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水痘-带状疱疹病毒ORF29p的翻译后修饰及细胞类型特异性降解

Posttranslational modification and cell type-specific degradation of varicella-zoster virus ORF29p.

作者信息

Stallings Christina L, Silverstein Saul J

机构信息

Department of Microbiology, 701 W. 168th St., New York, NY 10032, USA.

出版信息

J Virol. 2006 Nov;80(21):10836-46. doi: 10.1128/JVI.00966-06. Epub 2006 Sep 6.

Abstract

The ORF29 gene of varicella-zoster virus encodes a single-stranded DNA binding protein that is predominantly nuclear during lytic infection but appears to be restricted to the cytoplasm of latently infected neurons. Following reactivation, ORF29p accumulates in the nuclei of neurons, suggesting that its confinement to the cytosol may be critical for maintaining quiescence. When autonomously expressed, ORF29p accumulates in the nuclei of fibroblasts and the cytoplasm of cells (guinea pig enteric neurons) and cell lines (U373MG) of neuronal origin. Inhibition of the 26S proteasome redirects the accumulation of ORF29p to the nucleus in cells of neuronal origin. Here, we show that ORF29p is ubiquitinated and sumoylated in 293T cells and subsequently degraded from the N terminus. Ubiquitinated ORF29p accumulates in both the nuclei and the cytoplasm of fibroblasts, but degradation products are seen primarily in the cytoplasm. Modification and degradation of ORF29p occurs in 293T, U373MG, and MeWo cells. Therefore, these processes are ubiquitous; however, the robustness of the degradation process is cell type specific. The proteasome-mediated mechanism of nuclear exclusion in U373MG cells is an active process that is not specific for the endogenous ORF29p nuclear localization signal but can be saturated by protein stabilization or overexpression, which leads to nuclear accumulation of ORF29p. The evidence for ORF29p ubiquitination and previous data regarding the effect of proteasome inhibitors on the abundance and distribution of ORF29p implicate the 26S proteasome in influencing the protein's cell type-specific localization.

摘要

水痘-带状疱疹病毒的ORF29基因编码一种单链DNA结合蛋白,该蛋白在裂解感染期间主要存在于细胞核中,但在潜伏感染的神经元中似乎局限于细胞质。再激活后,ORF29p在神经元细胞核中积累,这表明其在细胞质中的定位可能对维持静止状态至关重要。当自主表达时,ORF29p在成纤维细胞的细胞核以及神经元来源的细胞(豚鼠肠神经元)和细胞系(U373MG)的细胞质中积累。抑制26S蛋白酶体可将ORF29p的积累重新导向神经元来源细胞的细胞核。在这里,我们表明ORF29p在293T细胞中被泛素化和SUMO化,随后从N端降解。泛素化的ORF29p在成纤维细胞的细胞核和细胞质中均有积累,但降解产物主要出现在细胞质中。ORF29p的修饰和降解发生在293T、U373MG和MeWo细胞中。因此,这些过程是普遍存在的;然而,降解过程的强度具有细胞类型特异性。U373MG细胞中蛋白酶体介导的核排斥机制是一个活跃过程,它对内源性ORF29p核定位信号不具有特异性,但可被蛋白质稳定或过表达饱和,从而导致ORF29p在细胞核中积累。ORF29p泛素化的证据以及先前关于蛋白酶体抑制剂对ORF29p丰度和分布影响的数据表明,26S蛋白酶体在影响该蛋白的细胞类型特异性定位中发挥作用。

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