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BOP试剂在固相合成中的应用。以[Ala 15]-GRF(1-29)-NH2的合成为例说明BOP试剂在困难偶联反应中的优势。

Applications of BOP reagent in solid phase synthesis. Advantages of BOP reagent for difficult couplings exemplified by a synthesis of [Ala 15]-GRF(1-29)-NH2.

作者信息

Fournier A, Wang C T, Felix A M

机构信息

Peptide Research Department, Roche Research Center, Hoffmann-La Roche, Inc., Nutley, New Jersey.

出版信息

Int J Pept Protein Res. 1988 Jan;31(1):86-97. doi: 10.1111/j.1399-3011.1988.tb00010.x.

Abstract

The BOP reagent [benzotriazol-l-yl-oxy-tris-(dimethylamino)phosphonium hexa-fluorophosphate] introduced by Castro et al. [Tetrahedron Lett. (1975) 14, 1219-1222] is ideally suited for solid phase peptide synthesis. The rate of coupling using BOP compared favorably to DCC and other methods of activation including the symmetrical anhydride and DCC/HOBt procedures. BOP couplings using the solid phase procedure proceeded more rapidly and to a greater degree of completion for peptide bond formations that were previously determined to be very slow using the conventional DCC method. Stepwise solid phase peptide synthesis using BOP was successfully utilized for the preparation of the (22-29) and (13-29) fragments of [Ala15]-GRF(1-29)-NH2. Single couplings with 3 equiv. BOP and Boc-amino acids and 5.3 equiv. of diisopropylethylamine in DMF were used for each cycle. The yields of the fragments were superior and the purities comparable using the BOP procedure (single couplings) to those observed using multiple couplings via the DCC coupling method. A total synthesis of [Ala15]-GRF(1-29)-NH2 was also carried out using the BOP procedure (single couplings and 3 equiv. BOP and Boc-amino acids and 5.3 equiv. diisopropylethylamine in DMF for each cycle). Multiple couplings were only required for Boc-Asn-OH due to the proposed formation of Boc-aminosuccinimide during activation. The resultant GRF(1-29) analog was comparable to a control prepared with multiple DCC couplings under optimized conditions. In a parallel study, unprotected Boc-(hydroxy)-amino acids were successfully coupled with the BOP reagent. However, the number of coupling cycles after the introduction of unprotected hydroxy-amino acid must be minimal (less than 10). The use of the BOP reagent with unprotected Tyr in solid phase peptide synthesis was also clearly established.

摘要

Castro等人[《四面体通讯》(1975年)14卷,1219 - 1222页]介绍的BOP试剂[苯并三唑-1-基-氧基-三(二甲基氨基)鏻六氟磷酸盐]非常适合用于固相肽合成。与DCC以及其他活化方法(包括对称酸酐和DCC/HOBt方法)相比,使用BOP的偶联速率更具优势。采用固相方法的BOP偶联对于肽键形成而言进行得更快且完成程度更高,而这些肽键形成反应此前使用传统DCC方法时被确定为非常缓慢。使用BOP进行逐步固相肽合成成功用于制备[Ala15]-GRF(1 - 29)-NH2的(22 - 29)和(13 - 29)片段。每个循环使用3当量的BOP和Boc - 氨基酸以及5.3当量的二异丙基乙胺在DMF中进行单偶联。使用BOP方法(单偶联)得到的片段产率更高,纯度与通过DCC偶联方法进行多次偶联时相当。还使用BOP方法(每个循环在DMF中使用单偶联、3当量的BOP和Boc - 氨基酸以及5.3当量的二异丙基乙胺)进行了[Ala15]-GRF(1 - 29)-NH2的全合成。由于在活化过程中可能形成Boc - 氨基琥珀酰亚胺,所以仅对Boc - Asn - OH需要进行多次偶联。所得的GRF(1 - 29)类似物与在优化条件下用多次DCC偶联制备的对照物相当。在一项平行研究中,未保护的Boc -(羟基)-氨基酸成功地与BOP试剂偶联。然而,引入未保护的羟基氨基酸后的偶联循环次数必须最少(少于10次)。在固相肽合成中使用BOP试剂与未保护的Tyr的情况也已明确确立。

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