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大肠杆菌α操纵子中翻译抑制的变构机制。

Allosteric mechanism for translational repression in the Escherichia coli alpha operon.

作者信息

Spedding G, Draper D E

机构信息

Department of Chemistry, Johns Hopkins University, Baltimore, MD 21218.

出版信息

Proc Natl Acad Sci U S A. 1993 May 15;90(10):4399-403. doi: 10.1073/pnas.90.10.4399.

Abstract

The ribosomal protein S4 is a translational repressor that binds to a complex mRNA pseudoknot structure containing the ribosome binding site for the first gene of the alpha operon. Either 30S subunits or S4 protein bound to the mRNA causes Moloney murine leukemia virus reverse transcriptase to pause near the 3' terminus of the pseudoknot. There is no competition between subunits and S4 for mRNA binding. The kinetics of forming S4-30S-mRNA complexes are biphasic, and the fraction of mRNA molecules reacting more rapidly decreases as the temperature is increased from 30 degrees C to 40 degrees C. The complex cannot be detected with mRNA mutants that cannot be repressed. We have previously shown similar kinetic behavior for the formation of tRNA(fMet) initiation complexes with tRNA(fMet), 30S subunits, and mRNA, except that the fraction reacting rapidly increases when the temperature is increased over the same 30-40 degrees C range. Thus the two sets of experiments show that there are two forms of 30S-mRNA complexes that differ in their abilities to bind S4 and tRNA(fMet). The results support an allosteric model for translational repression in which S4 traps the mRNA in a conformation able to bind 30S subunits but unable to form an initiation complex with tRNA(fMet).

摘要

核糖体蛋白S4是一种翻译阻遏物,它与一种复杂的mRNA假结结构结合,该结构包含α操纵子第一个基因的核糖体结合位点。与mRNA结合的30S亚基或S4蛋白都会使莫洛尼氏鼠白血病病毒逆转录酶在假结的3'末端附近暂停。亚基和S4之间不存在对mRNA结合的竞争。形成S4-30S-mRNA复合物的动力学是双相的,随着温度从30℃升高到40℃,反应更快的mRNA分子比例会降低。对于无法被阻遏的mRNA突变体,无法检测到该复合物。我们之前已证明,在形成tRNA(fMet)起始复合物(包含tRNA(fMet)、30S亚基和mRNA)时也有类似的动力学行为,只是当温度在相同的30-40℃范围内升高时,快速反应的比例会增加。因此,这两组实验表明存在两种形式的30S-mRNA复合物,它们结合S4和tRNA(fMet)的能力不同。这些结果支持了一种变构翻译阻遏模型,其中S4将mRNA捕获在一种能够结合30S亚基但无法与tRNA(fMet)形成起始复合物的构象中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87b6/46518/195a8ee102db/pnas01462-0080-a.jpg

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