Research article
Bridge helix and trigger loop perturbations generate superactive RNA polymerases
Department of Life Sciences, Imperial College London, Sir Alexander Fleming Building, Exhibition Road, London SW7 2AZ, UK
Journal of Biology 2008, 7:40 doi:10.1186/jbiol98
Published: 2 December 2008Additional files
Additional file 1:
Structure, evolution and function of mjA' L814.
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Structure, evolution and function of mjA' V815.
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Structure, evolution and function of mjA' D816.
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Structure, evolution and function of mjA' Q817.
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Structure, evolution and function of mjA' A818.
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Structure, evolution and function of mjA' V819.
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Structure, evolution and function of mjA' R820.
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Structure, evolution and function of mjA' T821.
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Structure, evolution and function of mjA' A822.
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Additional file 10:
Structure, evolution and function of mjA' Q823.
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Structure, evolution and function of mjA' S824.
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Structure, evolution and function of mjA' G825.
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Additional file 13:
Structure, evolution and function of mjA' Y826.
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Additional file 14:
Structure, evolution and function of mjA' M827.
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Additional file 15:
Structure, evolution and function of mjA' Q828.
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Additional file 16:
Structure, evolution and function of mjA' R829.
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Additional file 17:
Structure, evolution and function of mjA' R830.
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Additional file 18:
Chromatographic elution profiles of wild-type and mutant mjRNAPs.
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Additional file 19:
Activities of wild-type and mutant mjRNAPs at limiting and saturating template DNA concentrations.
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Additional file 20:
Functional consequences of proline substitutions in different bridge helix positions.
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Additional file 21:
Bioinformatic analysis of intrinsic folding properties of bridge helices and trigger loops.
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