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在缺乏蛋白质合成起始的情况下,同步化的HeLa细胞中组蛋白信使RNA的命运。

Fate of histone messenger RNA in synchronized HeLa cells in the absence of initiation of protein synthesis.

作者信息

Stahl H, Gallwitz D

出版信息

Eur J Biochem. 1977 Jan;72(2):385-92. doi: 10.1111/j.1432-1033.1977.tb11263.x.

Abstract

The fate of cytoplasmic histone mRNA was studied under conditions in which initiation of protein synthesis in synchronized HeLa cells is S phase was blocked by increasing the osmolarity of the growth medium with NaCl. In contrast to the interruption of DNA replication with hydroxyurea, which results in an exponential degradation of translatable histone mRNA with a half-life of about 10-13 min, blocking the initiation of protein synthesis leads to only a marginal loss of biologically active histone mRNA in the cytoplasm. When the initiation of protein synthesis was interrupted by treating cells with 150 mM NaCl, 40-50% of the total cytoplasmic histone mRNA previously translated in polyribosomes appears in the cytoplasm integrated into mRNA-protein particle(s) sedimenting between 15 S and 30 S. On the other hand, in untreated S-phase cells or in cells blocked with hydroxyurea only 3-6% of the total translatable histone mRNA is found in the cytoplasm not bound to ribosomes or their subunits. In addition, the degradation of histone mRNA in hydroxyurea-blocked S-phase cells is prevented when the initiation of protein synthesis is inhibited with NaCl. These studies clearly indicate that the inhibition of initiation of protein synthesis per se is not the cause for the rapid degradation of cytoplasmic histone mRNA observed when DNA replication is turned off and that the inactivation of these mRNAs is a process dependent on continuous protein synthesis.

摘要

在通过添加氯化钠提高生长培养基渗透压来阻断同步化的HeLa细胞在S期蛋白质合成起始的条件下,研究了细胞质组蛋白mRNA的命运。与用羟基脲阻断DNA复制导致可翻译的组蛋白mRNA呈指数降解(半衰期约为10 - 13分钟)相反,阻断蛋白质合成起始仅导致细胞质中生物活性组蛋白mRNA的少量损失。当用150 mM氯化钠处理细胞中断蛋白质合成起始时,先前在多核糖体中翻译的总细胞质组蛋白mRNA的40 - 50%出现在细胞质中,整合到沉降在15 S和30 S之间的mRNA - 蛋白质颗粒中。另一方面,在未处理的S期细胞或仅用羟基脲阻断的细胞中,仅3 - 6%的可翻译组蛋白mRNA存在于未与核糖体或其亚基结合的细胞质中。此外,当用氯化钠抑制蛋白质合成起始时,羟基脲阻断的S期细胞中组蛋白mRNA的降解被阻止。这些研究清楚地表明,蛋白质合成起始的抑制本身不是DNA复制关闭时观察到的细胞质组蛋白mRNA快速降解的原因,并且这些mRNA的失活是一个依赖于持续蛋白质合成的过程。

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