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Removing the Polyanionic Cargo Requirement for Assembly of Alphavirus Core-Like Particles to Make an Empty Alphavirus Core

机译:去除alphavirus核心样颗粒组装的多阴离子货物要求以制作空的alphavirus核心

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摘要

The assembly of alphavirus nucleocapsid cores requires electrostatic interactions between the positively charged N-terminus of the capsid protein (CP) and the encapsidated polyanionic cargo. This system differs from many other viruses that can self-assemble particles in the absence of cargo, or form “empty” particles. We hypothesized that the introduction of a mutant, anionic CP could replace the need for charged cargo during assembly. In this work, we produced a CP mutant, Minus 38 (M38), where all N-terminal charged residues are negatively-charged. When wild-type (WT) and M38 CPs were mixed, they assembled into core-like particles (CLPs). These “empty” particles were of similar size and morphology to WT CLPs assembled with DNA cargo, but did not contain nucleic acid. When DNA cargo was added to the assembly mixture, the amount of M38 CP that was assembled into CLPs decreased, but was not fully excluded from the CLPs, suggesting that M38 competes with DNA to interact with WT CPs. The composition of CLPs can be tuned by altering the order of addition of M38 CP, WT CP, and DNA cargo. The ability to produce alphavirus CLPs that contain a range of amounts of encapsidated cargo, including none, introduces a new platform for packaging cargo for delivery or imaging purposes.
机译:alphavirus核衣壳核心的组装需要衣壳蛋白(CP)和包封的多阴离子货物的带正电荷的N-末端之间的静电相互作用。该系统与许多其他病毒不同,可以在没有货物的情况下自组装颗粒,或形成“空”颗粒。我们假设引入突变体,阴离子CP可以在组装期间取代对收费货物的需求。在这项工作中,我们生产了CP突变体,减去38(M38),其中所有N末端带电残基都是带负电荷的。当混合野生型(WT)和M38 CP时,它们组装成芯状颗粒(CLPS)。这些“空”颗粒具有与DNA货物组装的WT CLP相似的大小和形态,但不含核酸。当将DNA货物加入组装混合物时,将组装成CLP的M38 CP的量减少,但未完全从CLPS中排除,表明M38与DNA竞争以与WT CPS相互作用。通过改变M38 CP,WT CP和DNA货物的添加顺序,可以调整CLP的组成。产生包含一系列封装货物的alphavirous的能力,包括无,引入了用于包装货物以供货或成像目的的新平台。

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