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高浓度的鸟苷四磷酸(ppGpp)会降低RNA链的生长速率。这对大肠杆菌在氨基酸饥饿期间的蛋白质合成和翻译保真度的影响。

High concentrations of ppGpp decrease the RNA chain growth rate. Implications for protein synthesis and translational fidelity during amino acid starvation in Escherichia coli.

作者信息

Sørensen M A, Jensen K F, Pedersen S

机构信息

Department of Molecular Cell Biology, University of Copenhagen, Denmark.

出版信息

J Mol Biol. 1994 Feb 18;236(2):441-54. doi: 10.1006/jmbi.1994.1156.

Abstract

We show that the RNA chain growth rate on lacZ is reduced by an elevated ppGpp level even in the absence of starvation. Under these conditions the polypeptide chain elongation rate is affected little, if at all. These results lead us to re-examine the role of ppGpp in the reduction of protein synthesis and translational fidelity during amino acid starvation. We find that ppGpp has little or no direct effect on translation rate or fidelity. Rather, the effects of ppGpp on translation are indirectly caused by the fact that ppGpp inhibits mRNA synthesis, making mRNA limiting for translation during amino acid starvation. The reduced level of mRNA thereby reduces the severity of the aminoacyl-tRNA limitation and, in turn, decreases mistranslation. Mistranslation in the starved relA strain therefore results from an increased severity of aminoacyl-tRNA limitation due to the failure of this strain to reduce mRNA levels by increasing the level of ppGpp. Finally, the initial rise of the ppGpp level in the starved stringent strain, followed by a characteristic reduction to a steady poststarved level, can now be explained by the initially high, and then decreasing number of "hungry" codons adjusted through the mRNA pool.

摘要

我们发现,即使在不存在饥饿的情况下,较高的ppGpp水平也会降低lacZ上RNA链的生长速率。在这些条件下,多肽链的延伸速率即使有影响也很小。这些结果促使我们重新审视ppGpp在氨基酸饥饿期间蛋白质合成减少和翻译保真度方面的作用。我们发现ppGpp对翻译速率或保真度几乎没有直接影响。相反,ppGpp对翻译的影响是间接的,因为ppGpp抑制mRNA合成,使得在氨基酸饥饿期间mRNA成为翻译的限制因素。mRNA水平的降低进而减轻了氨酰tRNA限制的严重程度,反过来又减少了错误翻译。因此,饥饿的relA菌株中的错误翻译是由于该菌株无法通过提高ppGpp水平来降低mRNA水平,从而导致氨酰tRNA限制的严重程度增加所致。最后,饥饿的严谨型菌株中ppGpp水平最初升高,随后随后的最初升高,随后降至特征性的饥饿后稳定水平,现在可以通过最初通过mRNA库调整的“饥饿”密码子数量先高后低来解释。

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