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首页> 外文期刊>Journal of insect biotechnology and sericology >Immobilization of protein kinase C into cypovirus polyhedra
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Immobilization of protein kinase C into cypovirus polyhedra

机译:将蛋白激酶C固定在杯状病毒多面体中

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Certain insect viruses produce stable infectious micro-crystals called polyhedra which function to protect the virus after the death of infected larvae. Polyhedra form within infected cells and contain numerous virus particles embedded in the crystalline lattice of the viral protein polyhedrin. We have previously demonstrated a novel protein engineering technology for the immobilization of protein molecules into Bombyx mori cypovirus (BmCPV) polyhedra. In addition, polyhedra containing foreign proteins have been shown to be highly stable and able to maintain the function of immobilized proteins. In this study, protein kinase C (PKC) was immobilized into polyhedra by using two types of immobilization signals. One immobilization signal was developed by the identification of the BmCPV virus occlusion mechanism into the polyhedra. Another immobilization signal was identified by the atomic structural analysis of the BmCPV polyhedrin. After PKC was fused each with an immobilization signal, the recombinant PKC was immobilized into polyhedra and the enzymatic activities were assayed. These results showed that the activity of PKC immobilized into polyhedra has been maintained and compared with commercially used PKC.
机译:某些昆虫病毒会产生稳定的传染性微晶体,称为多面体,在被感染的幼虫死亡后起保护病毒的作用。多面体在感染的细胞内形成,并包含许多嵌入病毒蛋白多面体蛋白晶格中的病毒颗粒。我们之前已经展示了一种新颖的蛋白质工程技术,用于将蛋白质分子固定到家蚕丝状病毒(BmCPV)多面体中。另外,已证明含有外来蛋白质的多面体是高度稳定的,并能够维持固定蛋白质的功能。在这项研究中,通过使用两种类型的固定信号将蛋白激酶C(PKC)固定在多面体中。通过识别BmCPV病毒闭塞机制进入多面体,产生了一种固定信号。通过BmCPV多面体的原子结构分析确定了另一个固定化信号。 PKC与固定信号融合后,将重组PKC固定在多面体中并测定酶活性。这些结果表明,固定在多面体中的PKC的活性得以维持,并与市售的PKC进行了比较。

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