Zuckermann R N, Banville S C
Chiron Corporation, Emeryville, CA 94608.
Pept Res. 1992 May-Jun;5(3):169-74.
A robotic workstation has been constructed that automates the deprotection of peptides with trifluoroacetic acid-labile side-chain protecting groups and cleavage from acid-labile resins. The workstation was constructed around a Zymark robot arm and is integrated with a peptide synthesis workstation. Peptide resin samples are deprotected and cleaved with a trifluoroacetic acid/scavenger cocktail that accommodates all common protecting groups used with Fmoc chemistry. Aqueous-ether continuous extraction is used to remove the scavengers and reaction by-products. The apparatus cleaves a 50-500-mg sample of peptide resin every 2 hours and provides the peptides as an aqueous solution in 10% HOAc. Crude peptides obtained with this apparatus are free from residual scavengers and range in yield from 50%-80%. This method is applicable to all but the most hydrophobic peptides and minimizes human contact with the noxious cleavage reagents.
已经构建了一个机器人工作站,该工作站可自动对带有三氟乙酸不稳定侧链保护基团的肽进行脱保护,并从酸不稳定树脂上裂解下来。该工作站围绕Zymark机器人手臂构建,并与肽合成工作站集成。肽树脂样品用三氟乙酸/清除剂混合物进行脱保护和裂解,该混合物适用于Fmoc化学中使用的所有常见保护基团。采用水-醚连续萃取法去除清除剂和反应副产物。该仪器每2小时裂解50-500毫克的肽树脂样品,并以10%醋酸水溶液的形式提供肽。用该仪器获得的粗肽没有残留的清除剂,产率在50%-80%之间。这种方法适用于除最疏水的肽之外的所有肽,并最大限度地减少了人类与有害裂解试剂的接触。