| Literature DB >> 25197267 |
Ahmed A El-Sherif1, Mohamed M Shoukry2, Abeer T Abd Elkarim3, Mohammad H Barakat4.
Abstract
The review is mainly concerned with the protonation equilibria of biologically active ligands like amino acids, peptides, DNA constituents, and amino acid esters in nonaqueous media. Equilibrium concentrations of proton-ligand formation as a function of pH were investigated. Also, thermodynamics associated with protonation equilibria were also discussed.Entities:
Year: 2014 PMID: 25197267 PMCID: PMC4150405 DOI: 10.1155/2014/626719
Source DB: PubMed Journal: Bioinorg Chem Appl Impact factor: 7.778
The autoprotolysis constants (K ap) obtained for various water-solvent mixtures.
| Medium | p |
|---|---|
| Water | 13.78a, 13.69b, 13.77c |
| 20% ethanol—80% water | 14.03d |
| 30% ethanol—70% water | 14.17a, 14.16b |
| 40% ethanol—60% water | 14.30d |
| 50% ethanol—50% water | 14.40a, 14.28b |
| 60% ethanol—40% water | 14.48d |
| 70% ethanol—30% water | 14.67a, 14.59b |
| 12.5% dioxane—87.5% water | 14.17e |
| 20% dioxane—80% water | 14.31f, 14.22b |
| 25% dioxane—75% water | 14.37e |
| 37.5% dioxane—62.5% water | 14.50 |
| 40% dioxane—60% water | 14.89f, 14.86b |
| 50% dioxane—50% water | 15.44e |
| 60% dioxane—40% water | 15.54f, 15.62b |
| 62.5% dioxane—37.5% water | 15.70e |
| 70% dioxane—30% water | 15.75e |
| 50% DMSO—50% water | 15.48g |
aData taken from reference [38], bdata taken from reference [37], cdata taken from reference [39], ddata taken from reference [40], edata taken from reference [41], fdata taken from reference [42], and gdata taken from reference [43].
The autoprotolysis constants (K ap) obtained for various water-organic solvent mixtures measured in an ionic medium of 0.1 mol·dm−3 NaClO4 at 25°Ca.
| Organic component | Organic component % | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| 0 | 10 | 20 | 30 | 40 | 50 | 60 | 70 | 80 | |
| Methanol | 13.69 | 13.75 | 13.78 | 13.70 | 13.73 | 13.71 | 13.72 | 13.77 | 13.94 |
| Ethanol | 13.69 | 13.82 | 13.99 | 14.16 | 14.24 | 14.28 | 14.39 | 14.59 | 14.77 |
| 1-Propanol | 13.69 | 13.78 | 13.98 | 14.04 | 14.15 | 14.31 | 14.46 | 14.61 | 14.82 |
| 2-Propanol | 13.69 | 13.76 | 13.95 | 14.05 | 14.26 | 14.34 | 14.56 | 14.79 | — |
| Dioxane | 13.69 | 13.91 | 14.22 | 14.51 | 14.86 | 15.24 | 15.62 | — | — |
| Acetonitrile | 13.69 | 13.96 | 14.19 | 14.44 | 14.74 | 15.04 | — | — | — |
aData taken from reference [37].
The % is expressed as (volume/Volume).
Protonation constants of some α-amino acids in water and water-ethanol mixtures [Temp. = 25°C and I = 0.1 mol·dm−3 NaCl].
