Girard Geneviève, Roussis Andreas, Gultyaev Alexander P, Pleij Cornelis W A, Spaink Herman P
Institute of Biology, Leiden University, Wassenaarseweg 64, 2333 AL Leiden, The Netherlands.
Nucleic Acids Res. 2003 Sep 1;31(17):5003-15. doi: 10.1093/nar/gkg721.
The plant gene enod40 is highly conserved among legumes and also present in various non-legume species. It is presumed to play a central regulatory role in the Rhizobium-legume interaction, being expressed well before the initiation of cortical cell divisions resulting in nodule formation. Two small peptides encoded by enod40 mRNA as well as its secondary structure have been shown to be key elements in the signalling processes underlying nodule organogenesis. Here results concerning the secondary structure of mRNA of enod40 in soybean are presented. This study combined a theoretical approach, involving structure prediction and comparison, as well as structure probing. Our study indicates five conserved domains in enod40 mRNA among numerous leguminous species. Structure comparison suggests that some domains are also conserved in non-leguminous species and that an additional domain exists that was found only in leguminous species developing indeterminate nodules. Enzymatic and chemical probing data support the structure for three of the domains, and partially for the remaining two. The rest of the molecule appears to be less structured. Some of the domains include motifs, such as U-containing internal loops and bulges, which seem to be conserved. Therefore, they might be involved in the regulatory role of enod40 RNA.
植物基因enod40在豆科植物中高度保守,在多种非豆科植物中也有存在。据推测,它在根瘤菌与豆科植物的相互作用中起核心调节作用,在导致根瘤形成的皮层细胞分裂开始之前就大量表达。由enod40 mRNA编码的两种小肽及其二级结构已被证明是根瘤器官发生信号传导过程中的关键要素。本文展示了大豆中enod40 mRNA二级结构的研究结果。本研究结合了理论方法,包括结构预测与比较以及结构探测。我们的研究表明,在众多豆科物种的enod40 mRNA中存在五个保守结构域。结构比较表明,一些结构域在非豆科物种中也保守,并且存在一个仅在发育不定根瘤的豆科物种中发现的额外结构域。酶促和化学探测数据支持其中三个结构域的结构,对其余两个结构域部分支持。分子的其余部分似乎结构较少。一些结构域包含基序,如含U的内环和凸起,这些似乎是保守的。因此,它们可能参与enod40 RNA的调节作用。