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信使核糖核酸二级结构对40S核糖体亚基结合与迁移的影响

Influence of mRNA secondary structure on binding and migration of 40S ribosomal subunits.

作者信息

Kozak M

出版信息

Cell. 1980 Jan;19(1):79-90. doi: 10.1016/0092-8674(80)90390-6.

Abstract

Reovirus messenger RNA was modified by reaction with bisulfite (in denaturing conditions) or by incorporation of IMP in place of GMP, thereby irreversibly unfolding the mRNA. Messenger RNA in which the secondary structure was weakened or abolished retained the ability to bind to wheat germ ribosomes, suggesting that conformational features around the AUG codon are not required for ribosome recognition of mRNA. Ribosomes were not able to attach (directly) to spurious internal sites, even in extensively unfolded RNA, indicating that the monocistronic character of eucaryotic messages (in which initiation is limited to a single 5' proximal site) is not simply due to conformational masking of all the internal AUG codons. The secondary structure in eucaryotic messages does contribute to the fidelity of the translation process, however, because when 40S ribosomal subunits were incubated with denatured mRNA they failed to stop at the 5' proximal AUG codon. Extensive migration beyond the 5' region occurred when 40S ribosomes (in the absence of 60S subunits) attached to unfolded mRNA, implying that the secondary structure in native mRNA facilitates correct translation by impeding migration of 40S subunits beyond the 5' proximal initiation region. Secondary structure in mRNA may also modulate the efficiency of translation. Studies with BrUMP-substituted mRNA, in which the secondary structure is enhanced, suggested that the efficiency of mRNA binding to ribosomes decreases as the stability of the secondary structure increases.

摘要

呼肠孤病毒信使核糖核酸(mRNA)通过与亚硫酸氢盐反应(在变性条件下)或通过掺入肌苷一磷酸(IMP)取代鸟苷一磷酸(GMP)进行修饰,从而使mRNA不可逆地展开。二级结构被削弱或消除的信使核糖核酸仍保留与小麦胚芽核糖体结合的能力,这表明AUG密码子周围的构象特征并非核糖体识别信使核糖核酸所必需。核糖体无法(直接)附着于假的内部位点,即使在高度展开的核糖核酸中也是如此,这表明真核生物信使核糖核酸的单顺反子特性(其中起始限于单个5'近端位点)并非仅仅是由于所有内部AUG密码子的构象掩盖。然而,真核生物信使核糖核酸中的二级结构确实有助于翻译过程的保真度,因为当40S核糖体亚基与变性的信使核糖核酸一起温育时,它们无法在5'近端AUG密码子处停止。当40S核糖体(在没有60S亚基的情况下)附着于展开的信使核糖核酸时,会发生超出5'区域的广泛迁移,这意味着天然信使核糖核酸中的二级结构通过阻止40S亚基迁移到5'近端起始区域之外来促进正确翻译。信使核糖核酸中的二级结构也可能调节翻译效率。对用5-溴尿苷一磷酸(BrUMP)取代的信使核糖核酸的研究表明,随着二级结构稳定性的增加,信使核糖核酸与核糖体结合的效率会降低,其中二级结构得到增强。

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