| AA | Water | 30% E—70% W | 50% E—50% W | 70% E—30% W | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| log | log | log | log | log | log | log | log | log | log | log | log | |
| Cys | 10.29 | 8.36 | 1.71 | 10.25 | 8.23 | 2.60 | 10.81 | 7.06 | 2.93 | 12.07 | 6.33 | 2.82 |
| Tyr | 10.14 | 9.03 | 2.17 | 10.46 | 9.03 | 2.48 | 10.90 | 9.06 | 3.25 | 10.70 | 8.80 | 2.69 |
| Trp | 9.33 | 2.35 | — | 9.17 | 2.83 | — | 9.05 | 3.21 | — | 8.78 | 2.77 | — |
| Lys | 10.69 | 9.08 | 2.04 | 10.20 | 8.77 | 1.71 | 10.07 | 8.76 | 2.68 | 9.64 | 8.48 | 2.19 |
| His | 9.08 | 6.02 | 1.70 | 8.86 | 6.21 | 3.00 | 8.53 | 5.85 | 2.93 | 8.32 | 5.73 | 2.99 |
Note. E: ethanol, W: water, Cys = L-cysteine, Tyr = L-tyrosine, Trp = L-tryptophane, Lys = L-lysine, and His = L-histidine. aData taken from reference [50]; logK 1: corresponds to 11 species (i.e., L− + H+⇌ LH); logK 2 corresponds to 12 species (i.e., LH + H+⇌LH2 +). The % is expressed as (volume/Volume).
Protonation constants of α-amino acid-t-butyl and benzyl esters at 25°C for different water-EtOH mixtures [I = 0.1 mol·dm−3 NaCl]a.
| Esters | 20% E—80% W | 30% E—70% W | 40% E—60% W | 50% E—50% W | 60% E—40% W | 70% E—30% W | 80% E—0% W |
|---|---|---|---|---|---|---|---|
| GlyO-t-Bu | 7.66 | 7.51 | 7.40 | 7.30 | 7.20 | 7.05 | 6.64 |
| AlaO-t-Bu | 9.01 | 8.86 | 8.75 | 8.55 | 8.39 | 8.16 | 8.14 |
| ValO-t-Bu | 7.74 | 7.56 | 7.15 | 6.95 | 6.85 | 6.51 | 6.50 |
| LeuO-t-Bu | 7.79 | 7.63 | 7.38 | 7.21 | 7.02 | 6.92 | 6.75 |
| PheO-t-Bu | 7.15 | 7.00 | 6.67 | 6.56 | 6.50 | 6.40 | 6.33 |
| IleO-t-Bu | 7.75 | 7.65 | 7.35 | 7.18 | 7.12 | 6.89 | 6.64 |
| GlyO-Bz | 7.27 | — | 7.07 | — | 6.94 | — | 6.85 |
| AlaO-Bz | 7.35 | — | 7.17 | — | 7.01 | — | 7.00 |
| ValO-Bz | 7.16 | — | 6.88 | — | 6.77 | — | 6.68 |
| SerO-Bz | 6.75 | — | 6.60 | — | 6.51 | — | 6.54 |
Note. E = ethanol; W = water; adata taken from ref. [57]. logK 1 corresponds to 11 species (i.e., L− + H+⇌ LH); logK 2 corresponds to 12 species (i.e., LH + H+⇌LH2 +). The % is expressed as (volume/Volume).
Protonation constants of some α-amino acids in water and water-ethanol mixtures [Temp. = 25°C and I = 0.1 mol·dm−3 NaClO4]a.
| AA | 30% E—70% W | 40% E—60% W | 50% E—50% W | 60% E—40% W | 70% E—30% W | |||||
|---|---|---|---|---|---|---|---|---|---|---|
| log | log | log | log | log | log | log | log | log | log | |
| Gly | 9.54 | 2.81 | 9.39 | 2.89 | 9.35 | 2.90 | 9.20 | 3.05 | 9.05 | 3.06 |
| Ala | 9.70 | 2.88 | 9.55 | 2.97 | 9.45 | 3.05 | 9.18 | 3.06 | 9.12 | 3.08 |
| Val | 9.50 | 2.85 | 9.41 | 2.95 | 9.30 | 3.15 | 9.07 | 3.16 | 9.02 | 3.17 |
| Leu | 9.60 | 2.87 | 9.40 | 3.01 | 9.30 | 3.06 | 9.07 | 3.17 | 9.05 | 3.25 |
| Ile | 9.55 | 2.92 | 9.47 | 2.98 | 9.31 | 3.15 | 9.20 | 3.17 | 9.10 | 3.24 |
| Phe | 9.12 | 2.75 | 8.95 | 2.95 | 8.79 | 2.98 | 8.70 | 3.05 | 8.60 | 3.00 |
| Ser | 9.18 | 2.88 | 9.00 | 2.87 | 8.77 | 2.89 | 8.68 | 2.91 | 8.66 | 2.90 |
| Met | 9.05 | 2.67 | 8.99 | 2.85 | 8.85 | 2.88 | 8.67 | 3.00 | 8.62 | 3.02 |
Note. E: ethanol, W: water, Val = L-valine, Ala = L-alanine, Leu = L-leucine, Ile = L-isoleucine, Phe = L-phenylalanine, Ser = L-serine, and Thr = L-threonine; adata taken from reference [49]. logK 1 corresponds to 11 species (i.e., L− + H+⇌ LH); logK 2 corresponds to 12 species (i.e., LH + H+⇌LH2 +). The % is expressed as (volume/Volume).
