Animal Immune and Cell Biology Research Unit, National Institute of Agrobiological Sciences, Tsukuba, Ibaraki, Japan.
PLoS One. 2012;7(4):e34632. doi: 10.1371/journal.pone.0034632. Epub 2012 Apr 4.
Bombyx mori (silkworm) silk proteins are being utilized as unique biomaterials for medical applications. Chemical modification or post-conjugation of bioactive ligands expand the applicability of silk proteins; however, the processes are elaborate and costly. In this study, we used transgenic silkworm technology to develop single-chain variable fragment (scFv)-conjugated silk fibroin. The cocoons of the transgenic silkworm contain fibroin L-chain linked with scFv as a fusion protein. After dissolving the cocoons in lithium bromide, the silk solution was dialyzed, concentrated, freeze-dried, and crushed into powder. Immunoprecipitation analyses demonstrate that the scFv domain retains its specific binding activity to the target molecule after multiple processing steps. These results strongly suggest the promise of scFv-conjugated silk fibroin as an alternative affinity reagent, which can be manufactured using transgenic silkworm technology at lower cost than traditional affinity carriers.
家蚕(桑蚕)丝蛋白作为独特的生物材料,正在被应用于医学领域。通过化学修饰或生物活性配体的后期缀合,可以扩展丝蛋白的适用性;然而,这些过程繁琐且昂贵。在本研究中,我们利用转基因家蚕技术,开发了与单链可变片段(scFv)缀合的丝素蛋白。转基蚕的茧中含有作为融合蛋白的丝素 L 链与 scFv 相连接。将茧溶解在溴化锂中后,丝溶液经过透析、浓缩、冷冻干燥,并粉碎成粉末。免疫沉淀分析表明,scFv 结构域在经过多次处理步骤后仍然保留其对靶分子的特异性结合活性。这些结果强烈表明,scFv 缀合丝素蛋白作为替代亲和试剂具有应用前景,该亲和试剂可以利用转基因家蚕技术以比传统亲和载体更低的成本进行生产。