Beryllofluoride mimics phosphorylation of NtrC and other bacterial response regulators.
basic_science · Level V
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- Record sourced from PubMed, PMID 10611291.
- Also identified by PMC identifier 24726.
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Abstract
Two-component systems, sensor kinase-response regulator pairs, dominate bacterial signal transduction. Regulation is exerted by phosphorylation of an Asp in receiver domains of response regulators. Lability of the acyl phosphate linkage has limited structure determination for the active, phosphorylated forms of receiver domains. As assessed by both functional and structural criteria, beryllofluoride yields an excellent analogue of aspartyl phosphate in response regulator NtrC, a bacterial enhancer-binding protein. Beryllofluoride also appears to activate the chemotaxis, sporulation, osmosensing, and nitrate/nitrite response regulators CheY, Spo0F, OmpR, and NarL, respectively. NMR spectroscopic studies indicate that beryllofluoride will facilitate both biochemical and structural characterization of the active forms of receiver domains.
Medical subject headings
- Aspartic Acid
- Bacterial Proteins
- Beryllium
- DNA-Binding Proteins
- Fluorides
- Phosphoproteins
- Trans-Activators
- Transcription Factors