Nucleoporation of dendritic cells: efficient gene transfer by electroporation into human monocyte-derived dendritic cells |
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Authors: | Lenz Petra Bacot Silvia M Frazier-Jessen Michelle R Feldman Gerald M |
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Affiliation: | Laboratory of Cellular Oncology, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA. |
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Abstract: | Four new members of the ERF (ethylene-response factor) family of plant-specific DNA-binding (GCC box) factors were isolated from tomato fruit (LeERF1–4). Phylogenetic analysis indicated that LeERF2 belongs to a new ERF class, characterized by a conserved N-terminal signature sequence. Expression patterns and cis/trans binding affinities differed between the LeERFs. Combining experimental data and modeled three-dimensional analysis, it was shown that binding affinity of the LeERFs was affected by both the variation of nucleotides surrounding the DNA cis-element sequence and the nature of critical amino acid residues within the ERF domain. |
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Keywords: | Ethylene response factor 3D modeling Lycopersicon esculentum |
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