Yang Shin-Yi, Chen Ying-Jung, Kao Pei-Hsiu, Chang Long-Sen
Institute of Biomedical Sciences, National Sun Yat-Sen University, Kaohsiung 804, Taiwan.
Institute of Biomedical Sciences, National Sun Yat-Sen University, Kaohsiung 804, Taiwan; Department of Biotechnology, Kaohsiung Medical University, Kaohsiung 807, Taiwan.
Arch Biochem Biophys. 2014 Dec 15;564:43-51. doi: 10.1016/j.abb.2014.10.001. Epub 2014 Oct 13.
The aim of the present study aimed to investigate whether glycated bovine serum albumin (BSA) showed novel activities on the lipid-water interface. Mannosylated BSA (Man-BSA) was prepared by modification of the carboxyl groups with p-aminophenyl α-d-mannopyranoside. In contrast to BSA, Man-BSA notably induced membrane permeability of egg yolk phosphatidylcholine (EYPC)/egg yolk sphingomyelin (EYSM)/cholesterol (Chol) and EYPC/EYSM vesicles. Noticeably, Man-BSA induced the fusion of EYPC/EYSM/Chol vesicles, but not of EYPC/EYSM vesicles. Although BSA and Man-BSA showed similar binding affinity for lipid vesicles, the lipid-bound conformation of Man-BSA was distinct from that of BSA. Moreover, Man-BSA adopted distinct structure upon binding with the EYPC/EYSM/Chol and EYPC/EYSM vesicles. Man-BSA could induce the fusion of EYPC/EYSM/Chol vesicles with K562 and MCF-7 cells, while Man-BSA greatly induced the leakage of Chol-depleted K562 and MCF-7 cells. The modified BSA prepared by conjugating carboxyl groups with p-aminophenyl α-d-glucopyranoside also showed membrane-perturbing activities. Collectively, our data indicate that conjugation of carboxyl groups with monosaccharide generates functional BSA with membrane-perturbing activities on the lipid-water interface.
本研究旨在探究糖化牛血清白蛋白(BSA)在脂质 - 水界面是否具有新的活性。通过用对氨基苯基α - D - 甘露糖苷修饰羧基来制备甘露糖基化牛血清白蛋白(Man - BSA)。与BSA相比,Man - BSA显著诱导蛋黄磷脂酰胆碱(EYPC)/蛋黄鞘磷脂(EYSM)/胆固醇(Chol)和EYPC/EYSM囊泡的膜通透性。值得注意的是,Man - BSA诱导EYPC/EYSM/Chol囊泡融合,但不诱导EYPC/EYSM囊泡融合。尽管BSA和Man - BSA对脂质囊泡表现出相似的结合亲和力,但Man - BSA与脂质结合的构象不同于BSA。此外,Man - BSA在与EYPC/EYSM/Chol和EYPC/EYSM囊泡结合时呈现出不同的结构。Man - BSA可诱导EYPC/EYSM/Chol囊泡与K562和MCF - 7细胞融合,而Man - BSA极大地诱导了胆固醇耗尽的K562和MCF - 7细胞的渗漏。通过用对氨基苯基α - D - 葡萄糖苷共轭羧基制备的修饰BSA也表现出膜扰动活性。总体而言,我们的数据表明羧基与单糖的共轭产生了在脂质 - 水界面具有膜扰动活性的功能性BSA。