amino acid tri-tert-butoxysilyl (Sil) esters, using HATU as coupling reagent and 2,4,6-trimethylpyridine (TMP, collidine) as a base. For the amino acids investigated, the degree of epimerization was typically 5%, except for Ser(t-Bu) which was more easily epimerized (ca. 20%). Five tripeptides (AA(1)-AA(2)-AA(3)) with different properties were used as representative model peptides in the development of the synthetic method: Asp-Leu-Glu, Leu-Ala-Phe, Glu-Asp-Val, Asp-Ser-Ile, and Asp-D-Glu-Leu. The study used different combinations of HATU and TBTU as activating agents, N,N-diisopropylethylamine (DIEA) and TMP as bases, DMF and dichloromethane as solvents, and cupric chloride as an epimerization suppressant. The epimerization of AA(2) in the coupling of AA(3) was further reduced in the presence of cupric chloride. However, the use of this reagent also resulted in a decrease in loading onto the resin and significant cleavage between AAI and AA2. Experiments indicated that the observed suppressing effect of cupric chloride on epimerization in the present system merely seemed to be a result of a base-induced cleavage of the oxazolone system, the key intermediate in the epimerization process. Consequently, the cleavages were most pronounced in slow couplings. An improved synthesis of fully characterized amino acid tri-tert-butoxysilyl (Sil) ester hydrochloride building blocks is presented. The amino acid Sil esters were found to be stable as hydrochlorides but not as free bases. Although only a few peptides have been used in this study, we believe that the facile procedure devised herein should provide an attractive alternative for the solid-phase:synthesis of short (six residues or less) C-terminally modified peptides, e.g., in library format.
引用
收藏
页码:496 / 507
页数:12
相关论文
共 70 条
[1]  
Åkerblom EB, 1998, MOL DIVERS, V4, P53
[2]  
Akerblom EB, 1998, MOL DIVERS, V3, P137
[3]  
Albericio F, 1997, METHOD ENZYMOL, V289, P104
[4]  
ALBERICIO F, 1990, SYNTHESIS-STUTTGART, P119
[5]   POTENT AND PROLONGED ACTING CYCLIC LACTAM ANALOGS OF ALPHA-MELANOTROPIN - DESIGN BASED ON MOLECULAR-DYNAMICS [J].
ALOBEIDI, F ;
CASTRUCCI, AMD ;
HADLEY, ME ;
HRUBY, VJ .
JOURNAL OF MEDICINAL CHEMISTRY, 1989, 32 (12) :2555-2561
[6]  
ALOBEIDI F, 1990, INT J PEPT PROT RES, V35, P215
[7]   Design and fast synthesis of C-terminal duplicated potent C2-symmetric P1/P1′-modified HIV-1 protease inhibitors [J].
Alterman, M ;
Andersson, HO ;
Garg, N ;
Ahlsén, G ;
Lövgren, S ;
Classon, B ;
Danielson, UH ;
Kvarnström, I ;
Vrang, L ;
Unge, T ;
Samuelsson, B ;
Hallberg, A .
JOURNAL OF MEDICINAL CHEMISTRY, 1999, 42 (19) :3835-3844
[8]   The design and synthesis of potent inhibitors of hepatitis C virus NS3-4A proteinase [J].
Attwood, MR ;
Bennett, JM ;
Campbell, AD ;
Canning, GGM ;
Carr, MG ;
Conway, E ;
Dunsdon, RM ;
Greening, JR ;
Jones, PS ;
Kay, PB ;
Handa, BK ;
Hurst, DN ;
Jennings, NS ;
Jordan, S ;
Keech, E ;
O'Brien, MA ;
Overton, HH ;
King-Underwood, J ;
Raynham, TM ;
Stenson, KP ;
Wilkinson, CS ;
Wilkinson, TCI ;
Wilson, FX .
ANTIVIRAL CHEMISTRY & CHEMOTHERAPY, 1999, 10 (05) :259-273
[9]  
BAYER E, 1996, PEPTIDES CHEM STRUCT, P132
[10]  
BAYER E, 1995, PEPTIDES 1994, P201