Journal of Physics Condensed Matter · 2006 · 32 citations · 7 references
Structural BioinformaticsBacteriophageMolecular BiologyNucleic Acid Amplification TestAnalytical UltracentrifugationSingle Molecule BiophysicsProtein FoldingTethered Particle MotionPhage BiologyMacromolecular AssembliesBiophysicsBiomolecular AnalysisMacromolecular MachineDna ReplicationProtein ModelingParticle Motion AnalysisBioinformaticsBiomolecular ScienceStructural BiologyNatural SciencesComputational BiologyTpm MethodologyTpm AssaysMicrobiologyMolecular BiophysicsBacteriophage LambdaMedicine
The tethered particle motion (TPM) technique has attracted great interest because of its simplicity and the wealth of information that it can provide on protein-induced conformational changes in nucleic acids. Here we present an approach to TPM methodology and analysis that increases the efficiency of data acquisition and facilitates interpretation of TPM assays. In particular, the statistical analysis that we propose allows fast data processing, minimal data selection and visual display of the distribution of molecular behaviour. The methodology proved useful in verifying CI protein-mediated DNA looping in bacteriophage λ and in differentiating between two different types of loops, stable and dynamic, whose relative occurrence seems to be a function of the distance between the operators as well as their relative angular orientation. Furthermore, the statistical analysis indicates that CI binding per se slightly shortens the DNA.
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Robustness of a gene regulatory circuit
John W. Little · The EMBO Journal · 1999 · 274 citations · Full text
Cooperativity in long-range gene regulation by the λ CI repressor
Ian B. Dodd, Keith E. Shearwin, Alison J. Perkins et al. · Genes & Development · 2004 · 181 citations · Full text