Cristóbal-Lecina Edgar, Pulido Daniel, Martin-Malpartida Pau, Macias Maria J, Albericio Fernando, Royo Miriam
Department of Surfactants and Nanobiotechnology, Institute for Advanced Chemistry of Catalonia (IQAC-CSIC), Jordi Girona 18-26, 08034 Barcelona, Spain.
Centro de Investigación Biomédica en Red Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), 28029 Madrid, Spain.
ACS Omega. 2020 Mar 6;5(10):5508-5519. doi: 10.1021/acsomega.0c00130. eCollection 2020 Mar 17.
A method for conjugating cholesterol to peptide ligands through non-disperse polyethylene glycol (ND-PEG) through a non-hydrolysable linkage is described. The iterative addition of tetraethylene glycol macrocyclic sulfate to cholesterol (Chol) renders a family of highly pure well-defined Chol-PEG compounds with different PEG lengths from 4 up to 20 ethylene oxide units, stably linked through an ether bond. The conjugation of these Chol-PEG compounds to the cyclic (RGDfK) peptide though Lys5 side chains generates different lengths of Chol-PEG-RGD conjugates that retain the oligomer purity of the precursors, as analysis by HRMS and NMR has shown. Other derivatives were synthesized with similar results, such as Chol-PEG-OCH and Chol-PEG conjugated to glutathione and Tf1 peptides through maleimide-thiol chemoselective ligation. This method allows the systematic synthesis of highly pure uniform stable Chol-PEGs, circumventing the use of activation groups on each elongation step and thus reducing the number of synthesis steps.
描述了一种通过不可水解的连接将胆固醇与肽配体通过非分散聚乙二醇(ND-PEG)进行缀合的方法。将四甘醇大环硫酸盐迭代添加到胆固醇(Chol)中,可得到一系列高度纯净、定义明确的Chol-PEG化合物,其PEG长度从4到20个环氧乙烷单元不等,并通过醚键稳定连接。通过Lys5侧链将这些Chol-PEG化合物与环状(RGDfK)肽缀合,可生成不同长度的Chol-PEG-RGD缀合物,如HRMS和NMR分析所示,这些缀合物保留了前体的低聚物纯度。通过马来酰亚胺-硫醇化学选择性连接合成了其他衍生物,如Chol-PEG-OCH以及与谷胱甘肽和Tf1肽缀合的Chol-PEG,结果相似。该方法允许系统地合成高度纯净、均匀稳定的Chol-PEG,避免在每个延伸步骤中使用活化基团,从而减少合成步骤的数量。