Figure 4Protonation constants of dipeptides in water and water-ethanol mixture [Temp. = 25°C and I = 0.1 mol·dm−3 NaCl].
| Dipeptides | Water | 20% E—80% Wc | 40% E—60% Wc | 60% E—40% Wc | ||||
|---|---|---|---|---|---|---|---|---|
| log | log | log | log | log | log | log | log | |
| Gly-Gly | 8.15a | 3.11b | 7.66 | 3.33 | 6.92 | 3.54 | 6.98 | 3.81 |
| GlyVal | 8.23d | 3.15d | 7.67 | 3.52 | 7.06 | 3.91 | 6.92 | 4.18 |
| GlyLeu | 7.91e | 3.15e | 7.60 | 3.38 | 7.17 | 3.94 | 7.02 | 4.22 |
| GlyPhe | 7.98d | 3.03d | 7.62 | 3.33 | 6.96 | 3.65 | 6.98 | 3.91 |
| GlyThr | 8.50c | 3.20c | 7.74 | 3.19 | 7.07 | 3.37 | 7.05 | 3.67 |
| GlyMet | 8.22f | 3.11f | 7.64 | 3.32 | 7.02 | 3.62 | 6.96 | 3.91 |
Note. E: ethanol; W: water; adata taken from reference [51]; bdata taken from reference [52]; cdata taken from reference [42]; ddata taken from reference [53]; edata taken from reference [54]; fdata taken from reference [55]. logK 1 corresponds to 11 species (i.e., L− + H+⇌ LH); logK 2 corresponds to 12 species (i.e., LH + H+⇌LH2 +). The % is expressed as (volume/Volume).
Figure 5Species distribution diagram (25°C, I = 0.1 M NaCl) for Gly-Gly system as a function of pH in water (L = 1.5 × 10−3 M).
Figure 6Species distribution diagram (25°C, I = 0.1 M NaCl) for Gly-Gly system as a function of pH in 20% ethanol-80% water (L = 1.5 × 10−3 M).
Figure 7Species distribution diagram (25°C, I = 0.1 M NaCl) for Gly-Gly system as a function of pH in 40% ethanol-60% water (L = 1.5 × 10−3 M).
Figure 8Species distribution diagram (25°C, I = 0.1 M NaCl) for Gly-Gly system as a function of pH in 60% ethanol-40% water (L = 1.5 × 10−3 M).
Protonation constants of α-amino acid esters in water-ethanol mixtures [Temp. = 25°C and I = 0.1 mol·dm−3 NaCl]a.
