首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Viral regulation of the long distance axonal transport of herpes simplex virus nucleocapsid.
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Viral regulation of the long distance axonal transport of herpes simplex virus nucleocapsid.

机译:病毒调节单纯疱疹病毒核衣壳的长距离轴突运输。

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摘要

Many membranous organelles and protein complexes are normally transported anterograde within axons to the presynaptic terminal, and details of the motors, adaptors and cargoes have received significant attention. Much less is known about the transport in neurons of non-membrane bound particles, such as mRNAs and their associated proteins. We propose that herpes simplex virus type 1 (HSV) can be used to study the detailed mechanisms regulating long distance transport of particles in axons. A critical step in the transmission of HSV from one infected neuron to the next is the polarized anterograde axonal transport of viral DNA from the host infected nerve cell body to the axon terminal. Using the in vivo mouse retinal ganglion cell model infected with wild type virus or a mutant strain that lacks the protein Us9, we found that Us9 protein was necessary for long distance anterograde axonal transport of viral nucleocapsid (DNA surrounded by capsid proteins), but unnecessary for transport of virus envelope.Thus, we conclude that nucleocapsid can be transported independently down axons via a Us9-dependent mechanism.
机译:通常将许多膜细胞器和蛋白质复合物顺行地运输到轴突内到突触前末端,并且马达,适配器和货物的细节受到了极大的关注。对于非膜结合的颗粒,例如mRNA及其相关蛋白,在神经元中的转运知之甚少。我们建议单纯疱疹病毒1型(HSV)可用于研究调节轴突中颗粒的长距离运输的详细机制。 HSV从一个受感染的神经元传递到下一个神经元的关键步骤是病毒DNA从宿主感染的神经细胞体到轴突末端的极化顺行轴突运输。使用感染了野生型病毒或缺少Us9蛋白的突变株的体内小鼠视网膜神经节细胞模型,我们发现Us9蛋白对于病毒核衣壳(被衣壳蛋白包围的DNA)的长距离顺行轴突运输是必需的,但没有必要因此,我们得出结论,核衣壳可以通过依赖于Us9的机制独立地沿轴突向下运输。

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