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短固相连接肽催化的不对称烯酮环氧化反应:单个肽链的催化剂螺旋度和催化活性的进一步证据

Asymmetric enone epoxidation by short solid-phase bound peptides: further evidence for catalyst helicity and catalytic activity of individual peptide strands.

作者信息

Berkessel Albrecht, Koch Burkhard, Toniolo Claudio, Rainaldi Mario, Broxterman Quirinus B, Kaptein Bernard

机构信息

Institute of Organic Chemistry, University of Köln, D-50939 Köln, Germany.

出版信息

Biopolymers. 2006;84(1):90-6. doi: 10.1002/bip.20413.

Abstract

In the presence of short solid-phase bound peptide catalysts, the Juliá-Colonna epoxidation of enones (such as chalcone) with hydrogen peroxide can be performed with high enantiomeric excess (> or = 95% ee). It was proposed earlier (A. Berkessel, N. Gasch, K. Glaubitz, C. Koch, Organic Letters, 2001, Vol. 3, pp. 3839-3842) that this remarkable catalysis is governed by the N-terminus of individual and helical peptide strands. This mechanistic proposal was scrutinized further. (i) Nonaggregation of the peptide catalysts: five solid-phase bound statistic mixtures (0/100; 30/70; 50/50; 70/30; 100/0) of D-Leu and L-Leu heptamers were generated and assayed as catalysts. A linear dependence of the epoxide ee on the enantiomeric composition of the catalysts resulted. (ii) Catalyst helicity [introduction of the helix-stabilizing C(alpha)-methyl-L-leucine, L-(alphaMe)Leu]: solid-phase bound Leu/(alphaMe)Leu-pentamers of composition TentaGel-NH-[(alphaMe)-L-Leu]n-(L-Leu)m-H (n = 0-4; m = 5-n) were prepared and assayed as catalysts. The introduction of up to two (alphaMe)-L-Leu residues (n = 1, 2) significantly enhanced the catalyst activity relative to the L-Leu homopentamer (n = 0). Higher (alphaMe)-L-Leu contents (n = 3, 4) led to a decrease in both catalyst activity and enantiopurity of the product epoxide. In summary, both the individual catalytic action of the peptide strands and the helical conformation as the catalytically competent state of the peptide catalysts were further supported.

摘要

在短的固相键合肽催化剂存在下,烯酮(如查耳酮)用过氧化氢进行的朱利亚 - 科隆纳环氧化反应能够以高对映体过量(≥95% ee)进行。较早前有人提出(A. 伯克塞尔、N. 加施、K. 格劳比茨、C. 科赫,《有机快报》,2001年,第3卷,第3839 - 3842页),这种显著的催化作用受单个螺旋肽链的N端控制。该机理提议得到了进一步审视。(i) 肽催化剂的非聚集性:生成了D - 亮氨酸和L - 亮氨酸七聚体的五种固相键合统计混合物(0/100;30/70;50/50;70/30;100/0)并作为催化剂进行测定。环氧化物对映体过量与催化剂对映体组成呈线性关系。(ii) 催化剂螺旋度[引入螺旋稳定的C(α)-甲基 - L - 亮氨酸,L-(αMe)Leu]:制备了组成是TentaGel - NH - [(αMe)-L - Leu]n-(L - Leu)m - H(n = 0 - 4;m = 5 - n)的固相键合亮氨酸/(αMe)亮氨酸五聚体并作为催化剂进行测定。相对于L - 亮氨酸同五聚体(n = 0),引入多达两个(αMe)-L - 亮氨酸残基(n = 1, 2)显著提高了催化剂活性。更高的(αMe)-L - 亮氨酸含量(n = 3, 4)导致催化剂活性和产物环氧化物对映纯度均降低。总之,肽链的个体催化作用以及作为肽催化剂催化活性状态的螺旋构象都得到了进一步支持。

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