| Esters | Water | 30% E—70% W | 50% E—50% W | 70% E—30% W | ||||
|---|---|---|---|---|---|---|---|---|
| log | log | log | log | log | log | log | log | |
| CysOMe | 9.17 | 6.38 | 9.23 | 6.09 | 9.34 | 5.88 | 10.82 | 6.24 |
| CysOEt | 9.36 | 6.54 | 9.37 | 6.17 | 9.48 | 5.97 | 11.13 | 6.28 |
| TyrOMe | 9.73 | 7.04 | 10.10 | 6.73 | 10.49 | 6.42 | 10.62 | 6.17 |
| TyrOEt | 9.71 | 7.05 | 10.13 | 6.75 | 10.52 | 6.45 | 10.63 | 6.19 |
| TrpOMe | 10.66 | 7.10 | 11.27 | 6.78 | 11.56 | 6.51 | 11.39 | 6.29 |
| TrpOEt | 10.79 | 7.10 | 11.28 | 6.98 | 11.70 | 6.80 | 11.77 | 6.45 |
| LysOMe | 9.99 | 6.98 | 9.80 | 6.90 | 9.52 | 6.63 | 9.12 | 6.46 |
| LysOEt | 10.32 | 7.18 | 9.70 | 6.81 | 9.45 | 6.60 | 9.00 | 6.35 |
| HisOMe | 7.10 | 4.96 | 6.72 | 4.78 | 6.54 | 4.61 | 6.34 | 4.39 |
Note. E = ethanol; W = water; adata taken from reference [56]. logK 1 corresponds to 11 species (i.e., L− + H+⇌ LH); logK 2 corresponds to 12 species (i.e., LH + H+⇌LH2 +). The % is expressed as (volume/Volume).
Protonation constants of some α-amino acids in water and water-dioxane mixtures [Temp. = 25°C and I = 0.1 mol·dm−3 NaClO4]a.
| AA | Water | 10% D—90% W | 20% D—80% W | 30% D—70% W | 40% D—60% W | 50% D—50% W | 60% D—40% W | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| log | log | log | log | log | log | log | log | log | log | log | log | log | log | |
| Gly | 9.58 | 2.32 | 9.55 | 2.41 | 9.56 | 2.70 | 9.58 | 2.87 | 9.58 | 3.15 | 9.60 | 3.48 | 9.62 | 3.60 |
| Ala | 9.70 | 2.40 | 9.66 | 2.52 | 9.72 | 2.64 | 9.68 | 2.89 | 9.73 | 3.10 | 9.75 | 3.39 | 9.78 | 3.63 |
| Val | 9.61 | 2.38 | 9.56 | 2.53 | 9.60 | 2.68 | 9.58 | 2.86 | 9.60 | 3.08 | 9.62 | 3.43 | 9.66 | 3.65 |
| Leu | 9.75 | 2.50 | 9.59 | 2.64 | 9.64 | 2.80 | 9.66 | 2.99 | 9.70 | 3.31 | 9.72 | 3.55 | 9.75 | 3.75 |
| Ile | 9.76 | 2.47 | 9.72 | 2.58 | 9.63 | 2.74 | 9.67 | 2.97 | 9.65 | 3.26 | 9.70 | 3.55 | 9.71 | 3.74 |
| Phe | 9.20 | 2.43 | 9.15 | 2.57 | 9.10 | 2.64 | 9.12 | 2.81 | 9.15 | 3.10 | 9.16 | 3.36 | 9.15 | 3.50 |
| Ser | 9.15 | 2.42 | 9.07 | 2.57 | 9.10 | 2.62 | 9.13 | 2.82 | 9.16 | 3.04 | 9.20 | 3.17 | 9.17 | 3.35 |
| Thr | 9.04 | 2.45 | 9.02 | 2.53 | 9.06 | 2.60 | 9.05 | 2.75 | 9.07 | 2.96 | 9.10 | 3.18 | 9.17 | 3.40 |
Note. D = dioxane, W = water, Val = DL-valine, Ala = DL-alanine, Leu = L-leucine, Ile = L-isoleucine, Phe = DL-phenylalanine, Ser = L-serine, and Thr = L-threonine. aData taken from reference [61]. logK 1 corresponds to 11 species (i.e., L− + H+⇌ LH); logK 2 corresponds to 12 species (i.e., LH + H+⇌LH2 +). The % is expressed as (volume/Volume).
