| Literature DB >> 23577305 |
Mohammad Hadi Sekhavati1, Mojtaba Tahmoorespur, Kamran Ghaedi, Kianoush Dormiani, Mohammad Reza Nassiri, Yahya Khazaie, Mahboubeh Foruzanfar, Morteza Hosseini, Mohammad Hossein Nasr Esfahani.
Abstract
OBJECTIVE: The aim of present study was cloning and expression of phiC31 integrase cDNA in a bacterial expression vector. Thus, an intra molecular assay vector was applied to show in vitro activity of recombinant protein.Entities:
Keywords: E.coli BL21 (DE3); Site-Specific Integration; phiC31
Year: 2013 PMID: 23577305 PMCID: PMC3593930
Source DB: PubMed Journal: Cell J ISSN: 2228-5806 Impact factor: 2.479
Fig 1Schematic diagrams of two plasmids used for phiC31 integrase expression and in vitro phiC31 integrase activity.
Fig 2The pattern of restriction enzyme digestion on pET15b and pCMVInt A: Single digestion on pET15b with BamHI (Lane 1), double digestion on pET15b with NheI & BamHI (Lane 2) and undigested pET15b (Lane 3). B: double digestion on pCMVInt with KpaI & BamHI (Lane 1) and undigested pCMVInt (Lane 2). C: linearized pET15b plasmid (Lane 1) and phiC31 integrase open reading frame (Lane 2) after gel extraction.
Fig 3The results of partial phiC31 integrase cDNA sequencing.
Fig 4Expression of phiC31 integrase in Escherichia coli.
Fig 5Schematic manner of in vitro phic31 integrase activity on intra-molecular assay vector. pBCPB+ contains attP and attB sites which are flanked of lacZ encoding sequence specific for intra-malecular assay. Functional phiC31 integrase creates two mini-circles according to att sites orientation on pBCPB+. A 400-bp product is indicative of site-specific recombination.
Fig 6in vitro assessment of phiC31 integrase activity