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首页> 外文期刊>Biotechnology and Bioprocess Engineering >Production of human papillomavirus 6b L1 virus-like particles incorporated with enhanced green fluorescent whole protein in silkworm larvae
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Production of human papillomavirus 6b L1 virus-like particles incorporated with enhanced green fluorescent whole protein in silkworm larvae

机译:家蚕幼虫中掺入增强的绿色荧光全蛋白的人乳头瘤病毒6b L1病毒样颗粒的产生

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Using human papillomavirus (HPV) as a subunit vaccine and its manipulation of surface loops is current trending research. Since the atomic model of L1 protein conformations were deciphered, their manipulations of epitopes bring multivalent vaccines. Here, in the present study, we have manipulated antigenic loops of HPV 6b L1 capsid proteins in the amino acid regions 174 ∼ 175 (L1:174EGFP) and 348 ∼ 349 (L1:348EGFP) with whole enhanced green fluorescent protein(EGFP), expressed in the silkworm larva using Bombyx mori nucleopolyhedrovirus (BmNPV) bacmid technology. The expressed proteins were partially purified using sucrose density-gradient centrifugation and size-exclusion chromatography (SEC). The display of EGFP in virus-like particles (VLPs) was confirmed by immuno-fluorescence microscopy, Western blots and immune-transmission electron microscopy (immuno-TEM). There was higher expression of EGFP incorporated L1:174EGFP than L1:348EGFP. Hydrodynamic diameter of VLPs was corroborated by dynamic light scattering, confirming the size of expected range of around 160 nm and substantiating the incorporation of EGFP. From immuno-TEM, each L1:EGFP VLP formed small particles, suggesting that small particles of L1:EGFP fusion protein were aggregated. Our study illustrates that incorporation of whole protein can efficiently form chimeric VLPs, without hindering the conformation. HPV L1 protein accommodated a whole protein on its antigenic loop as a small particle, but an inserted whole protein was unstable.
机译:使用人乳头瘤病毒(HPV)作为亚单位疫苗及其表面环的操纵是当前的趋势研究。由于破译了L1蛋白构象的原子模型,因此对表位的操纵带来了多价疫苗。在这里,在本研究中,我们用完整增强的绿色荧光蛋白(EGFP)操纵了HPV 6b L1衣壳蛋白在氨基酸区域174〜175(L1:174EGFP)和348〜349(L1:348EGFP)中的抗原环,利用家蚕核多角体病毒(BmNPV)杆粒技术在家蚕幼虫中表达。表达的蛋白质使用蔗糖密度梯度离心和尺寸排阻色谱法(SEC)进行部分纯化。通过免疫荧光显微镜,Western印迹和免疫透射电子显微镜(immuno-TEM)证实了EGFP在病毒样颗粒(VLP)中的展示。掺入L1:174EGFP的EGFP的表达高于L1:348EGFP。 VLP的流体动力学直径通过动态光散射得到了证实,证实了预期范围约为160 nm的大小,并证实了EGFP的掺入。从免疫TEM,每个L1:EGFP VLP形成小颗粒,表明L1:EGFP融合蛋白的小颗粒被聚集。我们的研究表明,完整蛋白的掺入可以有效地形成嵌合VLP,而不会阻碍其构象。 HPV L1蛋白在其抗原环上以小颗粒形式容纳完整蛋白,但插入的完整蛋白不稳定。

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