Chidambara Thanu Vaanathi, Jabeen Amara, Ranganathan Shoba
Applied Biosciences, Macquarie University, Sydney 2109, Australia.
Int J Mol Sci. 2024 Mar 6;25(5):3055. doi: 10.3390/ijms25053055.
Insects utilize seven transmembrane (7TM) odorant receptor (iOR) proteins, with an inverted topology compared to G-protein coupled receptors (GPCRs), to detect chemical cues in the environment. For pest biocontrol, chemical attractants are used to trap insect pests. However, with the influx of invasive insect pests, novel odorants are urgently needed, specifically designed to match 3D iOR structures. Experimental structural determination of these membrane receptors remains challenging and only four experimental iOR structures from two evolutionarily distant organisms have been solved. Template-based modelling (TBM) is a complementary approach, to generate model structures, selecting templates based on sequence identity. As the iOR family is highly divergent, a different template selection approach than sequence identity is needed. Bio-GATS template selection for GPCRs, based on hydrophobicity correspondence, has been morphed into iBio-GATS, for template selection from available experimental iOR structures. This easy-to-use semi-automated workflow has been extended to generate high-quality models from any iOR sequence from the selected template, using Python and shell scripting. This workflow was successfully validated on Orco and OR5 structures. iBio-GATS models generated for the fruit fly iOR, OR59b and Orco, yielded functional ligand binding results concordant with experimental mutagenesis findings, compared to AlphaFold2 models.
昆虫利用七跨膜(7TM)气味受体(iOR)蛋白来检测环境中的化学信号,其拓扑结构与G蛋白偶联受体(GPCR)相反。在害虫生物防治中,化学引诱剂用于诱捕害虫。然而,随着入侵害虫的大量涌入,迫切需要专门针对3D iOR结构设计的新型气味剂。这些膜受体的实验结构测定仍然具有挑战性,目前仅解析了来自两个进化距离较远的生物体的四个实验性iOR结构。基于模板的建模(TBM)是一种补充方法,用于生成模型结构,根据序列同一性选择模板。由于iOR家族高度分化,需要一种不同于序列同一性的模板选择方法。基于疏水性对应关系的GPCR生物GATS模板选择方法已演变为iBio-GATS,用于从可用的实验性iOR结构中选择模板。这个易于使用的半自动化工作流程已得到扩展,可使用Python和外壳脚本从选定模板的任何iOR序列生成高质量模型。该工作流程在Orco和OR5结构上成功得到验证。与AlphaFold2模型相比,为果蝇iOR、OR59b和Orco生成的iBio-GATS模型产生了与实验诱变结果一致的功能性配体结合结果。