Department of Chemistry, Cleveland State University, Cleveland, OH 44115, USA.
Bioconjug Chem. 2013 Apr 17;24(4):550-9. doi: 10.1021/bc300399f. Epub 2013 Mar 15.
We report the synthesis of bioinspired liposomal thrombomodulin (TM) conjugates by chemoselective and site-specific liposomal conjugation of recombinant TM at C-terminus. TM is an endothelial cell membrane protein that acts as a major cofactor in the protein C anticoagulant pathway. To closely mimic membrane protein structural features of TM, we proposed membrane-mimetic re-expression of recombinant TM onto liposome. A recombinant TM containing the EGF-like 456 domains and an azidohomoalanine at C-terminus was expressed in E. coli. Conjugation of the recombinant TM onto liposome via Staudinger ligation and copper-free click chemistry were investigated as an optimal platform for exploring membrane protein TM's activity, respectively. The bioinspired liposomal TM conjugates were confirmed with Western blotting and protein C activation activity. The recombinant TM-liposome conjugates showed a 2-fold higher k(cat)/K(m) value for protein C activation than that of the recombinant TM alone, which indicated that the lipid membrane has a beneficiary effect on the recombinant TM's activity. The reported liposomal protein conjugate approach provides a rational design strategy for both studying membrane protein TM's functions and generating a membrane protein TM-based anticoagulant agent.
我们通过重组 TM 在 C 末端的化学选择性和定点脂质体缀合,报告了仿生脂质体血栓调节蛋白 (TM) 缀合物的合成。TM 是一种内皮细胞膜蛋白,作为蛋白 C 抗凝途径的主要辅因子。为了紧密模拟 TM 的膜蛋白结构特征,我们提出将重组 TM 重新表达到脂质体上进行膜模拟。在大肠杆菌中表达了含有 EGF 样结构域 456 和 C 末端叠氮高丙氨酸的重组 TM。通过 Staudinger 连接和无铜点击化学将重组 TM 缀合到脂质体上,分别作为探索膜蛋白 TM 活性的最佳平台进行了研究。通过 Western blot 和蛋白 C 激活活性证实了仿生脂质体 TM 缀合物。与单独的重组 TM 相比,重组 TM-脂质体缀合物对蛋白 C 的激活具有 2 倍更高的 k(cat)/K(m) 值,这表明脂质膜对重组 TM 的活性具有有益的影响。所报道的蛋白脂质体缀合方法为研究膜蛋白 TM 的功能和生成基于膜蛋白 TM 的抗凝剂提供了合理的设计策略。