Molecular and Biological Function Research Core, Research Institute of Green Science and Technology, Shizuoka University, Ohya 836, Suruga-ku, Shizuoka, Japan.
Department of Applied Life Science, Faculty of Agriculture, Shizuoka University, Ohya 836, Suruga-ku, Shizuoka, Japan.
Mol Biotechnol. 2023 Mar;65(3):401-409. doi: 10.1007/s12033-022-00548-3. Epub 2022 Aug 13.
In this study, silkworm larvae were used for expression of porcine rotavirus A (KS14 strain) inner capsid protein, VP6, and outer capsid protein, VP7. Initially, VP6 was fused with Strep-tag II and FLAG-tag (T-VP6), and T-VP6 was fused further with the signal peptide of Bombyx mori 30k6G protein (30k-T-VP6). T-VP6 and 30 k-T-VP6 were then expressed in the fat body and hemolymph of silkworm larvae, respectively, with respective amounts of 330 μg and 50 μg per larva of purified protein. Unlike T-VP6, 30k-T-VP6 was N-glycosylated due to attached signal peptide. Also, VP7 was fused with PA-tag (VP7-PA). Additionally, VP7 was fused with Strep-tag II, FLAG-tag, and the signal peptide of Bombyx mori 30k6G protein (30k-T-ΔVP7). Both VP7-PA and 30k-T-ΔVP7 were expressed in the hemolymph of silkworm larvae, with respective amounts of 26 μg and 49 μg per larva of purified protein, respectively. The results from our study demonstrated that T-VP6 formed nanoparticles of greater diameter compared with the ones formed by 30k-T-VP6. Also, higher amount of VP6 expressed in silkworm larvae reveal that VP6 holds the potential for its use in vaccine development against porcine rotavirus with silkworm larvae as a promising host for the production of such multi-subunit vaccines.
在这项研究中,我们使用家蚕幼虫来表达猪轮状病毒 A(KS14 株)的内部衣壳蛋白 VP6 和外部衣壳蛋白 VP7。最初,VP6 与 Strep-tag II 和 FLAG-tag(T-VP6)融合,然后 T-VP6 与家蚕 30k6G 蛋白的信号肽(30k-T-VP6)进一步融合。T-VP6 和 30k-T-VP6 分别在家蚕幼虫的脂肪体和血液中表达,纯化蛋白的每条幼虫分别产生 330μg 和 50μg。与 T-VP6 不同,由于附着的信号肽,30k-T-VP6 发生了 N-糖基化。此外,VP7 与 PA-tag(VP7-PA)融合。另外,VP7 与 Strep-tag II、FLAG-tag 和 Bombyx mori 30k6G 蛋白的信号肽(30k-T-ΔVP7)融合。VP7-PA 和 30k-T-ΔVP7 分别在家蚕幼虫的血液中表达,纯化蛋白的每条幼虫分别产生 26μg 和 49μg。我们的研究结果表明,与 30k-T-VP6 形成的纳米颗粒相比,T-VP6 形成的纳米颗粒直径更大。此外,在家蚕幼虫中表达的 VP6 量更高,这表明 VP6 具有作为猪轮状病毒疫苗开发的潜力,家蚕幼虫作为此类多亚单位疫苗生产的有前途的宿主。