首页> 美国卫生研究院文献>Journal of Virology >Regulation of protein synthesis in vesicular stomatitis virus-infected mouse L-929 cells by decreased protein synthesis initiation factor 2 activity.
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Regulation of protein synthesis in vesicular stomatitis virus-infected mouse L-929 cells by decreased protein synthesis initiation factor 2 activity.

机译:通过降低的蛋白质合成起始因子2活性调节水泡性口炎病毒感染的小鼠L-929细胞中的蛋白质合成。

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摘要

Infection of mouse L-cell spinner cultures by vesicular stomatitis virus (VSV) effected the selective translation of viral mRNA by 4h after viral adsorption. Cell-free systems prepared from mock- and VSV-infected cells reflected this phenomenon; protein synthesis was reduced in the virus-infected cell lysate by approximately 75% compared with the mock-infected (control) lysate. This effect appeared to be specific to protein synthesis initiation since (i) methionine incorporation into protein from an exogenous preparation of initiator methionyl-tRNA gave completely analogous results and (ii) the addition of a ribosomal salt wash (containing protein synthesis initiation factors) stimulated protein synthesis by the infected cell lysate but had no effect on protein synthesis by the control. Micrococcal nuclease-treated (initiation-dependent) VSV-infected cell lysates were not able to translate L-cell mRNA unless they were supplemented with a ribosomal salt wash; a salt wash from ribosomes from uninfected cells effected a quicker recovery than a salt wash from ribosomes from infected cells. When salt wash preparations from ribosomes from uninfected and infected cells were tested for initiation factor 2 (eIF-2)-dependent ternary complex capacity with added GTP and initiator methionyl-tRNA, we found that the two preparations contained equivalent levels of eIF-2. However, initiation complex formation by the factor from virus-infected cells proceeded at a reduced initial rate compared with the control. When the lysates were supplemented with a partially purified eIF-2 preparation, recovery of activity by the infected cell lysate was observed. Mechanisms by which downward regulation of eIF-2 activity might direct the selective translation of viral mRNA in VSV-infected cells are proposed.
机译:水泡性口炎病毒(VSV)感染小鼠L细胞微调培养物后,病毒吸附后4h才实现病毒mRNA的选择性翻译。由受假病毒和VSV感染的细胞制备的无细胞系统反映了这一现象。与模拟感染(对照)的裂解液相比,病毒感染的细胞裂解液的蛋白质合成降低了约75%。这种作用似乎是对蛋白质合成起始所特有的,因为(i)从外源性引发剂蛋氨酸-tRNA制剂中将蛋氨酸掺入蛋白质可得到完全相似的结果,以及(ii)刺激了核糖体盐洗液(含有蛋白质合成起始因子)的刺激被感染的细胞裂解液合成蛋白质,但对对照的蛋白质合成没有影响。经微球菌核酸酶处理(依赖于起始)的VSV感染的细胞裂解液不能翻译L细胞mRNA,除非它们补充了核糖体盐洗液。从感染细胞核糖体中洗出盐比从感染细胞核糖体中洗出盐更快地恢复。当测试来自未感染和感染细胞的核糖体的盐洗制剂的起始因子2(eIF-2)依赖性三元复合物容量并添加GTP和引发剂甲硫氨酰-tRNA时,我们发现这两种制剂均含有相同水平的eIF-2。然而,与对照相比,由病毒感染的细胞引起的起始复合物形成的起始速率降低。当裂解物补充有部分纯化的eIF-2制剂时,观察到感染的细胞裂解物恢复了活性。提出了向下调节eIF-2活性可能指导VSV感染细胞中病毒mRNA选择性翻译的机制。

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