首页> 外文期刊>Molecular and Cellular Biology >Protein synthesis is required for rapid degradation of tubulin mRNA and other deflagellation-induced RNAs in Chlamydomonas reinhardi.
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Protein synthesis is required for rapid degradation of tubulin mRNA and other deflagellation-induced RNAs in Chlamydomonas reinhardi.

机译:需要蛋白质合成,以快速降解小管蛋白mRNA和其他缺口诱导的衣原体RENHARDI中的RNA。

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After flagellar detachment in Chlamydomonas reinhardi, there is a rapid synthesis and accumulation of mRNAs for tubulin and other flagellar proteins. Maximum levels of these mRNAs (flagellar RNAs) are reached within 1 h after deflagellation, after which they are rapidly degraded to their predeflagellation levels. The degradation of alpha- and beta-tubulin RNAs was shown to be due to the shortening of their half-lives after accumulation (Baker et al., J. Cell Biol. 99:2074-2081, 1984). Deflagellation in the presence of protein synthesis inhibitors results in the accumulation of tubulin and other flagellar mRNAs by kinetics similar to those of controls. However, unlike controls, in which the accumulated mRNAs are rapidly degraded, these mRNAs are stabilized in cycloheximide. The stabilization by cycloheximide is specific for the flagellar mRNAs accumulated after deflagellation, since there is no change in the levels of flagellar mRNAs in nondeflagellated (uninduced) cells in the presence of cycloheximide. The kinetics of flagellar mRNA synthesis after deflagellation are shown to be the same in cycloheximide-treated and control cells by in vivo labeling and in vitro nuclear runoff experiments. These results show that protein synthesis is not required for the induced synthesis of flagellar mRNAs, and that all necessary transcriptional control factors are present in the cell before deflagellation, but that protein synthesis is required for the accelerated degradation of the accumulated flagellar mRNAs. Since cycloheximide prevents the induced synthesis and accumulation of flagellar proteins, it is possible that the product(s) of protein synthesis required for the accelerated decay of these mRNAs is a flagellar protein(s). The possibility that one or more flagellar proteins autoregulate the stability of the flagellar mRNAs is discussed.
机译:在栗子植物中鞭毛脱落后,对小管蛋白和其他鞭毛蛋白的MRNA具有快速合成和积累。在缺口后1小时内达到这些MRNA(鞭毛RNA)的最大水平,之后达到它们的预缩小水平迅速降解。 α-和β-微管蛋白RNA的降解显示为累积后缩短其半衰期(Baker等,J.Cell Biol.99:2074-2081,1984)。在蛋白质合成抑制剂存在下的缺口导致管蛋白和其他鞭毛MRNA的累积与类似控制的动力学的积累。然而,与累积的mRNA快速降解的对照不同,这些MRNA在环己酰亚胺中稳定。环己酰亚胺的稳定性是在脱裂后累积的鞭毛mRNA的特异性,因为在环己酰亚胺存在下非螺旋形(未诱导的)细胞中的鞭毛MRNA水平没有变化。在脱屑素后的鞭毛mRNA合成的动力学显示在体内标记和体外核径流实验中的环己酰亚胺处理和对照细胞中是相同的。这些结果表明,蛋白质合成诱导的鞭毛MRNA的合成不需要,并且所有必要的转录控制因子存在于细胞中,在脱裂性之前存在,但是该蛋白质合成需要加速鞭毛MRNA的加速降解。由于环己酰亚胺可以防止诱导的鞭毛蛋白的合成和积累,因此可以将这些mRNA的加速衰减所需的蛋白质合成的产物是鞭毛蛋白质。讨论了一个或多个鞭毛蛋白自动盖出鞭毛MRNA的稳定性的可能性。

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