| Literature DB >> 25407889 |
Adam B Shapiro1, Ning Gao, Nichole O'Connell, Jun Hu, Jason Thresher, Rong-Fang Gu, Ross Overman, Ian M Hardern, Graham G Sproat.
Abstract
BACKGROUND: There are no approved small molecule drug therapies for human respiratory syncytial virus (hRSV), a cause of morbidity and mortality in at-risk newborns, the immunocompromised, and the elderly. We have investigated as a potential novel hRSV drug target the protein-protein interaction between the C-terminus of the viral phosphoprotein (P) and the viral nucleocapsid protein (N), components of the ribonucleoprotein complex that contains, replicates, and transcribes the viral RNA genome. Earlier work by others established that the 9 C-terminal residues of P are necessary and sufficient for binding to N.Entities:
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Year: 2014 PMID: 25407889 PMCID: PMC4239318 DOI: 10.1186/s12985-014-0191-2
Source DB: PubMed Journal: Virol J ISSN: 1743-422X Impact factor: 4.099
Figure 1Fluorescence anisotropy measurements of P C-terminal peptide binding to N(13-391), effect of KCl, and competition by full-length P. (A) Affinity of unphosphorylated and doubly phosphorylated P-derived C-terminal peptides BP1 and BP5, respectively, for N(13-391). Data points and error bars represent the means and standard deviations, respectively, of 3 replicates. The error bars are mostly hidden by the data points. The Kds for BP1 and BP5 were 760 ± 20 nM and 78 ± 5 nM, respectively (best-fit value ± standard error of fit). (B) Effect of KCl concentration on affinity of BP5 for N(13-391). Kds were measured with N(13-391) concentrations ranging from 1.95 to 2000 nM in triplicate. The data were fit as above. Data points and error bars represent the best-fit Kds and the standard errors of the fits, respectively. (C) Inhibition of BP5 binding to N(13-391) by full-length P protein. The IC50 was 180 ± 10 nM (best-fit value ± standard error of fit).
Competition by RSV-P C-terminal-derived peptides with BP5 binding to RSV-N(13-391)
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| DSDNDLSLEDF | 15.3 ± 0.4 | 230 ± 30 |
| DSDNDLSLEDA | >200 | ND |
| D(pS)DNDLSLEDF | 2.17 ± 0.04 | 44 ± 3 |
| DSDNDL(pS)LEDF | 1.51 ± 0.03 | 31 ± 2 |
| D(pS)DNDL(pS)LEDF | 0.61 ± 0.01, 0.74 ± 0.02 | 13.6 ± 0.3 |
| D(pS)DNDL(pS)LEDA | 69 ± 2 | ND |
| DF | 1450 ± 50 | ND |
Competition was measured by the fluorescence anisotropy assay and with N(13-391) binding to P by SPR. Competitor peptide concentrations ranged from 0.2 to 200 μM. The IC50 for D(pS)DNDL(pS)LEDF was measured twice using fluorescence anisotropy. IC50s from the fluorescence anisotropy assay are approximately twice the Kds of the competitors because the N(13-391) concentration was set at the Kd for the interaction of N(13-391) with BP5. ND, not done.
Figure 2Inhibition of N(13-391) binding to immobilized P protein by D(pS)DNDL(pS)LEDF peptide measured by SPR. Concentrations of the peptide are indicated on the figure. The IC50 (curve shown in inset) was 13.7 ± 0.3 μM (best-fit value ± standard error of the best-fit value). The concentration of N(13-391) was 100 nM. Injection spikes have been deleted from the image for clarity.
Figure 3Binding of Asp-Phe (left) and D(pS)DNDL(pS)LEDF (right) to N(31-252). (A) Contour plots of backbone amide resonances of 0.15 mM 15N-labeled N(31-252) obtained from two-dimensional [15N, 1H] TROSY spectra recorded at a range of ligand concentrations. Numbered resonances correspond to the graphs in panel B. Dotted arrows denote the putative directions of shift for resonances 1 and 7. The missing resonances of 1 and 7 in the presence of 0.1 mM D(pS)DNDL(pS)LEDF indicate the binding interaction is in the intermediate exchange regime [36]. (B) Chemical shift perturbations Δδ(N, H)obs of selected amide resonances of 15N-labeled N(31-252) as a function of ligand concentration. The symbols represent the experimental data and the lines are global best-fit theoretical curves for a simple binding isotherm. The best-fit values ± standard error of the fit of Kds were 2.6 ± 0.3 mM for Asp-Phe (left) and 74 ± 4 μM for D(pS)DNDL(pS)LEDF (right).
Figure 4Backbone amide resonances of N-labeled N(31-252) from two-dimensional [ N, H] TROSY spectra. Blue, no ligand. Red, peptide ligand. The concentration of N(31-252) was 0.15 mM. (A) 2 mM Asp-Phe. (B) 0.3 mM D(pS)DNDL(pS)LEDF.