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Towards a novel influenza vaccine: engineering of hemagglutinin on a platform of adenovirus dodecahedron

机译:迈向新型流感疫苗:在腺病毒十二面体平台上改造血凝素

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Background The production process for the current influenza vaccine takes about 6 months and its antigenic composition must be modified annually. In the attempt towards developing influenza vaccine production that would be faster, safer and cheaper we engineered an influenza vaccine in which multiple copies of hemagglutinin (HA) would be delivered by a vector, adenovirus dodecahedron (Ad Dd). Dd is a virus-like particle, formed by assembly of twelve copies of pentameric penton base (Pb) proteins responsible for virus penetration. In order to attach HA to the vector, an adaptor containing WW domains was used. The WW domain is a linear peptide fragment identified as a partner of proline-proline-x-tyrosine (PPxY) motif present at the N-terminal extremity of the Pb protein, which is a building block of Dd. That tandem of three WW domains in fusion with the protein of interest enables interaction with Dd and efficient translocation to the cytoplasm of cells in culture. Results Since HA is an oligomeric protein with complicated processing, we prepared six different constructs of HA (A/swan/Poland/467/2006(H5N1)) in fusion with the WW adaptor. Herein we report baculovirus expression and functional analysis of six HA-WW variants. The best behaving variant was successfully delivered into human cells in vitro . Conclusions Engineering of a soluble complex of HA with Dd, a virus-like particle that serves as a vector, an adjuvant and as a multivalent presentation platform, is an important step toward a novel influenza vaccine.
机译:背景技术当前流感疫苗的生产过程大约需要6个月,并且其抗原成分必须每年进行修改。为了开发更快,更安全,更便宜的流感疫苗,我们设计了一种流感疫苗,其中通过载体腺病毒十二面体(Ad Dd)可以递送多份血凝素(HA)。 Dd是一种病毒样颗粒,由负责病毒渗透的十二个五聚体五聚体碱基(Pb)蛋白组装而成。为了将HA附加到载体,使用了包含WW域的适配器。 WW结构域是线性肽片段,被鉴定为存在于Pb蛋白N末端的脯氨酸-脯氨酸-x-酪氨酸(PPxY)基序的配偶体,而Pb蛋白是Dd的组成部分。三个WW结构域与目标蛋白融合在一起,可以与Dd相互作用并有效地转移到培养细胞的细胞质中。结果由于HA是一种加工复杂的寡聚蛋白,我们与WW适配器融合制备了六种不同的HA构建体(A / swan / Poland / 467/2006(H5N1))。在此,我们报告杆状病毒的表达和六个HA-WW变体的功能分析。表现最好的变体已成功地体外传递到人类细胞中。结论设计HA与Dd的可溶性复合物是一种新型流感疫苗的重要步骤,Dd是一种病毒样颗粒,可作为载体,佐剂和多价呈递平台。

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