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甲氧苄啶对大肠杆菌大分子合成的影响。RCstr和RCrel菌株中的核糖体成熟。

The effect of trimethoprim on macromolecular synthesis in Escherichia coli. Ribosome maturation in RCstr and RCrel strains.

作者信息

Midgley J E, Smith R J

出版信息

Biochem J. 1973 Oct;136(2):235-47. doi: 10.1042/bj1360235.

Abstract

When Escherichia coli was inhibited with trimethoprim in media supplemented with nucleotide bases, glycine and methionine, both RC(str) and RC(rel) strains continued to accumulate RNA at rates very close to those in growing controls. The effects of trimethoprim on protein synthesis were studied by using as an experimental basis the rate of maturation of ribosomal particles from RNA-rich precursors. 1. In RC(str) cultures given nucleotide bases but no amino acids, RNA accumulation was inhibited because of amino acid lack. However, maturation of ribosomes from their precursors was more severely inhibited than was the synthesis of rRNA. The restraints on protein synthesis were more severe at the level of translation than the transcription of operons specific for the formation of ribosomal proteins. The kinetic delay time in the passage of rRNA from RNA-rich intermediates to the final ribosome products was therefore increased some three- to four-fold. 2. In RC(rel) cultures in the same conditions, trimethoprim inhibition stopped ribosomal particle synthesis, but rRNA-rich precursors accumulated. 3. If glycine+methionine were also added to inhibited RC(str) cultures, RNA accumulation resumed at a high rate. However, ribosomal maturation was still considerably disturbed because of a disproportionate response of the cells in the formation of protein and RNA. 4. With RC(rel) cultures, addition of the amino acids caused a large increase in the rate of ribosome maturation, though the degree of disproportionation between the rates of rRNA and ribosomal protein synthesis was now identical with that found in RC(str) strains. 5. When inhibited RC(rel) cultures were supplemented, there was still a severe inhibition of protein synthesis at the level of chain initiation, but inaccuracies in the process of polypeptide chain elongation were greatly decreased. This suggests that the effects of the RC(rel) mutation on the fidelity of protein synthesis in bacteria are not directed at the point of chain initiation.

摘要

当在补充了核苷酸碱基、甘氨酸和甲硫氨酸的培养基中用甲氧苄啶抑制大肠杆菌时,RC(str)和RC(rel)菌株的RNA都继续以与生长对照非常接近的速率积累。通过将富含RNA的前体核糖体颗粒的成熟速率作为实验基础,研究了甲氧苄啶对蛋白质合成的影响。1. 在给予核苷酸碱基但无氨基酸的RC(str)培养物中,由于氨基酸缺乏,RNA积累受到抑制。然而,核糖体从前体的成熟比rRNA的合成受到更严重的抑制。在翻译水平上对蛋白质合成的限制比对核糖体蛋白形成特异的操纵子转录水平上的限制更严重。因此,rRNA从富含RNA的中间体传递到最终核糖体产物的动力学延迟时间增加了约三到四倍。2. 在相同条件下的RC(rel)培养物中,甲氧苄啶抑制使核糖体颗粒合成停止,但富含rRNA的前体积累。3. 如果向受抑制的RC(str)培养物中也添加甘氨酸+甲硫氨酸,RNA积累会以高速率恢复。然而,由于细胞在蛋白质和RNA形成中的反应不成比例,核糖体成熟仍然受到相当大的干扰。4. 对于RC(rel)培养物,添加氨基酸导致核糖体成熟速率大幅增加,尽管rRNA和核糖体蛋白合成速率之间的不成比例程度现在与RC(str)菌株中发现的相同。5. 当对受抑制的RC(rel)培养物进行补充时,在链起始水平上对蛋白质合成仍有严重抑制,但多肽链延伸过程中的错误大大减少。这表明RC(rel)突变对细菌中蛋白质合成保真度的影响并非针对链起始点。

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