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One of the most basic techniques in biomedical research is cDNA cloning for expression studies in mammalian cells. Vaccinia topoisomerase I-mediated cloning (TOPO cloning by Invitrogen) allows fast and efficient recombination of PCR-amplified DNAs. Among TOPO vectors, a pcDNA3.1 directional cloning vector is particularly convenient, since it can be used for expression analysis immediately after cloning. However, I found that the cloning efficiency was reduced when RT-PCR products were used as inserts (about one-quarter). Since TOPO vectors accept any PCR products, contaminating fragments in the insert DNA create negative clones. Therefore, I designed a new mammalian expression vector enabling positive blue white selection in Vaccinia topoisomerase I-mediated cloning. The method utilized a short nontoxic LacZα peptide as a linker for GFP fusion. When cDNAs were properly inserted into the vector, minimal expression of the fusion proteins in E. coli (harboring lacZΔM15) resulted in formation of blue colonies on X-gal plates. This method improved both cloning efficiency (75%) and directional cloning (99%) by distinguishing some of the negative clones having non-cording sequences, since these inserts often disturbed translation of lacZα. Recombinant plasmids were directly applied to expression studies using GFP as a reporter. Utilization of the P2A peptide allowed for separate expression of GFP. In addition, the preparation of Vaccinia topoisomerase I-linked vectors was streamlined, which consisted of successive enzymatic reactions with a single precipitation step, completing in 3 hr. The arrangement of unique restriction sites enabled further modification of vector components for specific applications. This system provides an alternative method for cDNA cloning and expression in mammalian cells.
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http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0139349 | PLOS |
Nucleic Acids Res
June 2025
Cellular Signalling and Cytoskeletal Function Laboratory, The Francis Crick Institute, 1 Midland Road, London NW1 1AT, United Kingdom.
Vaccinia virus is a large enveloped DNA virus, which, like all poxviruses, replicates in the cytoplasm of infected cells. Vaccinia was historically thought to encode all the proteins required for its replication. However, more recent findings have shown that nuclear host proteins are redirected to the cytoplasm to facilitate viral replication.
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June 2025
Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Mumbai, India.
Giant viruses are hypothesized to utilize the FtsK/HerA type ATP-driven motor to package the genome during the virus assembly. Previously, we reported the presence of several recombinases and topoisomerase II in Acanthamoeba polyphaga mimivirus (APMV) that could potentially work in concert with the vaccinia virus (VV) A32-like packaging motor to facilitate segregation of the genome and its packaging in giant viruses. In the present study, we have identified the interaction network among the probable components of the APMV segro-packasome machinery, namely, two paralogous packaging motors, three paralogous recombinases, and a topoisomerase II using yeast two-hybrid and pull-down assays.
View Article and Find Full Text PDFJ Med Microbiol
June 2025
Sonoran University of Health Sciences, The Ric Scalzo Institute for Botanical Research, Tempe, AZ 85282, USA.
DNA topoisomerases are essential enzymes that allow cells to effectively manage the topological states of DNA. Due to the ubiquitous nature of their functions, topoisomerases have become promising treatment targets for various conditions, ranging from microbial infections to cancer. The botanicals, (Chinese goldthread) and (common sage), are herbs that boast a long history of traditional use for their effectiveness in treating a myriad of health concerns, including microbial infections and cancer, which could be associated with topoisomerase inhibitory activity.
View Article and Find Full Text PDFAdv Exp Med Biol
May 2024
Pharmacology Department, National Research Centre (NRC), 33 El Buhouth St. (Former El-Tahrir St.), Dokki, Cairo, 12622, Egypt.
DNA Repair (Amst)
May 2024
Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, NC 27710, USA. Electronic address:
The type IB topoisomerase of budding yeast (yTop1) generates small deletions in tandem repeats through a sequential cleavage mechanism and larger deletions with random endpoints through the nonhomologous end-joining (NHEJ) pathway. Vaccinia virus Top1 (vTop1) is a minimized version of the eukaryal TopIB enzymes and uniquely has a strong consensus cleavage sequence: the pentanucleotide (T/C)CCTTp↓. To define the relationship between the position of TopIB cleavage and mutagenic outcomes, we expressed vTop1 in yeast top1Δ strains containing reporter constructs with a single CCCTT site, tandem CCCTT sites, or CCCTT sites separated by 42 bp.
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