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Effects of <t>RNA</t> <t>substrates</t> on fluorescence of a Trp residue in the p37 AUF1 C-terminal domain. A , schematic of His 6 -p37 AUF1 W87F mutant showing locations of the tryptophan-to-phenylalanine substitution ( red ) and the position of the remaining tryptophan residue ( blue ). B , emission spectra (λ ex = 295 nm) of 2 μM His 6 -p37 AUF1 W87F alone ( black ) or in the presence of equimolar concentrations of unlabeled RNAs ARE1 ( green ), Rβ ( red ), or ARE 15 -G ( purple ). C , Stern-Volmer plots prepared from fluorescence emission measurements (λ ex = 295 nm, λ em = 350 nm) of His 6 -p37 AUF1 W87F (2 μM) alone or in the presence of equimolar concentrations of listed RNAs after mixing with varying concentrations of potassium iodide (KI). Stern-Volmer constants were calculated using Equation and are listed in .
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Effects of <t>RNA</t> <t>substrates</t> on fluorescence of a Trp residue in the p37 AUF1 C-terminal domain. A , schematic of His 6 -p37 AUF1 W87F mutant showing locations of the tryptophan-to-phenylalanine substitution ( red ) and the position of the remaining tryptophan residue ( blue ). B , emission spectra (λ ex = 295 nm) of 2 μM His 6 -p37 AUF1 W87F alone ( black ) or in the presence of equimolar concentrations of unlabeled RNAs ARE1 ( green ), Rβ ( red ), or ARE 15 -G ( purple ). C , Stern-Volmer plots prepared from fluorescence emission measurements (λ ex = 295 nm, λ em = 350 nm) of His 6 -p37 AUF1 W87F (2 μM) alone or in the presence of equimolar concentrations of listed RNAs after mixing with varying concentrations of potassium iodide (KI). Stern-Volmer constants were calculated using Equation and are listed in .
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Effects of <t>RNA</t> <t>substrates</t> on fluorescence of a Trp residue in the p37 AUF1 C-terminal domain. A , schematic of His 6 -p37 AUF1 W87F mutant showing locations of the tryptophan-to-phenylalanine substitution ( red ) and the position of the remaining tryptophan residue ( blue ). B , emission spectra (λ ex = 295 nm) of 2 μM His 6 -p37 AUF1 W87F alone ( black ) or in the presence of equimolar concentrations of unlabeled RNAs ARE1 ( green ), Rβ ( red ), or ARE 15 -G ( purple ). C , Stern-Volmer plots prepared from fluorescence emission measurements (λ ex = 295 nm, λ em = 350 nm) of His 6 -p37 AUF1 W87F (2 μM) alone or in the presence of equimolar concentrations of listed RNAs after mixing with varying concentrations of potassium iodide (KI). Stern-Volmer constants were calculated using Equation and are listed in .
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Effects of <t>RNA</t> <t>substrates</t> on fluorescence of a Trp residue in the p37 AUF1 C-terminal domain. A , schematic of His 6 -p37 AUF1 W87F mutant showing locations of the tryptophan-to-phenylalanine substitution ( red ) and the position of the remaining tryptophan residue ( blue ). B , emission spectra (λ ex = 295 nm) of 2 μM His 6 -p37 AUF1 W87F alone ( black ) or in the presence of equimolar concentrations of unlabeled RNAs ARE1 ( green ), Rβ ( red ), or ARE 15 -G ( purple ). C , Stern-Volmer plots prepared from fluorescence emission measurements (λ ex = 295 nm, λ em = 350 nm) of His 6 -p37 AUF1 W87F (2 μM) alone or in the presence of equimolar concentrations of listed RNAs after mixing with varying concentrations of potassium iodide (KI). Stern-Volmer constants were calculated using Equation and are listed in .
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Effects of RNA substrates on fluorescence of a Trp residue in the p37 AUF1 C-terminal domain. A , schematic of His 6 -p37 AUF1 W87F mutant showing locations of the tryptophan-to-phenylalanine substitution ( red ) and the position of the remaining tryptophan residue ( blue ). B , emission spectra (λ ex = 295 nm) of 2 μM His 6 -p37 AUF1 W87F alone ( black ) or in the presence of equimolar concentrations of unlabeled RNAs ARE1 ( green ), Rβ ( red ), or ARE 15 -G ( purple ). C , Stern-Volmer plots prepared from fluorescence emission measurements (λ ex = 295 nm, λ em = 350 nm) of His 6 -p37 AUF1 W87F (2 μM) alone or in the presence of equimolar concentrations of listed RNAs after mixing with varying concentrations of potassium iodide (KI). Stern-Volmer constants were calculated using Equation and are listed in .

Journal: The Journal of Biological Chemistry

Article Title: Unstructured protein domains stabilize RNA binding and mediate RNA folding by AUF1

doi: 10.1016/j.jbc.2025.108442

Figure Lengend Snippet: Effects of RNA substrates on fluorescence of a Trp residue in the p37 AUF1 C-terminal domain. A , schematic of His 6 -p37 AUF1 W87F mutant showing locations of the tryptophan-to-phenylalanine substitution ( red ) and the position of the remaining tryptophan residue ( blue ). B , emission spectra (λ ex = 295 nm) of 2 μM His 6 -p37 AUF1 W87F alone ( black ) or in the presence of equimolar concentrations of unlabeled RNAs ARE1 ( green ), Rβ ( red ), or ARE 15 -G ( purple ). C , Stern-Volmer plots prepared from fluorescence emission measurements (λ ex = 295 nm, λ em = 350 nm) of His 6 -p37 AUF1 W87F (2 μM) alone or in the presence of equimolar concentrations of listed RNAs after mixing with varying concentrations of potassium iodide (KI). Stern-Volmer constants were calculated using Equation and are listed in .

Article Snippet: RNA substrates used in this study were synthesized by MilliporeSigma.

Techniques: Fluorescence, Residue, Mutagenesis