首页> 外文OA文献 >Role of protein synthesis in decay and accumulation of mRNA during spore germination in the cellular slime mold Dictyostelium discoideum.
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Role of protein synthesis in decay and accumulation of mRNA during spore germination in the cellular slime mold Dictyostelium discoideum.

机译:在细胞粘液霉菌盘基网柄菌的孢子萌发过程中,蛋白质合成在mRNA衰变和积累中的作用。

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摘要

Spore germination in Dictyostelium discoideum is a particularly suitable model for studying the regulation of gene expression, since developmentally regulated changes in both protein and mRNA synthesis occur during the transition from dormant spore to amoeba. The previous isolation of three cDNA clones specific for mRNA developmentally regulated during spore germination allowed for the quantitation of the specific mRNAs during this process. The three mRNAs specific to clones pLK109, pLK229, and pRK270 have half-lives much shorter (minutes) than those of constitutive mRNAs (hours). Using spore germination as a model, we studied the roles of ribosome-mRNA interactions and protein synthesis in mRNA degradation by using antibiotics that inhibit specific reactions in protein biosynthesis. Cycloheximide inhibits the elongation step of protein synthesis. Polysomes accumulate in inhibited cells because ribosomes do not terminate normally and new ribosomes enter the polysome, eventually saturating the mRNA. Pactamycin inhibits initiation, and consequently polysomes break down in the presence of this drug. Under this condition, the mRNA is essentially free of ribosomes. pLK109, pLK229, and pRK270 mRNAs were stabilized in the presence of cycloheximide, but pactamycin had no effect on their normal decay. Since it seems likely that stability of mRNA reflects the availability of sites for inactivation by nucleases, it follows that in the presence of cycloheximide, these sites are protected, presumably by occupancy by ribosomes. No ribosomes are bound to mRNA in the presence of pactamycin, and therefore mRNA degrades at about the normal rate. The data further indicate that a labile protein is probably not involved in mRNA decay or stabilization, since protein synthesis is inhibited equally by both antibiotics. We conclude that it may be important to use more than one type of protein synthesis inhibitor to evaluate whether protein synthesis is required for mRNA decay. The effect of protein synthesis inhibition on mRNA synthesis and accumulation was also studied. mRNA synthesis continues in the presence of inhibitors, albeit at a diminished rate relative to that of the uninhibited control.
机译:盘基网柄菌的孢子萌发是研究基因表达调控的特别合适的模型,因为在从休眠孢子向变形虫的过渡过程中,蛋白质和mRNA合成均受到发育调控。在孢子萌发过程中,先前对三个特定于mRNA的cDNA克隆的分离得到了发育调节,从而可以在此过程中定量特定的mRNA。克隆pLK109,pLK229和pRK270特异的三种mRNA的半衰期(分钟)比组成型mRNA的半衰期(小时)短得多。以孢子萌发为模型,我们通过使用抑制蛋白质生物合成中特定反应的抗生素研究了核糖体-mRNA相互作用和蛋白质合成在mRNA降解中的作用。环己酰亚胺抑制蛋白质合成的延伸步骤。多核糖体在受抑制的细胞中积累,因为核糖体不能正常终止并且新的核糖体进入多核糖体,最终使mRNA饱和。变形霉素抑制启动,因此在该药物存在下多核糖体分解。在这种条件下,mRNA基本不含核糖体。在存在环己酰亚胺的情况下,pLK109,pLK229和pRK270 mRNA稳定,但是pactamycin对它们的正常衰变没有影响。由于mRNA的稳定性似乎反映了核酸酶灭活位点的可用性,因此可以得出结论,在存在环己酰亚胺的情况下,这些位点可能受到核糖体的占据而受到保护。在存在pactamycin的情况下,没有核糖体与mRNA结合,因此mRNA的降解速度约为正常水平。数据进一步表明,不稳定的蛋白质可能不参与mRNA的降解或稳定化,因为两种抗生素均会同样地抑制蛋白质的合成。我们得出结论,使用一种以上类型的蛋白质合成抑制剂来评估mRNA衰减是否需要蛋白质合成可能很重要。还研究了蛋白质合成抑制对mRNA合成和积累的影响。尽管抑制剂的存在速率相对于未抑制的对照有所降低,但在抑制剂存在下,mRNA的合成仍在继续。

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