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RNA环-环相互作用作为动态功能基序。

RNA loop-loop interactions as dynamic functional motifs.

作者信息

Brunel Christine, Marquet Roland, Romby Pascale, Ehresmann Chantal

机构信息

UPR 9002 du CNRS, Institut de Biologie Moléculaire et Cellulaire, Strasbourg, France.

出版信息

Biochimie. 2002 Sep;84(9):925-44. doi: 10.1016/s0300-9084(02)01401-3.

Abstract

RNA loop-loop interactions are frequently used to trigger initial recognition between two RNA molecules. In this review, we present selected well-documented cases that illustrate the diversity of biological processes using RNA loop-loop recognition properties. The first one is related to natural antisense RNAs that play a variety of regulatory functions in bacteria and their extra-chromosomal elements. The second one concerns the dimerization of HIV-1 genomic RNA, which is responsible for the encapsidation of a diploid RNA genome. The third one concerns RNA interactions involving double-loop interactions. These are used by the bicoid mRNA to form dimers, a property that appears to be important for mRNA localization in drosophila embryo, and by bacteriophage phi29 pRNA which forms hexamers that participate in the translocation of the DNA genome through the portal vertex of the capsid. Despite the high diversity of systems and mechanisms, some common features can be highlighted. (1) Efficient recognition requires rapid bi-molecular binding rates, regardless of the RNA pairing scheme. (2) The initial recognition is favored by particular conformations of the loops enabling a proper presentation of nucleotides (generally a restricted number) that initiate the recognition process. (3) The fate of the initial reversible loop-loop complex is dictated by both functional and structural constraints. RNA structures have evolved either to "freeze" the initial complex, or to convert it into a more stable one, which involves propagation of intermolecular interactions along topologically feasible pathways. Stabilization of the initial complex may also be assisted by proteins and/or formation of additional contacts.

摘要

RNA环-环相互作用经常被用于触发两个RNA分子之间的初始识别。在本综述中,我们展示了一些有充分文献记载的案例,这些案例说明了利用RNA环-环识别特性的生物过程的多样性。第一个案例与天然反义RNA有关,它们在细菌及其染色体外元件中发挥着多种调节功能。第二个案例涉及HIV-1基因组RNA的二聚化,这负责二倍体RNA基因组的包装。第三个案例涉及涉及双环相互作用的RNA相互作用。双顺反子mRNA利用这些相互作用形成二聚体,这一特性似乎对果蝇胚胎中的mRNA定位很重要,而噬菌体phi29 pRNA则形成六聚体,参与DNA基因组通过衣壳的门户顶点的转运。尽管系统和机制具有高度多样性,但仍可突出一些共同特征。(1) 高效识别需要快速的双分子结合速率,而与RNA配对方案无关。(2) 初始识别受到环的特定构象的青睐,这些构象能够正确呈现启动识别过程的核苷酸(通常数量有限)。(3) 初始可逆环-环复合物的命运由功能和结构限制共同决定。RNA结构已经进化到要么“冻结”初始复合物,要么将其转化为更稳定的复合物,这涉及分子间相互作用沿着拓扑可行的途径传播。初始复合物的稳定也可能由蛋白质和/或形成额外的接触来辅助。

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