Department of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, 43600 UKM, Bangi, Selangor, Malaysia.
Institute of Systems Biology, Universiti Kebangsaan Malaysia, 43600 UKM, Bangi, Selangor, Malaysia.
Curr Microbiol. 2021 Aug;78(8):2943-2955. doi: 10.1007/s00284-021-02550-5. Epub 2021 Jun 2.
The glycine riboswitch is a known regulatory element that is unique in having two aptamers that are joined by a linker region. In this study, we investigated a glycine riboswitch located in the 5' untranslated region of a glycine cleavage system homolog (gcvTHP) in Burkholderia spp. Structure prediction using the sequence generated a model with a glycine binding pocket composed of base-triple interactions (G62-A64-A86 and G65-U84-C85) that are supported by A/G minor interactions (A17-C60-G88 and G16-C61-G87, respectively) and two ribose-zipper motifs (C11-G12 interacting with A248-A247 and C153-U154 interacting with A79-A78) which had not been previously reported. The capacity of the riboswitch to bind to glycine was experimentally validated by native gel assays and the crucial role of interactions that make up the glycine binding pocket were proven by mutations of A17U and G16C which resulted in conformational differences that may lead to dysfunction. Using glycine supplemented minimal media, we were able to prove that the expression of the gcvTHP genes found downstream of the riboswitch responded to the glycine concentrations introduced thus confirming the role of this highly conserved Burkholderia riboswitch and its associated genes as a putative glycine detoxification system in Burkholderia spp.
甘氨酸核糖开关是一种已知的调控元件,其独特之处在于它有两个适体,由连接区连接。在这项研究中,我们研究了 Burkholderia spp 中甘氨酸裂解系统同源物(gcvTHP)5'非翻译区中存在的甘氨酸核糖开关。使用生成的序列进行结构预测,生成了一个具有甘氨酸结合口袋的模型,该口袋由碱基三链相互作用(G62-A64-A86 和 G65-U84-C85)组成,这些相互作用得到 A/G 次要相互作用(A17-C60-G88 和 G16-C61-G87,分别)和两个核糖拉链基序(C11-G12 与 A248-A247 相互作用,C153-U154 与 A79-A78 相互作用)的支持,这些相互作用以前没有报道过。通过天然凝胶分析实验验证了核糖开关与甘氨酸结合的能力,通过 A17U 和 G16C 的突变证明了构成甘氨酸结合口袋的相互作用的关键作用,这导致了构象差异,可能导致功能障碍。使用补充甘氨酸的最小培养基,我们能够证明发现于核糖开关下游的 gcvTHP 基因的表达对引入的甘氨酸浓度有反应,从而证实了这种高度保守的 Burkholderia 核糖开关及其相关基因作为 Burkholderia spp 中潜在的甘氨酸解毒系统的作用。