Kumada Yoichi, Tokunaga Yasuhide, Imanaka Hiroyuki, Imamura Koreyoshi, Sakiyama Takaharu, Katoh Shigeo, Nakanishi Kazuhiro
Department of Bioscience and Biotechnology, Okayama University, 700-8530, Japan.
Biotechnol Prog. 2006 Mar-Apr;22(2):401-5. doi: 10.1021/bp050331l.
Dodecapeptides that exhibit a high affinity specific to a polystyrene surface (PS-tags) were screened using an Escherichia coli random peptide display library system, and the compounds were used as a peptide tag for the site-specific immobilization of proteins. The various PS-tags obtained after 10 rounds of biopanning selection were mainly composed of basic and aliphatic amino acid residues, most of which were arranged in close proximity to one another. Mutant-type glutathione S-transferases (GSTs) fused with the selected PS-tags, PS19 (RAFIASRRIKRP) and PS23 (AGLRLKKAAIHR) at their C-terminus, GST-PS19 and GST-PS23, when adsorbed on the PS latex beads had a higher affinity than the wild-type GST, and the specific remaining activity of the immobilized mutant-type GSTs was approximately 10 times higher than that of the wild-type GST. The signal intensity detected for GST-PS19 and GST-PS23 adsorbed on hydrophilic and hydrophobic PS surfaces using an anti-peptide antibody specific for the N-terminus peptide of GST was much higher than that for the wild-type GST. These findings indicate that the mutant-type GSTs fused with the selected peptide tags, PS19 and PS23, could be site-specifically immobilized on the surface of polystyrene with their N-terminal regions directed toward the solution. Thus, the selected peptide tags would be useful for protein immobilization in the construction of enzyme-linked immunosorbent assay (ELISA) systems and protein-based biochips.
利用大肠杆菌随机肽展示文库系统筛选出对聚苯乙烯表面具有高亲和力特异性的十二肽(PS标签),并将这些化合物用作蛋白质位点特异性固定的肽标签。经过10轮生物淘选后获得的各种PS标签主要由碱性和脂肪族氨基酸残基组成,其中大部分彼此紧邻排列。在其C末端与选定的PS标签PS19(RAFIASRRIKRP)和PS23(AGLRLKKAAIHR)融合的突变型谷胱甘肽S-转移酶(GST),即GST-PS19和GST-PS23,吸附在PS乳胶珠上时比野生型GST具有更高的亲和力,并且固定化突变型GST的比剩余活性比野生型GST高约10倍。使用对GST的N末端肽具有特异性的抗肽抗体检测到的吸附在亲水和疏水PS表面上的GST-PS19和GST-PS23的信号强度远高于野生型GST。这些发现表明,与选定的肽标签PS19和PS23融合的突变型GST可以将其N末端区域指向溶液,位点特异性地固定在聚苯乙烯表面。因此,选定的肽标签将有助于在酶联免疫吸附测定(ELISA)系统和基于蛋白质的生物芯片构建中固定蛋白质。