Figure 3. Response of enzyme-functionalized GFETs to two nitriles. Figure 3a. Normalized response of wild-type QueF and QueF-Y5Y fusion protein to concentrations of preQ0 to 500nM. Gray vertical lines represent approximate timings for analyte addition. Arrowed symbols: ● = sensor wash in phosphate buffer, ◆ = addition of 4 µM NADPH, ■ = addition of 1 M substrate. GFET conditions: Vg: 500 mV, Vd: 5 mV. Figure 3a. Normalized response of wild-type QueF and QueF-Y5Y fusion protein to concentrations benzyl cyanide (BnCN) to 500nM. Gray vertical lines represent approximate timings for analyte addition. Gray vertical lines represent approximate timings for analyte addition. Arrowed symbols: ● = sensor wash in phosphate buffer, ◆ = addition of 4 ...
Figure 6. Quartz crystal microbalance (QCM) and AFM analysis of adsorption of QueF on graphene-coate...
Purification and quantification of GDF8/GDF11 chimeric ligands. A, B Representation of purified prot...
Supplemental Figure 4. Nanoscale flow cytometry controls. A) Batch experiments were performed in tri...
Figure 3. Response of enzyme-functionalized GFETs to two nitriles. Figure 3a. Normalized response of...
Figure S3. Transfer characteristics of GFETs in 1 mM potassium phosphate buffer pH 7 before and afte...
Figure S4. Analysis of the effect of co-assembly of QueF-Y5Y with Y5Y peptide ratio with BnCN only. ...
Figure S7. GFET response to BnCN on a surface coated with a 50:50 mix of R3RC/R3R peptides. Dotted v...
Decitabine treatment elicits RFP gain and GFP loss using the Z-cad sensor. A) Flow cytometry analysi...
Figure S8. QCM-D frequency and dissipation responses of a) QueF-Y5Y and b) QueF-WT on graphene-coate...
Figure 4. Energy profiles calculated by DFT for the four stages of QueF reduction of its natural sub...
(a) Schematic diagram of the construct used for comparing the GFP trap and the ligand pull-down meth...
(A) Increase of apparent brightnesses of diffusing species. Values of B parameters obtained for expr...
Data files for Figure 5 and Figure S5 given as PDFs and as a CSV file. Figure S5. Protein mass spect...
<p>(A) GFP-RyR1 fusion constructs containing a His<sub>10</sub> tag in divergent region 3 at amino a...
. For GFP-tagged MyD88 TIR domain, small fluctuations in intensity are recorded around the average f...
Figure 6. Quartz crystal microbalance (QCM) and AFM analysis of adsorption of QueF on graphene-coate...
Purification and quantification of GDF8/GDF11 chimeric ligands. A, B Representation of purified prot...
Supplemental Figure 4. Nanoscale flow cytometry controls. A) Batch experiments were performed in tri...
Figure 3. Response of enzyme-functionalized GFETs to two nitriles. Figure 3a. Normalized response of...
Figure S3. Transfer characteristics of GFETs in 1 mM potassium phosphate buffer pH 7 before and afte...
Figure S4. Analysis of the effect of co-assembly of QueF-Y5Y with Y5Y peptide ratio with BnCN only. ...
Figure S7. GFET response to BnCN on a surface coated with a 50:50 mix of R3RC/R3R peptides. Dotted v...
Decitabine treatment elicits RFP gain and GFP loss using the Z-cad sensor. A) Flow cytometry analysi...
Figure S8. QCM-D frequency and dissipation responses of a) QueF-Y5Y and b) QueF-WT on graphene-coate...
Figure 4. Energy profiles calculated by DFT for the four stages of QueF reduction of its natural sub...
(a) Schematic diagram of the construct used for comparing the GFP trap and the ligand pull-down meth...
(A) Increase of apparent brightnesses of diffusing species. Values of B parameters obtained for expr...
Data files for Figure 5 and Figure S5 given as PDFs and as a CSV file. Figure S5. Protein mass spect...
<p>(A) GFP-RyR1 fusion constructs containing a His<sub>10</sub> tag in divergent region 3 at amino a...
. For GFP-tagged MyD88 TIR domain, small fluctuations in intensity are recorded around the average f...
Figure 6. Quartz crystal microbalance (QCM) and AFM analysis of adsorption of QueF on graphene-coate...
Purification and quantification of GDF8/GDF11 chimeric ligands. A, B Representation of purified prot...
Supplemental Figure 4. Nanoscale flow cytometry controls. A) Batch experiments were performed in tri...