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Your search keyword '"Lentivirus enzymology"' showing total 18 results

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18 results on '"Lentivirus enzymology"'

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1. Integrase-derived peptides together with CD24-targeted lentiviral particles inhibit the growth of CD24 expressing cancer cells.

2. Integrase-Defective Lentiviral Vector Is an Efficient Vaccine Platform for Cancer Immunotherapy.

3. Persistence of Integrase-Deficient Lentiviral Vectors Correlates with the Induction of STING-Independent CD8 + T Cell Responses.

4. A Protocol for the Production of Integrase-deficient Lentiviral Vectors for CRISPR/Cas9-mediated Gene Knockout in Dividing Cells.

5. Unbiased detection of off-target cleavage by CRISPR-Cas9 and TALENs using integrase-defective lentiviral vectors.

6. Phylogenetic analysis of small ruminant lentiviruses detected in Slovenia.

7. Successful therapeutic vaccination with integrase defective lentiviral vector expressing nononcogenic human papillomavirus E7 protein.

8. Hepatocyte-targeted expression by integrase-defective lentiviral vectors induces antigen-specific tolerance in mice with low genotoxic risk.

9. Placenta-specific gene activation and inactivation using integrase-defective lentiviral vectors with the Cre/LoxP system.

10. Gene editing in human stem cells using zinc finger nucleases and integrase-defective lentiviral vector delivery.

11. LEDGF/p75 interacts with divergent lentiviral integrases and modulates their enzymatic activity in vitro.

12. Lentiviral vectors with a defective integrase allow efficient and sustained transgene expression in vitro and in vivo.

13. Lentivirus-like particles without reverse transcriptase elicit efficient immune responses.

14. The interaction of LEDGF/p75 with integrase is lentivirus-specific and promotes DNA binding.

15. LEDGF/p75 determines cellular trafficking of diverse lentiviral but not murine oncoretroviral integrase proteins and is a component of functional lentiviral preintegration complexes.

16. Delivery of the Cre recombinase by a self-deleting lentiviral vector: efficient gene targeting in vivo.

17. Comparative studies on the substrate specificity of avian myeloblastosis virus proteinase and lentiviral proteinases.

18. Propagation and characterization of novel canine lentivirus isolated from a dog.

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