Department of Biophysical, Chemistry, Chemical Centre, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden.
Department of Biophysical, Chemistry, Chemical Centre, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden; Wren Therapeutics Limited, UK.
Biophys Chem. 2021 Feb;269:106511. doi: 10.1016/j.bpc.2020.106511. Epub 2020 Nov 28.
Malfunction and amyloid formation of the Islet Amyloid Polypeptide (IAPP) are factors contributing to Type 2 diabetes. Unravelling the mechanism of IAPP aggregate formation may forward our understanding of this process and its effect on pancreatic β-islet cell. Such mechanistic studies require access to sequence homogeneous and highly pure IAPP. Here we present a new facile protocol for the production of pure recombinant human IAPP at relatively high yield. The protocol uses a His-tagged version of the N mutant EDDIE, which drives expression to inclusion bodies, from which the peptide is purified using sonication, refolding and auto-cleavage, removal of EDDIE using Ni-NTA chromatography and reverse-phase HPLC. The purified material is used at multiple concentrations in aggregation kinetics measurements monitored by thioflavin-T fluorescence. Global analysis of the data implies a double nucleation aggregation mechanism including both primary and secondary nucleation.
胰岛淀粉样多肽(IAPP)的功能障碍和淀粉样形成是导致 2 型糖尿病的因素。揭示 IAPP 聚集形成的机制可能有助于我们理解这一过程及其对胰腺β-胰岛细胞的影响。这种机制研究需要获得序列均一且高度纯的 IAPP。在这里,我们提出了一种新的简便方案,可相对高产率地生产纯重组人 IAPP。该方案使用了一种带有 His 标签的 N 突变 EDDIE 版本,该版本将表达驱动到包涵体中,然后使用超声处理、重折叠和自动切割从包涵体中纯化肽,使用 Ni-NTA 层析和反相 HPLC 去除 EDDIE。在聚集动力学测量中,将纯化的材料以多个浓度使用,通过硫黄素-T 荧光进行监测。数据的全局分析表明存在双核化聚集机制,包括初级核化和次级核化。