Eco-Auditing Laboratory, National Botanical Research Institute, CSIR, Lucknow, 226001 Uttar Pradesh, India.
J Mol Model. 2012 Jul;18(7):2971-9. doi: 10.1007/s00894-011-1320-0. Epub 2011 Dec 7.
Ribosome inactivating proteins (RIPs) are defense proteins in a number of higher-plant species that are directly targeted toward herbivores. Jatropha curcas is one of the biodiesel plants having RIPs. The Jatropha seed meal, after extraction of oil, is rich in curcin, a highly toxic RIP similar to ricin, which makes it unsuitable for animal feed. Although the toxicity of curcin is well documented in the literature, the detailed toxic properties and the 3D structure of curcin has not been determined by X-ray crystallography, NMR spectroscopy or any in silico techniques to date. In this pursuit, the structure of curcin was modeled by a composite approach of 3D structure prediction using threading and ab initio modeling. Assessment of model quality was assessed by methods which include Ramachandran plot analysis and Qmean score estimation. Further, we applied the protein-ligand docking approach to identify the r-RNA binding residue of curcin. The present work provides the first structural insight into the binding mode of r-RNA adenine to the curcin protein and forms the basis for designing future inhibitors of curcin. Cloning of a future peptide inhibitor within J. curcas can produce non-toxic varieties of J. curcas, which would make the seed-cake suitable as animal feed without curcin detoxification.
核糖体失活蛋白(RIPs)是多种高等植物物种中的防御蛋白,它们直接针对草食动物。麻疯树是具有 RIPs 的生物柴油植物之一。提取油后,麻疯树种子粉富含 curcin,这是一种与蓖麻毒素相似的高毒性 RIP,这使其不适合作为动物饲料。尽管 curcin 的毒性在文献中有详细记载,但迄今为止,尚未通过 X 射线晶体学、NMR 光谱学或任何计算技术确定 curcin 的详细毒性特性和 3D 结构。在这方面的研究中,使用基于线程和从头建模的 3D 结构预测的组合方法对 curcin 的结构进行了建模。通过 Ramachandran 图谱分析和 Qmean 评分估计等方法评估模型质量。此外,我们应用蛋白质-配体对接方法来确定 curcin 的 r-RNA 结合残基。本工作首次深入了解了 r-RNA 腺嘌呤与 curcin 蛋白的结合模式,并为设计 curcin 的未来抑制剂奠定了基础。在麻疯树中克隆未来的肽抑制剂可以产生无毒性的麻疯树品种,这将使种子饼在无需 curcin 解毒的情况下适合作为动物饲料。