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阻断布氏锥虫变异表面糖蛋白的合成会引发翻译起始的普遍停滞。

Blocking variant surface glycoprotein synthesis in Trypanosoma brucei triggers a general arrest in translation initiation.

机构信息

Centre for Biomolecular Sciences, University of St. Andrews, Fife, Scotland, United Kingdom.

出版信息

PLoS One. 2009 Oct 26;4(10):e7532. doi: 10.1371/journal.pone.0007532.

Abstract

BACKGROUND

The African trypanosome Trypanosoma brucei is covered with a dense layer of Variant Surface Glycoprotein (VSG), which protects it from lysis by host complement via the alternative pathway in the mammalian bloodstream. Blocking VSG synthesis by the induction of VSG RNAi triggers an unusually precise precytokinesis cell-cycle arrest.

METHODOLOGY/PRINCIPAL FINDINGS: Here, we characterise the cells arrested after the induction of VSG RNAi. We were able to rescue the VSG221 RNAi induced cell-cycle arrest through expression of a second different VSG (VSG117 which is not recognised by the VSG221 RNAi) from the VSG221 expression site. Metabolic labeling of the arrested cells showed that blocking VSG synthesis triggered a global translation arrest, with total protein synthesis reduced to less than 1-4% normal levels within 24 hours of induction of VSG RNAi. Analysis by electron microscopy showed that the translation arrest was coupled with rapid disassociation of ribosomes from the endoplasmic reticulum. Polysome analysis showed a drastic decrease in polysomes in the arrested cells. No major changes were found in levels of transcription, total RNA transcript levels or global amino acid concentrations in the arrested cells.

CONCLUSIONS

The cell-cycle arrest phenotype triggered by the induction of VSG221 RNAi is not caused by siRNA toxicity, as this arrest can be alleviated if a second different VSG is inserted downstream of the active VSG221 expression site promoter. Analysis of polysomes in the stalled cells showed that the translation arrest is mediated at the level of translation initiation rather than elongation. The cell-cycle arrest induced in the presence of a VSG synthesis block is reversible, suggesting that VSG synthesis and/or trafficking to the cell surface could be monitored during the cell-cycle as part of a specific cell-cycle checkpoint.

摘要

背景

非洲锥体虫(Trypanosoma brucei)表面覆盖着一层密集的变异表面糖蛋白(Variant Surface Glycoprotein,VSG),通过哺乳动物血液中的替代途径,该蛋白可保护锥体虫免受宿主补体的裂解。通过诱导 VSG RNAi 抑制 VSG 合成会引发异常精确的细胞有丝分裂前细胞周期停滞。

方法/主要发现:在这里,我们对 VSG RNAi 诱导后被阻断的细胞进行了特征描述。我们能够通过从 VSG221 表达位点表达第二种不同的 VSG(VSG117,它不受 VSG221 RNAi 的识别)来挽救 VSG221 RNAi 诱导的细胞周期停滞。对被阻断的细胞进行代谢标记显示,阻断 VSG 合成会引发全局翻译停滞,在诱导 VSG RNAi 后 24 小时内,总蛋白合成减少到正常水平的 1-4%以下。电子显微镜分析显示,翻译停滞伴随着核糖体从内质网的快速解离。多核糖体分析表明,被阻断的细胞中多核糖体急剧减少。在被阻断的细胞中,没有发现转录、总 RNA 转录物水平或全局氨基酸浓度的主要变化。

结论

由 VSG221 RNAi 诱导的细胞周期停滞表型不是由 siRNA 毒性引起的,因为如果在活性 VSG221 表达位点启动子的下游插入第二种不同的 VSG,这种停滞可以得到缓解。在停滞细胞中多核糖体的分析表明,翻译停滞是在翻译起始而不是延伸阶段介导的。在 VSG 合成受阻的情况下诱导的细胞周期停滞是可逆的,这表明 VSG 合成和/或向细胞表面运输可能在细胞周期中作为特定细胞周期检查点的一部分进行监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c1d/2762041/2369cbfeaedc/pone.0007532.g001.jpg

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