Filbin Megan E, Kieft Jeffrey S
Department of Biochemistry and Molecular Genetics, University of Colorado Denver School of Medicine, Mail Stop 8101, PO Box 6511, Aurora, CO 80045, USA.
Curr Opin Struct Biol. 2009 Jun;19(3):267-76. doi: 10.1016/j.sbi.2009.03.005. Epub 2009 Apr 9.
Protein synthesis of an RNA template can start by two different known mechanisms: cap-dependent translation initiation and cap-independent translation initiation. The latter is driven by RNA sequences called internal ribosome entry sites (IRESs) that are found in both viral RNAs and cellular mRNAs. The diverse mechanisms used by IRESs are reflected in their structural diversity, and this structural diversity challenges us to develop a cohesive model linking IRES function to structure. With more direct structural information available for the viral IRESs, data suggest an inverse correlation between the degree to which an IRES RNA can form a stable structure on its own and the number of factors that it requires to function. Lessons learned from the viral IRESs may help understand the cellular IRESs, although more structural data are needed before any strong links can be made.
RNA模板的蛋白质合成可以通过两种不同的已知机制启动:帽依赖性翻译起始和帽非依赖性翻译起始。后者由称为内部核糖体进入位点(IRES)的RNA序列驱动,这些序列存在于病毒RNA和细胞mRNA中。IRES使用的多种机制反映在它们的结构多样性上,这种结构多样性促使我们开发一个将IRES功能与结构联系起来的连贯模型。随着病毒IRES有了更多直接的结构信息,数据表明IRES RNA自身形成稳定结构的程度与其发挥功能所需的因子数量之间存在负相关。从病毒IRES中学到的经验教训可能有助于理解细胞IRES,不过在建立任何强有力的联系之前还需要更多的结构数据。