Rahimifard Hamedani Pouya, Solouki Mahmood, Ehsani Parastoo, Emamjomeh Abbasali, Ofoghi Hamideh
Department of Plant Breeding and Biotechnology (PBB), University of Zabol, Zabol, Iran.
Department of Molecular Biology, Pasteur Institute of Iran, Tehran, Iran.
Plant Biotechnol Rep. 2021;15(3):309-316. doi: 10.1007/s11816-021-00684-3. Epub 2021 Jun 11.
Plants are one of the ideal models for therapeutic protein production, however the recombinant protein purification problems in them must be overcome. Bone Morphogenetic Protein2 (BMP2) is employed for the restoration and construction of bone tissues. Hydrophobin is a fungal based protein with high hydrophobic characteristics. Due to this specificity, it is suitable for the purification of chimer protein from complex solutions when is fused to a protein utilizing an aqueous two-phase (A2P) technique. The plant optimized mature human BMP2 gene was designed and evaluated by in silico method. This process involves simulating molecular dynamics using the RMSD, RMSF and Gyration radius indexes. The synthesized Hyd-BMP2 gene was cloned into a pTRAkc-ERH plasmid and Transferred into Agrobacterium (). The plant leaves were co-agroinfiltrated with HA-Hyd-BMP2 and P19-pCambia1304 containing silencing suppressor. After purification of plant extract utilizing the A2P method, the sample was subjected to SDS-PAGE and Western-blot. By in silico study, the simulated fusion protein profitably shows reasonable protein compactness and the effect of amino acid substitution on protein-protein interaction is not remarkable. Western-blotting using anti HA tag has shown that the A2P technique partially purified the two 22 kDa and 44 kDa forms of Hydrophobin-BMP2. These results confirmed the presence of monomer and dimer forms of Hydrophobin-BMP2 proteins. Moreover, the expression level of the protein using P19 silencing suppressor increased six times and to 0.018% as shown by ELISA. This study presents a fast and easy technique for the purification of transient expressed pharmaceutical proteins from plants.
植物是治疗性蛋白质生产的理想模型之一,然而必须克服其中重组蛋白质的纯化问题。骨形态发生蛋白2(BMP2)用于骨组织的修复和构建。疏水蛋白是一种具有高疏水特性的真菌蛋白。由于这种特异性,当利用水相两相(A2P)技术与蛋白质融合时,它适用于从复杂溶液中纯化嵌合蛋白。通过计算机模拟方法设计并评估了植物优化的成熟人BMP2基因。这个过程涉及使用均方根偏差(RMSD)、均方根波动(RMSF)和回转半径指数来模拟分子动力学。将合成的Hyd-BMP2基因克隆到pTRAkc-ERH质粒中,并转入农杆菌()。将植物叶片与含有沉默抑制子的HA-Hyd-BMP2和P19-pCambia1304共农杆菌浸润。利用A2P方法纯化植物提取物后,对样品进行SDS-PAGE和蛋白质免疫印迹分析。通过计算机模拟研究,模拟的融合蛋白有利地显示出合理的蛋白质紧凑性,并且氨基酸取代对蛋白质-蛋白质相互作用的影响不显著。使用抗HA标签的蛋白质免疫印迹分析表明,A2P技术部分纯化了两种22 kDa和44 kDa形式的疏水蛋白-BMP2。这些结果证实了疏水蛋白-BMP2蛋白单体和二聚体形式的存在。此外,如酶联免疫吸附测定(ELISA)所示,使用P19沉默抑制子的蛋白质表达水平提高了6倍,达到0.018%。本研究提出了一种从植物中纯化瞬时表达药用蛋白质的快速简便技术。