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The energetic contributions of scaffolding and coat proteins to the assembly of bacteriophage procapsids

机译:支架蛋白和外壳蛋白对噬菌体前壳体组装的有力贡献

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In vitro assembly of bacteriophage P22 procapsids requires coat protein and sub-stoichiometric concentrations of the internal scaffolding protein. If there is no scaffolding protein, coat protein assembles aberrantly, but only at higher concentrations. Too much scaffolding protein results in partial procapsids. By treating the procapsid as a lattice that can bind and be stabilized by scaffolding protein we dissect procapsid assembly as a function of protein concentration and scaffolding/coat protein ratio. We observe that (i) the coat-coat association is weaker for procapsids than for aberrant polymer formation, (ii) scaffolding protein makes a small but sufficient contribution to stability to favor the procapsid form, and (iii) there are multiple classes of scaffolding protein binding sites. This approach should be applicable to other heterogeneous virus assembly reactions and will facilitate our ability to manipulate such in vitro reactions to probe assembly, and for development of nanoparticles.
机译:噬菌体P22衣壳的体外组装需要外壳蛋白和内部支架蛋白的化学计量浓度以下。如果没有脚手架蛋白,外壳蛋白会异常组装,但浓度较高。支架蛋白过多会导致部分衣壳。通过将前壳体视作可以与支架蛋白结合并稳定的晶格,我们将前壳体组装作为蛋白浓度和支架/外壳蛋白比率的函数进行剖析。我们观察到(i)衣壳与外壳的缔合比异常的聚合物形成要弱;(ii)支架蛋白对稳定性的贡献很小但足够,以有利于前壳形式;(iii)支架有多种类型蛋白质结合位点。这种方法应适用于其他异质性病毒装配反应,并将促进我们操纵此类体外反应以探测探针装配以及开发纳米粒子的能力。

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