Pawlas Jan, Svensson Thomas, Rasmussen Jon H
PolyPeptide Group Limhamnsvägen 108, PO BOX 30089 20061 Limhamn Sweden
RSC Adv. 2019 Nov 28;9(67):38928-38934. doi: 10.1039/c9ra08553j. eCollection 2019 Nov 27.
Aiming at elevating the environmental profile of the solid-phase peptide synthesis (SPPS) methodology by improving the quality of crude peptides that SPPS provides we assessed a series of benzylthiols (BTs) as scavengers for global deprotection/TFA cleavage of exenatide peptide resin accessed by Fmoc SPPS. In these studies we identified 1,4-BDMT as a scavenger that affords the peptide in higher quality than the standard aliphatic thiol reagents, not least in terms of the content of critical peptide impurities in the crude material. Further, 1,4-BDMT exhibited favorable UV detectability as well as stability and solubility in TFA. Finally, based on the MS assessment of the crude exenatide products herein we propose that thiol scavengers in the cleavage of Trp containing peptide resins do not minimize the content of Trp oxidants by means of inhibiting Trp oxidation but rather by forming a peptide-thiol adduct a mechanism involving an attack of a thiol on an oxindolylalanine (Oia) impurity present in the crude material.
为了通过提高固相肽合成(SPPS)方法提供的粗肽质量来提升其环境形象,我们评估了一系列苄硫醇(BTs)作为Fmoc SPPS法合成艾塞那肽肽树脂进行全局脱保护/TFA切割时的清除剂。在这些研究中,我们确定1,4 - BDMT作为一种清除剂,它所提供的肽的质量高于标准脂肪族硫醇试剂,尤其是在粗品中关键肽杂质的含量方面。此外,1,4 - BDMT在TFA中表现出良好的紫外可检测性以及稳定性和溶解性。最后,基于本文对粗品艾塞那肽产物的质谱评估,我们提出在含色氨酸肽树脂的切割中,硫醇清除剂并非通过抑制色氨酸氧化来使色氨酸氧化剂的含量最小化,而是通过形成肽 - 硫醇加合物——一种涉及硫醇攻击粗品中存在的羟吲哚基丙氨酸(Oia)杂质的机制。