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Characterization of Coxsackievirus B4 virus-like particles VLP produced by the recombinant baculovirus-insect cell system expressing the major capsid protein

机译:表征Coxsackievirus B4病毒样粒子VLP,其具有表达主要衣壳蛋白的重组杆状病毒 - 昆虫系统产生的

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Coxsackievirus B4 (CV-B4) is suspected to be an environmental factor that has the intrinsic capacity to damage the pancreatic beta cells and therefore causes insulitis and type 1 diabetes (T1D). Although vaccination against CV-B4 could reduce the incidence of this chronic auto-immune disease, there is currently no therapeutic reagent or vaccine in clinical use. By the employment of the Bac-to-Bac (R) vector system to express the major viral capsid protein, we contributed towards the development of a CV-B4 vaccine by producing CV-B4 virus-like particles (VLPs) from recombinant baculovirus in infected insect cells. In fact Western blot and Immunofluorescence analysis detected the viral protein 1 (VP1) in the cells resulting from the construction of a recombinant bacmid DNA carrying the key immunogenic protein then transfected in the insect cells. Sucrose gradient ultracentrifugation fractions of the infected cell lysates contained the recombinant protein and the electron microscopy demonstrated the presence of VLPs in these sucrose fractions. This study clearly shows for the first time the expression of CVB4 VP1 structure protein alone can form VLPs in the baculovirus-infected insect cell keeping conserved both characteristics and morphology.
机译:怀疑Coxsackievirus B4(CV-B4)是一种环境因素,具有损伤胰腺β细胞的内在能力,因此引起紫外线和1型糖尿病(T1D)。虽然对CV-B4的疫苗接种可以降低这种慢性自身免疫疾病的发生率,但目前没有临床使用的治疗试剂或疫苗。通过使用BAC-TO-BAC(R)载体系统来表达主要病毒衣壳蛋白,我们通过从重组杆状病毒中产生CV-B4病毒样颗粒(VLP)来促进CV-B4疫苗的开发感染昆虫细胞。实际上Western印迹和免疫荧光分析检测到携带关键免疫原蛋白的重组Bacmid DNA的细胞中的病毒蛋白1(VP1),然后在昆虫细胞中转染。感染细胞裂解物的蔗糖梯度超速离心分数含有重组蛋白,电子显微镜证明这些蔗糖级分中存在VLP。本研究清楚地显示了首次表达CVB4 VP1结构蛋白的表达可以在杆状病毒感染的昆虫细胞中形成VLP,保持保守的特征和形态。

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