首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Small Ubiquitin-Like Modifier Protein 3 Enhances the Solubilization of Human Bone Morphogenetic Protein 2 in <Emphasis Type="Italic">E. coli</Emphasis>
Authors:Muhammad Umair Hanif  Adnan Yaseen  Roquyya Gul  Muhammad Usman Mirza  Muhammad Hassan Nawaz  Syed Shoaib Ahmed  Salman Aziz  Saima Chaudhary  Ayyaz Ali Khan  Muhammad Shoaib
Institution:1.Institute of Molecular Biology and Biotechnology/Centre for Research in Molecular Medicine,The University of Lahore,Lahore,Pakistan;2.Centre for Research in Molecular Medicine,The University of Lahore,Lahore,Pakistan;3.Division of Molecular Medicine,Institute of Advanced Dental Sciences and Research,Lahore,Pakistan;4.Department of Pharmaceutical Sciences, Rega Institute for Medical Research,University of Leuven,Leuven,Belgium;5.Faculty of Medical and Allied Health Sciences,Superior University,Lahore,Pakistan;6.Department of Oral Pathology,University of Health Sciences,Lahore,Pakistan;7.Department of Oral Health, Shaikh Zayed Medical Complex,Federal Postgraduate Medical Institute,Lahore,Pakistan
Abstract:Small ubiquitin-like modifier (SUMO) fusion technology is widely used in the production of heterologous proteins from prokaryotic system to aid in protein solubilization and refolding. Due to an extensive clinical application of human bone morphogenetic protein 2 (hBMP2) in bone augmentation, total RNA was isolated from human gingival tissue and mature gene was amplified through RT-PCR, cloned (pET21a), sequence analyzed, and submitted to GenBank (Accession no. KF250425). To obtain soluble expression, SUMO3 was tagged at the N-terminus of hBMP2 gene (pET21a/SUMO3-hBMP2), transferred in BL21 codon+, and ~?40% soluble expression was obtained on induction with IPTG. The dimerized hBMP2 was confirmed with Western blot, native PAGE analysis, and purified by fast protein liquid chromatography with 0.5 M NaCl elution. The cleavage of SUMO3 tag from hBMP2 converted it to an insoluble form. Computational 3D structural analysis of the SUMO3-hBMP2 was performed and optimized by molecular dynamic simulation. Protein-protein interaction of SUMO3-hBMP2 with BMP2 receptor was carried out using HADDOCK and inferred stable interaction. The alkaline phosphatase assay of SUMO3-hBMP2 on C2C12 cells showed maximum 200-ng/ml dose-dependent activity. We conclude that SUMO3-tagged hBMP2 is more suited for generation of soluble form of the protein and addition of SUMO3 tag does not affect the functional activity of hBMP2.
Keywords:
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号