| Literature DB >> 23472094 |
Vijay M Krishnamurthy1, Venkata S Raman, Richard A Mowery, Michelle Hentz, James D Baleja, Bryan F Shaw, Krishna Kumar.
Abstract
This paper describes a biophysical investigation of residual mobility in complexes ofEntities:
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Year: 2013 PMID: 23472094 PMCID: PMC3589393 DOI: 10.1371/journal.pone.0057629
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Schematics for potential models for binding of benzenesulfonamide ligands with glycine chains to bovine carbonic anhydrase II (BCA).
Complexes of BCA with ligands with one, three, or five glycine subunits are shown. (A) “Ligand mobility” model in which binding of Gly subunits farther from the benzene ring (distal subunits) destabilize the binding of subunits closer to the ring (proximal subunits). The sizes of the ellipses for the subunits are roughly proportional to the mobility of the subunits. (B) “Protein mobility” model in which the binding of the Gly chain destabilizes interactions within BCA itself. The curved arrows denote mobility, which increases with increasing chain length of the ligand.
Figure 2Structure of benzenesulfonamide ligands with Gly chains (SA-Glyn).
The ligands used in the reported studies varied in length from 1 to 5 subunits (n = 1–5). The 15N label at the first Gly subunit is denoted by an ‘*’.
Figure 3NMR data for the amide closest to the benzene ring (the “first” subunit) for benzenesulfonamide ligands with Gly chains (SA-Glyn).
The variation of these NMR data with chain length (n) of the ligand are compared for the case when the ligands are free in buffered solution (open circles) and when they are in complex with bovine carbonic anhydrase II (BCA; closed squares). (A) Chemical shifts for the “first” amide proton exhibit a nearly constant difference between free and BCA-bound forms across the ligand series. 15N NMR relaxation times of T 1 (B) and T 2 (C) across the SA-Glyn ligand series exhibit a nearly constant relative decrease from the free to the BCA-bound forms (revealed by separate axes for free and for BCA-bound data). (D) Values of 15N-1H steady-state NOE for the SA-Glyn ligands when bound to BCA suggest a different dynamic environment for the SA-Gly1 ligand relative to the other, longer ligands (n≥2), for which the trend shows little dependence on chain length (n).
Figure 4Variation of diffusion coefficient (D) with molecular weight (M solute) and chain length (n) of SA-Glyn ligands.
The constant values of D measured for the internal standard DSS (4,4-dimethyl-4-silapentane-1-sulfonic acid) in the different samples demonstrate the consistency of experimental conditions (e.g., viscosity). Error bars represent standard deviations calculated from the full-width at half maximum of the peaks in DOSY spectra. A linear fit to the SA-Glyn data (log D vs log M solute) is shown with fitting parameters of −0.54±0.02 (slope) and −7.83±0.05 (y-intercept), yielding an R2 of 0.996.
Extended model-free parameters for the 15N-1H bond vector of the amide closest to the benzene ring (the “first” subunit) in SA-Glyn ligands in complex with BCA.
| n | Model | S2 | Sf 2 | Ss 2 | te (ps) | Rex (s−1) | AIC |
| 1 | 2 | 0.49±0.01 | 1 | 0.49±0.01 | 90±5 | 0 | 15.7 |
| 1 | 4 | 0.35±0.04 | 1 | 0.35±0.04 | 123±9 | 2.3±0.7 | 6.0 |
| 2 | 2 | 0.72±0.04 | 1 | 0.72±0.04 | 510±100 | 0 | 4.5 |
| 2 | 5 | 0.69±0.04 | 0.97±0.04 | 0.71±0.04 | 550±110 | 0 | 6.0 |
| 3 | 5 | 0.73±0.04 | 0.92±0.04 | 0.79±0.04 | 490±150 | 0 | 6.0 |
| 4 | 5 | 0.72±0.04 | 0.95±0.03 | 0.76±0.03 | 750±90 | 0 | 6.0 |
| 5 | 5 | 0.75±0.04 | 0.96±0.03 | 0.78±0.03 | 670±120 | 0 | 6.0 |
Value from Akaike’s Information Criterion (AIC) [38]. The model with the lowest value is the one selected [37].
Accepted model for the ligand (see text).
Parameter is held constant in this model.
Figure 5Number of hydrogens in BCA that exchange with deuterium after treatment with or without SA-Glyn ligand.
Exchange studies were conducted after incubation in D2O for 3 min (A) or 120 min (B), and in both cases reveal a slight trend towards more exchanged protons with increasing length (n) of the SA-Glyn ligand. Levels of statistical significance (Student’s t-test, p<0.05) are indicated with an ‘*’ for significance over BCA alone (denoted with dotted lines) and ‘**’ for significance over BCA treated with p-carboxybenzensulfonamide, SA-OH (denoted with dashed lines). Error bars represent standard errors of the mean of at least five measurements.