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SV40病毒VP1蛋白多聚阴离子诱导装配的单颗粒观察表明,底物大小和结构可调节衣壳几何形状。

Single Particle Observation of SV40 VP1 Polyanion-Induced Assembly Shows That Substrate Size and Structure Modulate Capsid Geometry.

作者信息

Li Chenglei, Kneller Andrew R, Jacobson Stephen C, Zlotnick Adam

机构信息

Department of Molecular and Cellular Biochemistry and ‡Department of Chemistry, Indiana University , Bloomington, Indiana 47405, United States.

出版信息

ACS Chem Biol. 2017 May 19;12(5):1327-1334. doi: 10.1021/acschembio.6b01066. Epub 2017 Mar 30.

Abstract

Simian virus 40 capsid protein (VP1) is a unique system for studying substrate-dependent assembly of a nanoparticle. Here, we investigate a simplest case of this system where 12 VP1 pentamers and a single polyanion, e.g., RNA, form a T = 1 particle. To test the roles of polyanion substrate length and structure during assembly, we characterized the assembly products with size exclusion chromatography, transmission electron microscopy, and single-particle resistive-pulse sensing. We found that 500 and 600 nt RNAs had the optimal length and structure for assembly of uniform T = 1 particles. Longer 800 nt RNA, shorter 300 nt RNA, and a linear 600 unit poly(styrene sulfonate) (PSS) polyelectrolyte produced heterogeneous populations of products. This result was surprising as the 600mer PSS and 500-600 nt RNA have similar mass and charge. Like ssRNA, PSS also has a short 4 nm persistence length, but unlike RNA, PSS lacks a compact tertiary structure. These data indicate that even for flexible substrates, shape as well as size affect assembly and are consistent with the hypothesis that work, derived from protein-protein and protein-substrate interactions, is used to compact the substrate.

摘要

猴病毒40衣壳蛋白(VP1)是研究纳米颗粒依赖底物组装的独特系统。在此,我们研究该系统的一个最简单情况,即12个VP1五聚体和单个多聚阴离子(如RNA)形成一个T = 1颗粒。为测试多聚阴离子底物长度和结构在组装过程中的作用,我们通过尺寸排阻色谱、透射电子显微镜和单颗粒电阻脉冲传感对组装产物进行了表征。我们发现500和600 nt的RNA具有组装均匀T = 1颗粒的最佳长度和结构。较长的800 nt RNA、较短的300 nt RNA以及线性600单元的聚(苯乙烯磺酸盐)(PSS)聚电解质产生了异质的产物群体。这一结果令人惊讶,因为600聚体PSS和500 - 600 nt RNA具有相似的质量和电荷。与单链RNA一样,PSS的持久长度也较短,为4 nm,但与RNA不同的是,PSS缺乏紧密的三级结构。这些数据表明,即使对于柔性底物,形状和大小都会影响组装,这与以下假设一致:源自蛋白质 - 蛋白质和蛋白质 - 底物相互作用的功用于压实底物。

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