Department of Agricultural Biotechnology, Tarbiat Modares University (TMU), Tehran 14115111, Iran.
Cellular and Molecular Research Center, Research Institute for Health Development, Kurdistan University of Medical Science, Sanandaj, Pasdaran Avenue, Sanandaj 6618634683, Iran.
J Bioinform Comput Biol. 2024 Oct;22(5):2450023. doi: 10.1142/S0219720024500239. Epub 2024 Oct 30.
The existence of an efficient inducible transgene expression system is a valuable tool in recombinant protein production. The synthetic theophylline-responsive riboswitch (theo.RS) can be replaced in the 5[Formula: see text] untranslated region of an mRNA and control the translation of downstream gene in chloroplasts in response to the binding with a ligand molecule, theophylline. One of the drawbacks associated with the efficiency of the theo.RS is the leak in the RS structure allowing undesired background translation when the switch is expected to be off. The purpose of this study was to detect the factors causing the leak of the theo.RS in the off mode, using molecular dynamics (MD) simulations the appropriate balancing of the simulation system, using the necessary commands, a 40[Formula: see text]ns simulation was conducted. Analysis of the solvent-accessible surface area for both ribosome-binding site (RBS) regions indicated that nucleotide 79 of the theo.RS, a guanine, had the highest surface exposure to ribosome access. These results were verified with the study of hydrogen bonding of RBS regions with the RNA structure. Therefore, redesigning the RBS regions and avoiding the unmasked nucleotide(s) in the structure may improve the tightness of theo.RS in off mode resulting in the efficient inhibition of translation.
有效的诱导型转基因表达系统的存在是重组蛋白生产的有力工具。合成的茶碱响应型核糖开关(theo.RS)可以取代 mRNA 的 5′非翻译区,并响应与配体分子茶碱的结合,在叶绿体中控制下游基因的翻译。与 theo.RS 效率相关的一个缺点是,当开关预计关闭时,RS 结构的泄漏允许不期望的背景翻译。本研究的目的是使用分子动力学(MD)模拟检测导致 theo.RS 在关闭模式下泄漏的因素,通过适当平衡模拟系统,使用必要的命令,进行了 40ns 的模拟。对核糖体结合位点(RBS)区域的溶剂可及表面积进行分析表明,theo.RS 的核苷酸 79,即鸟嘌呤,具有最高的表面可接近核糖体。这些结果通过研究 RBS 区域与 RNA 结构的氢键得到了验证。因此,重新设计 RBS 区域并避免结构中未屏蔽的核苷酸,可以提高 theo.RS 在关闭模式下的紧密性,从而有效地抑制翻译。