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Further characterisation of rotavirus cores: Ss(+)RNAs can be packaged in vitro but packaging lacks sequence specificity

机译:轮状病毒核心的进一步表征:Ss(+)RNA可以在体外包装但包装缺乏序列特异性

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摘要

Rotavirus (RV) cores were released from double-layered particles (DLPs) by high concentrations of CaCl2, purified and ‘opened’ by treatment with EDTA or EGTA. Under appropriate in vitro conditions DLPs have been shown to have transcriptase and ‘open cores’ replicase activity. Furthermore, it has been demonstrated that transcriptase activity and infectivity of native cores can be restored by transcapsidation with VP6, VP7 and VP4. The missing link for particle reconstitution in vitro has been the manipulation of ‘open cores’ to become functionally active cores again. The experiments described here were undertaken with the aim of exploring packaging of RV RNAs into opened cores in vitro. Rotavirus cores were opened by approximately 200 μM EGTA, leading to the release of genomic dsRNA. Conversely, RV cores were found to be stable in the presence of minimum concentrations of Ca2+, Mg2+, spermidine3+ and cobalthexamine3+ of between 40 and 300 μM. Aggregates of purified cores were resolved in the presence of 0.3 mM deoxycholate (minimum concentration). Core shells opened with EGTA were reconstituted by the addition of di- or trivalent cations within 2 min of the opening procedure. Addition of purified, baculovirus recombinant-expressed VP6 to native and reconstituted cores led to the formation of DLPs or DLP-like particles, which upon transfection into MA104 cells were infectious. The rescued infectivity likely originated in part from unopened and in part from reconstituted cores. Radiolabelled RV (+) ssRNAs could be packaged into reconstituted cores and DLPs, as indicated by resistance to RNase I digestion. The packaging reaction was, however, not RV RNA sequence-specific, since unrelated ssRNAs, such as those transcribed from HIV-2 cDNAs, were also packaged. The kinetics of packaging of homologous and heterologous RNAs were similar, as evidenced by competitive packaging assays. None of the packaged in vitro engineered RNA segments has so far been rescued into infectious virus.
机译:轮状病毒(RV)核心通过高浓度的CaCl2从双层颗粒(DLP)中释放出来,通过EDTA或EGTA处理纯化并“打开”。在适当的体外条件下,已证明DLP具有转录酶和“开放核”复制酶活性。此外,已经证明,通过用VP6,VP7和VP4进行衣壳化可以恢复转录酶活性和天然核心的感染性。体外进行颗粒重建的缺失环节是操纵“开放核”使其再次成为功能活跃的核。进行此处描述的实验的目的是探索将RV RNA包装到体外的开放核中。轮状病毒核心被约200μMEGTA打开,导致基因组dsRNA释放。相反,发现在最低浓度的Ca 2 + ,Mg 2 + ,亚精胺 3 + 和钴胺的存在下,RV核心是稳定的 3 + 介于40和300μM之间。在0.3 mM脱氧胆酸盐(最低浓度)的存在下分离纯化的核心聚集体。用EGTA打开的核壳在打开过程的2分钟内通过添加二价或三价阳离子进行重构。将纯化的杆状病毒重组表达的VP6添加到天然和重组的核心中导致DLP或DLP样颗粒的形成,转染入MA104细胞后具有感染性。挽救的传染性可能部分源于未开放的核心,部分源于重组的核心。放射性标记的RV(+)ssRNA可以包装到重构的核心和DLP中,如对RNase I消化的抵抗力所示。但是,包装反应不是RV RNA序列特异性的,因为还包装了无关的ssRNA,例如从HIV-2 cDNA转录而来的ssRNA。竞争包装试验证明,同源和异源RNA的包装动力学相似。迄今为止,没有一个包装好的体外工程RNA片段被营救成感染性病毒。

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