Probing water micro-solvation in proteins by water catalysed proton-transfer tautomerism.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24177573.
- Also identified by DOI 10.1038/ncomms3611.
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Abstract
Scientists have made tremendous efforts to gain understanding of the water molecules in proteins via indirect measurements such as molecular dynamic simulation and/or probing the polarity of the local environment. Here we present a tryptophan analogue that exhibits remarkable water catalysed proton-transfer properties. The resulting multiple emissions provide unique fingerprints that can be exploited for direct sensing of a site-specific water environment in a protein without disrupting its native structure. Replacing tryptophan with the newly developed tryptophan analogue we sense different water environments surrounding the five tryptophans in human thromboxane A₂ synthase. This development may lead to future research to probe how water molecules affect the folding, structures and activities of proteins.
Medical subject headings
- Indoles
- Protons
- Thromboxane-A Synthase
- Tryptophan
- Water