Hemmings-Mieszczak M, Steger G, Hohn T
Friedrich Miescher-Institut, Basel, Switzerland.
J Mol Biol. 1997 Apr 18;267(5):1075-88. doi: 10.1006/jmbi.1997.0929.
The CaMV 35 S RNA functions as both messenger and pregenomic RNA under the control of its 600 nts leader, which contains regulatory elements involved in splicing, polyadenylation, translation, reverse transcription, and probably also packaging. The structure of the leader has been characterized theoretically and experimentally. The predicted conformation, a low-energy elongated hairpin, base-pairing the two halves of the leader, with a cross-like structure at the top, is strongly supported by enzymatic probing, chemical modification, and phylogenetic comparison. The elongated hairpin is stabilized by strong base-pairing between the ends of the leader, regions which are important in allowing translation downstream of the leader via the ribosome shunt mechanism. At high ionic strength the 35 S RNA leader exhibits additional higher order structures of low electrophoretic mobility: (1) a long-range pseudoknot connecting central and terminal parts of the leader; (2) a dimer. Alternative structures of the CaMV 35 S RNA leader may co-exist and have specialized functions. Their potential impact on CaMV life cycle regulation is discussed.
花椰菜花叶病毒35S RNA在其600个核苷酸的前导序列控制下,既作为信使RNA又作为前基因组RNA发挥作用,该前导序列包含参与剪接、聚腺苷酸化、翻译、逆转录以及可能还有包装的调控元件。前导序列的结构已通过理论和实验进行了表征。预测的构象是一种低能量的细长发夹结构,前导序列的两半碱基配对,顶部有十字状结构,这一结构得到了酶切探测、化学修饰和系统发育比较的有力支持。细长发夹通过前导序列末端之间的强碱基配对而稳定,这些区域对于通过核糖体跳跃机制使前导序列下游的翻译得以进行很重要。在高离子强度下,35S RNA前导序列呈现出电泳迁移率较低的其他高阶结构:(1)连接前导序列中部和末端部分的远距离假结;(2)二聚体。花椰菜花叶病毒35S RNA前导序列的替代结构可能共存并具有特定功能。文中讨论了它们对花椰菜花叶病毒生命周期调控的潜在影响。