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In the last 20 years, advances in cloning and purification of membrane-bound proteins and in crystallography and other methods of structural determination have enabled the structural characterisation of large numbers of receptors.
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This finding has enabled the future search for CP violation in neutrino oscillation and determination of the neutrino mass hierarchy.
Recent technological developments have enabled determination of DNA trajectories in a few DNA-loop-containing regulatory complexes.
Load-displacement data from displacement hold tests, in both experiment and simulation, have enabled determination of the rate-dependent slip rule within the crystal plasticity model.
Advances in electron cryo-microscopy have enabled structure determination of macromolecules at near-atomic resolution.
Atomic force microscopy (AFM) images taken have enabled the determination of the conjugated NP size which was around 39 nm.
This quantitation would have enabled the determination of the threshold at which PHB hinders ATP in bundle sheath chloroplasts.
Recent technological advances have enabled the determination of haplotypes by direct observation of molecular data and from genetic information, and with decreased reliance on population-based statistical estimation.
Metabolomic approaches have enabled the determination of metabolite profiles of plants grown in specific conditions of nitrogen (N), phosphorus (P), sulfur (S) or potassium (K), and these have been linked to transcript profiles in an effort to unravel the regulatory network adjusting individual metabolic pathways to mineral nutrient supply [ 1].
Recent genomic, cell biological and molecular advances have enabled the determination of cellular targets and mechanism of action of bacterial toxins, including the elucidation of the molecular pathways by which toxins bind to cellular receptors, translocate and modify the functions of intracellular targets, leading to intoxication of the host cell.
These cameras are superior to previous detectors in coping with the intrinsically low contrast and beam-induced motion of radiation-sensitive organic materials embedded in amorphous ice, and hence they have enabled the structure determination of many macromolecular assemblies to atomic or near-atomic resolution.
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CEO of Professional Science Editing for Scientists @ prosciediting.com