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Human Cytomegalovirus Nuclear Egress Proteins Ectopically Expressed in the Heterologous Environment of Plant Cells are Strictly Targeted to the Nuclear Envelope

机译:在植物细胞的异源环境中异位表达的人巨细胞病毒核出口蛋白被严格地靶向核膜。

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摘要

In all eukaryotic cells, the nucleus forms a prominent cellular compartment containing the cell’s nuclear genome. Although structurally similar, animal and plant nuclei differ substantially in details of their architecture. One example is the nuclear lamina, a layer of tightly interconnected filament proteins (lamins) underlying the nuclear envelope of metazoans. So far no orthologous lamin genes could be detected in plant genomes and putative lamin-like proteins are only poorly described in plants. To probe for potentially conserved features of metazoan and plant nuclear envelopes, we ectopically expressed the core nuclear egress proteins of human cytomegalovirus pUL50 and pUL53 in plant cells. pUL50 localizes to the inner envelope of metazoan nuclei and recruits the nuclear localized pUL53 to it, forming heterodimers. Upon expression in plant cells, a very similar localization pattern of both proteins could be determined. Notably, pUL50 is specifically targeted to the plant nuclear envelope in a rim-like fashion, a location to which coexpressed pUL53 becomes strictly corecruited from its initial nucleoplasmic distribution. Using pUL50 as bait in a yeast two-hybrid screening, the cytoplasmic re-initiation supporting protein RISP could be identified. Interaction of pUL50 and RISP could be confirmed by coexpression and coimmunoprecipitation in mammalian cells and by confocal laser scanning microscopy in plant cells, demonstrating partial pUL50-RISP colocalization in areas of the nuclear rim and other intracellular compartments. Thus, our study provides strong evidence for conserved structural features of plant and metazoan nuclear envelops and identifies RISP as a potential pUL50-interacting plant protein.
机译:在所有真核细胞中,细胞核形成一个突出的细胞区室,其中包含该细胞的核基因组。尽管在结构上相似,但动植物核的结构细节却大不相同。一个例子是核层板,是后生动物核被膜下紧密相连的丝蛋白层。到目前为止,在植物基因组中还没有检测到直系同源的lamin基因,而假定的lamin-like蛋白在植物中的描述很少。为了探查后生动物和植物核被膜的潜在保守特征,我们在植物细胞中异位表达了人类巨细胞病毒pUL50和pUL53的核心核外向蛋白。 pUL50定位于子后核的内膜,并向其募集核定位的pUL53,形成异二聚体。在植物细胞中表达后,可以确定两种蛋白质的定位模式非常相似。值得注意的是,pUL50以边缘状方式特异性地靶向植物核被膜,共表达pUL53的位置从其最初的核质分布中被严格地标记为核心。在酵母双杂交筛选中使用pUL50作为诱饵,可以鉴定支持RISP的胞质重启动蛋白。 pUL50和RISP的相互作用可以通过在哺乳动物细胞中共表达和共免疫沉淀,以及在植物细胞中通过共聚焦激光扫描显微镜来证实,这表明pUL50-RISP在核边缘和其他细胞内区室的部分共定位。因此,我们的研究为植物和后生核包裹体的保守结构特征提供了有力证据,并将RISP鉴定为潜在的与pUL50相互作用的植物蛋白。

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