
Abstract Summary: Differential scanning fluorimetry (DSF) is a rapid technique that can be used in structural biology to study protein–ligand interactions. We have developed DMAN, a novel tool to analyse multi-well plate data obtained in DSF experiments. DMAN is easy to install and provides a user-friendly interface. Multi-well plate layouts can be designed by the user and experimental data can be annotated and analysed by DMAN according to the specified plate layout. Statistical tests for significance are performed automatically, and graphical tools are also provided to assist in data analysis. The modular concept of this software will allow easy development of other multi-well plate analysis applications in the future. Availability and implementation: DMAN is implemented in Java to provide a cross-platform compatibility. It is freely available to academic users at http://www.structuralchemistry.org/pcsb/. To download DMAN, users will be asked for their name, institution and email address. A manual can also be downloaded from this site. Contact: conan.wang@griffith.edu.au; a.hofmann@griffith.edu.au
Biochemistry & Molecular Biology, 1303 Biochemistry, Statistics & Probability, Mathematical sciences, Real-Time Polymerase Chain Reaction, Biochemical Research Methods, User-Computer Interface, 1312 Molecular Biology, 1706 Computer Science Applications, Interdisciplinary Applications, Fluorometry, 2613 Statistics and Probability, BIOTECHNOLOGY & APPLIED MICROBIOLOGY, 004, Biological sciences, MATHEMATICAL & COMPUTATIONAL BIOLOGY, 2700 Medicine, Biotechnology & Applied Microbiology, Computer Science, Information and computing sciences, Computer Science, Interdisciplinary Applications, Mathematical & Computational Biology, Structural biology (incl. macromolecular modelling), 2605 Computational Mathematics, Mathematics, BIOCHEMICAL RESEARCH METHODS, Software, 1703 Computational Theory and Mathematics
Biochemistry & Molecular Biology, 1303 Biochemistry, Statistics & Probability, Mathematical sciences, Real-Time Polymerase Chain Reaction, Biochemical Research Methods, User-Computer Interface, 1312 Molecular Biology, 1706 Computer Science Applications, Interdisciplinary Applications, Fluorometry, 2613 Statistics and Probability, BIOTECHNOLOGY & APPLIED MICROBIOLOGY, 004, Biological sciences, MATHEMATICAL & COMPUTATIONAL BIOLOGY, 2700 Medicine, Biotechnology & Applied Microbiology, Computer Science, Information and computing sciences, Computer Science, Interdisciplinary Applications, Mathematical & Computational Biology, Structural biology (incl. macromolecular modelling), 2605 Computational Mathematics, Mathematics, BIOCHEMICAL RESEARCH METHODS, Software, 1703 Computational Theory and Mathematics
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
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