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Deprotection Reagents in Fmoc Solid Phase Peptide Synthesis: Moving Away from Piperidine?

机译:Fmoc固相肽合成中的脱保护剂:要移去哌啶吗?

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摘要

The deprotection step is crucial in order to secure a good quality product in Fmoc solid phase peptide synthesis. 9-Fluorenylmethoxycarbonyl (Fmoc) removal is achieved by a two-step mechanism reaction favored by the use of cyclic secondary amines; however, the efficiency of the reaction could be affected by side reactions and by-product formation. Several aspects have to be taken into consideration when selecting a deprotection reagent: its physicochemical behavior, basicity (pKa) and polarity, concentration, and time of reaction, toxicity and disposability of residues and, finally, availability of reagents. This report presents a comparison of the performance of three strategies for deprotection using microwave-assisted Fmoc peptide synthesis. Four peptide sequences were synthesized using Rink amide resin with a Liberty Blue™ automated synthesizer and 4-methylpiperidine (4MP), piperidine (PP), and piperazine (PZ) as Fmoc removal reagents. In the first instance all three reagents behaved similarly. A detailed analysis showed a correlation between the hydrophobicity and size of the peptide with the yield and purity of the obtained product. The three reagents are interchangeable, and replacement of piperidine could be advantageous regarding toxicity and reagent handling.
机译:为了确保在Fmoc固相肽合成中获得高质量的产品,脱保护步骤至关重要。通过使用环仲胺促进的两步机理反应可实现9-氟烯基甲氧羰基(Fmoc)的去除;但是,反应效率可能会受到副反应和副产物形成的影响。选择脱保护剂时必须考虑以下几个方面:其物理化学行为,碱度(pKa)和极性,浓度,反应时间,残留物的毒性和可处置性以及最后可利用的试剂。本报告比较了使用微波辅助的Fmoc肽合成进行三种脱保护策略的性能。使用Rink酰胺树脂与Liberty Blue™自动合成仪和4-甲基哌啶(4MP),哌啶(PP)和哌嗪(PZ)作为Fmoc去除试剂,合成了四个肽序列。在第一种情况下,所有三种试剂的行为都相似。详细的分析表明,肽的疏水性和大小与所得产物的产率和纯度之间存在相关性。三种试剂是可互换的,在毒性和试剂处理方面,哌啶的替换可能是有利的。

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