RNA 和蛋白质合成抑制剂对真核翻译起始因子 eIF-5A 和 HIV-1 Rev 蛋白亚细胞分布的影响。

X P Shi, K C Yin, L Waxman
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引用次数: 30

摘要

我们在使用 RNA 或蛋白质合成抑制剂处理的 COS-7 细胞中研究了内源性真核翻译起始因子 eIF-5A 和 Rev(一种被认为与 eIF-5A 相互作用的人类免疫缺陷病毒蛋白质)的亚细胞分布。我们之前已经证明,瞬时表达的 Rev 定位于核仁,而 eIF-5A 主要位于细胞质。用蛋白质合成抑制剂(环己亚胺,CHX,10 微克/毫升;嘌呤霉素,10 微克/毫升)处理后,Rev 的亚细胞定位不受影响,但用 RNA 合成抑制剂(放线菌素 D,4 微克/毫升;5,6-二氯-1 β-D-呋喃核糖基苯并咪唑,DRB;0.1 mM),如先前所报道的。相比之下,RNA 合成抑制剂(α-amanitin,10 微克/毫升;放线菌素 D,4 微克/毫升;DRB,0.1 毫摩尔)均未引起 eIF-5A 亚细胞分布模式的显著变化。然而,用嘌呤霉素(一种已知能解离核糖体的蛋白质合成抑制剂)处理 30% 的细胞时,eIF-5A 的亚细胞分布模式发生了显著变化。在这些细胞中,eIF-5A 的染色从内质网(ER)网状核周结构变为分散在整个细胞质中的斑点状。在用ER常驻蛋白钙粘蛋白染色的相同细胞中,以及用CHX(冷冻核糖体以阻止蛋白质合成)处理的细胞中,均未观察到这种变化。我们的研究结果与我们之前得出的 eIF-5A 通过核糖体与 ER 相关联的结论一致,并支持 eIF-5A 在蛋白质合成中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of inhibitors of RNA and protein synthesis on the subcellular distribution of the eukaryotic translation initiation factor, eIF-5A, and the HIV-1 Rev protein.

The subcellular distributions of the endogenous eukaryotic translation initiation factor, eIF-5A, and Rev, a protein of the human immunodeficiency virus proposed to interact with eIF-5A, were studied in COS-7 cells treated with inhibitors of RNA or protein synthesis. We have previously shown that transiently expressed Rev is localized in the nucleolus, whereas eIF-5A is primarily in the cytoplasm. The subcellular localization of Rev was not affected by treatment with protein synthesis inhibitors (cycloheximide, CHX, 10 micrograms/ml; puromycin, 10 micrograms/ml), although its location changed from predominantly the nucleolus to the cytoplasm after treatment with RNA synthesis inhibitors (actinomycin D, 4 micrograms/ml, and 5,6-dichloro-1 beta-D-ribofuranosylbenzimidazole, DRB; 0.1 mM), as previously reported. In contrast, none of the RNA synthesis inhibitors (alpha-amanitin, 10 micrograms/ml; actinomycin D, 4 micrograms/ml, and DRB, 0.1 mM) caused any significant changes in the subcellular distribution pattern of eIF-5A. However, treatment with puromycin, a protein synthesis inhibitor known to dissociate ribosomes, dramatically altered the subcellular distribution pattern of eIF-5A in 30% of the cell population. In these cells, the staining of eIF-5A was changed from an endoplasmic reticulum (ER) net work-like perinuclear structure to a patched dotted pattern dispersed throughout the cytoplasm. This change was not observed in the same cells stained for calnexin, an ER resident protein, nor in cells treated with CHX, which freezes the ribosomes to block protein synthesis. Our data suggest that eIF-5A does not shuttle between the nucleus and cytoplasm in the same way as Rev. Our findings are consistent with our previous conclusion that eIF-5A is associated with the ER through ribosomes and support a role for eIF-5A in protein synthesis.

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