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首页> 外文期刊>MBio >Imaging the Transport Dynamics of Single Alphaherpesvirus Particles in Intact Peripheral Nervous System Explants from Infected Mice
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Imaging the Transport Dynamics of Single Alphaherpesvirus Particles in Intact Peripheral Nervous System Explants from Infected Mice

机译:成像从感染的小鼠完整的外周神经系统植株中单个Alphaherpesvirus粒子的运输动力学。

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Alphaherpesvirus particles travel long distances in the axons of neurons using host microtubule molecular motors. The transport dynamics of individual virions in neurons have been assessed in cultured neurons, but imaging studies of single particles in tissue from infected mice have not been reported. We developed a protocol to image explanted, infected peripheral nervous system (PNS) ganglia and associated innervated tissue from mice infected with pseudorabies virus (PRV). This ex vivo preparation allowed us to visualize and track individual virions over time as they moved from the salivary gland into submandibular ganglion neurons of the PNS. We imaged and tracked hundreds of virions from multiple mice at different time points. We quantitated the transport velocity, particle stalling, duty cycle, and directionality at various times after infection. Using a PRV recombinant that expressed monomeric red fluorescent protein (mRFP)-VP26 (red capsid) and green fluorescent protein (GFP)-Us9 (green membrane protein), we corroborated that anterograde transport in axons occurs after capsids are enveloped. We addressed the question of whether replication occurs initially in the salivary gland at the site of inoculation or subsequently in the neurons of peripheral innervating ganglia. Our data indicate that significant amplification of infection occurs in the peripheral ganglia after transport from the site of infection and that these newly made particles are transported back to the salivary gland. It is likely that this reseeding of the infected gland contributes to massive invasion of the innervating PNS ganglia. We suggest that this “round-trip” infection process contributes to the characteristic peripheral neuropathy of PRV infection. >IMPORTANCE Much of our understanding of molecular mechanisms of alphaherpesvirus infection and spread in neurons comes from studying cultured primary neurons. These techniques enabled significant advances in our understanding of the viral and neuronal components needed for efficient replication and directional spread between cells. However, in vitro systems cannot recapitulate the environment of innervated tissue in vivo with associated defensive properties, such as innate immunity. Therefore, in this report, we describe a system to image the progression of infection by single virus particles in tissue harvested from infected animals. We explanted intact innervated tissue from infected mice and imaged fluorescent virus particles in infected axons of the specific ganglionic neurons. Our measurements of virion transport dynamics are consistent with published in vitro results. Importantly, this system enabled us to address a fundamental biological question about the amplification of a herpesvirus infection in a peripheral nervous system circuit.
机译:阿尔法疱疹病毒颗粒使用宿主微管分子马达在神经元的轴突中传播很长一段距离。已在培养的神经元中评估了神经元中单个病毒体的运输动力学,但尚未报道感染小鼠组织中单个颗粒的成像研究。我们开发了一种协议,可以对感染了伪狂犬病病毒(PRV)的小鼠的外植体,感染的周围神经系统(PNS)神经节和相关的神经支配组织进行成像。这种 ex vivo 制备方法使我们能够随着时间的流逝将各个病毒体从唾液腺转移到PNS的下颌神经节神经元中,进行可视化和跟踪。我们在不同的时间点成像并跟踪了来自多只小鼠的数百种病毒体。我们定量分析了感染后不同时间的传输速度,颗粒失速,占空比和方向性。使用表达单体红色荧光蛋白(mRFP)-VP26(红色衣壳)和绿色荧光蛋白(GFP)-Us9(绿色膜蛋白)的PRV重组体,我们证实衣壳被包裹后发生轴突的顺行运输。我们解决了复制是最初发生在唾液腺的接种部位还是随后发生在周围神经支配神经节的问题。我们的数据表明,从感染部位转移后,在周围神经节中发生了明显的感染放大,这些新产生的颗粒被运回唾液腺。感染腺的这种再播种可能导致神经支配性PNS神经节的大量侵袭。我们建议这种“往返”感染过程有助于PRV感染的特征性周围神经病变。 >重要:我们对α疱疹病毒感染和在神经元中传播的分子机制的大部分理解来自对培养的原代神经元的研究。这些技术使我们对有效复制和细胞间定向传播所需的病毒和神经元成分有了重要的了解。但是,体外系统无法概括具有相关防御特性(例如先天免疫)的体内体内组织的环境。因此,在本报告中,我们描述了一种成像系统,该系统可对从感染动物中收获的组织中单个病毒颗粒的感染进程进行成像。我们从感染的小鼠中移出完整的神经支配组织,并在特定神经节神经元的感染轴突中成像荧光病毒颗粒。我们对病毒体运输动力学的测量结果与已发表的体外结果一致。重要的是,该系统使我们能够解决有关外周神经系统回路中疱疹病毒感染扩增的基本生物学问题。

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