Miranda L P, Meutermans W D, Smythe M L, Alewood P F
Centre for Drug Design & Development, The University Of Queensland, Brisbane, Queensland 4072, Australia.
J Org Chem. 2000 Sep 8;65(18):5460-8. doi: 10.1021/jo991340+.
Overcoming the phenomenon known as "difficult" synthetic sequences has been a major goal in solid-phase peptide synthesis for over 30 years. In this work the advantages of amide backbone-substitution in the solid-phase synthesis of "difficult" peptides are augmented by developing an activated N(alpha)()-acyl transfer auxiliary. Apart from disrupting troublesome intermolecular hydrogen-bonding networks, the primary function of the activated N(alpha)()-auxiliary was to facilitate clean and efficient acyl capture of large or beta-branched amino acids and improve acyl transfer yields to the secondary N(alpha)()-amine. We found o-hydroxyl-substituted nitrobenzyl (Hnb) groups were suitable N(alpha)()-auxiliaries for this purpose. The relative acyl transfer efficiency of the Hnb auxiliary was superior to the 2-hydroxy-4-methoxybenzyl (Hmb) auxiliary with protected amino acids of varying size. Significantly, this difference in efficiency was more pronounced between more sterically demanding amino acids. The Hnb auxiliary is readily incorporated at the N(alpha)()-amine during SPPS by reductive alkylation of its corresponding benzaldehyde derivative and conveniently removed by mild photolysis at 366 nm. The usefulness of the Hnb auxiliary for the improvement of coupling efficiencies in the chain-assembly of difficult peptides was demonstrated by the efficient Hnb-assisted Fmoc solid-phase synthesis of a known hindered difficult peptide sequence, STAT-91. This work suggests the Hnb auxiliary will significantly enhance our ability to synthesize difficult polypeptides and increases the applicability of amide-backbone substitution.
30多年来,克服所谓“困难”的合成序列这一现象一直是固相肽合成的主要目标。在这项工作中,通过开发一种活化的N(α)-酰基转移助剂,增强了酰胺主链取代在“困难”肽固相合成中的优势。除了破坏麻烦的分子间氢键网络外,活化的N(α)-助剂的主要功能是促进对大的或β-支链氨基酸的干净且高效的酰基捕获,并提高向仲N(α)-胺的酰基转移产率。我们发现邻羟基取代的硝基苄基(Hnb)基团是适用于此目的的N(α)-助剂。对于不同大小的受保护氨基酸,Hnb助剂的相对酰基转移效率优于2-羟基-甲氧基苄基(Hmb)助剂。重要的是,在空间位阻更大的氨基酸之间,这种效率差异更为明显。Hnb助剂在固相肽合成过程中通过其相应苯甲醛衍生物的还原烷基化反应很容易在N(α)-胺处引入,并通过在366nm下的温和光解方便地除去。通过对已知的受阻困难肽序列STAT-91进行高效的Hnb辅助Fmoc固相合成,证明了Hnb助剂在改善困难肽链组装中偶联效率方面的有用性。这项工作表明,Hnb助剂将显著增强我们合成困难多肽的能力,并提高酰胺主链取代的适用性。