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首页> 外文期刊>Molecular and Cellular Biology >Circumstances and mechanisms of inhibition of translation by secondary structure in eucaryotic mRNAs.
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Circumstances and mechanisms of inhibition of translation by secondary structure in eucaryotic mRNAs.

机译:真核mRNA中二级结构抑制翻译的情况和机制。

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This paper describes in vitro experiments with two types of intramolecular duplex structures that inhibit translation in cis by preventing the formation of an initiation complex or by causing the complex to be abortive. One stem-loop structure (delta G = -30 kcal/mol) prevented mRNA from engaging 40S subunits when the hairpin occurred 12 nucleotides (nt) from the cap but had no deleterious effect when it was repositioned 52 nt from the cap. This result confirms prior in vivo evidence that the 40S subunit-factor complex, once bound to mRNA, has considerable ability to penetrate secondary structure. Consequently, translation is most sensitive to secondary structure at the entry site for ribosomes, i.e., the 5' end of the mRNA. The second stem-loop structure (hp7; delta G = -61 kcal/mol, located 72 nt from the cap) was too stable to be unwound by 40S ribosomes, hp7 did not prevent a 40S ribosomal subunit from binding but caused the 40S subunit to stall on the 5' side of the hairpin, exactly as the scanning model predicts. Control experiments revealed that 80S elongating ribosomes could disrupt duplex structures, such as hp7, that were too stable to be penetrated by the scanning 40S ribosome-factor complex. A third type of base-paired structure shown to inhibit translation in vivo involves a long-range interaction between the 5' and 3' noncoding sequences.
机译:本文介绍了两种类型的分子内双链体结构的体外实验,该结构通过阻止起始复合物的形成或使复合物流产而抑制顺式翻译。当发夹出现在帽的12个核苷酸(nt)处时,一种茎环结构(δG = -30 kcal / mol)阻止了mRNA与40S亚基的结合,但是当将其从帽重新定位为52 nt时,无有害作用。该结果证实了先前的体内证据,即一旦结合到mRNA,40S亚基-因子复合物就具有相当大的穿透二级结构的能力。因此,翻译对核糖体进入位点的二级结构,即mRNA的5'端最敏感。第二个茎环结构(hp7;δG = -61 kcal / mol,位于帽的72 nt处)太稳定,无法被40S核糖体解开,hp7不能阻止40S核糖体亚基结合,但会引起40S亚基完全像扫描模型所预测的那样,将其停在发夹的5'侧。对照实验表明,延长80S的核糖体可能会破坏双链结构,例如hp7,该结构太稳定而无法被扫描的40S核糖体-因子复合物穿透。显示抑制体内翻译的第三种碱基配对结构涉及5'和3'非编码序列之间的远程相互作用。

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