Protonation constants of α-amino acid esters in water-1,4-dioxane mixtures [Temp. = 25°C and I = 0.1 mol·dm−3 NaCl]a.
| Esters |
|
| Water | 20% D—80% W | 40% D—60% W | 60% D—40% W |
|---|---|---|---|---|---|---|
| logK | logK | logK | logK | |||
| GlyO-Me | 1 | 1 | 7.67 | 7.47 | 7.18 | 6.85 |
| GlyO-t-Bu | 1 | 1 | 8.38 | 8.21 | 7.91 | 6.97 |
| ValO-Me | 1 | 1 | 7.53 | 7.38 | 7.09 | 6.08 |
| ValO-Et | 1 | 1 | 8.86 | 8.01 | 7.15 | 6.58 |
| ValO-t-Bu | 1 | 1 | 9.05 | 8.54 | 7.71 | 7.13 |
| SerO-Me | 1 | 1 | 7.10 | 6.99 | 6.69 | 6.61 |
| SerO-Et | 1 | 1 | 7.46 | 7.25 | 6.84 | 6.79 |
| LeuO-Me | 1 | 1 | 7.66 | 7.47 | 7.19 | 6.32 |
| LeuO-Et | 1 | 1 | 7.75 | 7.78 | 7.31 | 6.73 |
| LeuO-t-Bu | 1 | 1 | 7.89 | 8.04 | 7.60 | 6.95 |
| PheO-Me | 1 | 1 | 7.11 | 6.66 | 6.42 | 6.01 |
| PheO-Et | 1 | 1 | 8.12 | 7.24 | 6.81 | 6.24 |
| PheO-t-Bu | 1 | 1 | 8.26 | 7.39 | 6.96 | 6.64 |
Note. D = dioxane, W = water; adata taken from ref. [44]. logK1 corresponds to 11 species (i.e., L− + H+⇌ LH).
Figure 9
Figure 10Protonation constants of inosine and IMP in dioxane-water media at 25°C and I = 0.1 mol·dm−3 NaCl.
| System | % dioxane |
|
| log |
|---|---|---|---|---|
| Inosine IMPc | 0% | 1 | 1 | 8.55 |
| 1 | 1 | 9.09 | ||
| 1 | 2 | 15.07 | ||
|
| ||||
| Inosine IMP | 25% | 1 | 1 | 8.85 |
| 1 | 1 | 9.12 | ||
| 1 | 2 | 15.83 | ||
|
| ||||
| Inosine IMP | 37.5% | 1 | 1 | 9.04 |
| 1 | 1 | 9.24 | ||
| 1 | 2 | 16.28 | ||
|
| ||||
| Inosine IMP | 50% | 1 | 1 | 9.14 |
| 1 | 1 | 9.35 | ||
| 1 | 2 | 16.63 | ||
|
| ||||
| Inosine IMP | 62.5% | 1 | 1 | 9.36 |
| 1 | 1 | 9.39 | ||
| 1 | 2 | 16.72 | ||
a p and q are stoichiometric coefficients corresponding to ligand and H+, respectively; bdata taken from reference [83], cIMP = inosine 5′-monophosphate. The % is expressed as (volume/Volume). Species 11 refers to L− + H+⇌ LH; species 12 refers to L + 2H+⇌LH2 +.
Figure 11Effect of dioxane on the pK a of inosine and inosine 5′-monophosphate (IMP).
Protonation constants of some α-amino acids in water and DMSO-water media at 25°C and I = 0.1 mol·dm−3 NaNO3 a.
| System |
|
| 30% DMSO | 50% DMSO | 70% DMSO |
|---|---|---|---|---|---|
| Gly | 1 | 1 | 9.51 ± 0.01 | 9.79 ± 0.01 | 10.29 ± 0.01 |
| 1 | 2 | 12.92 ± 0.01 | 13.85 ± 0.02 | 15.20 ± 0.01 | |
|
| |||||
| L-Ala | 1 | 1 | 9.65 ± 0.009 | 9.85 ± 0.02 | 10.48 ± 0.02 |
| 1 | 2 | 13.07 ± 0.01 | 13.96 ± 0.03 | 15.36 ± 0.03 | |
|
| |||||
| L-Val | 1 | 1 | 9.34 ± 0.01 | 9.57 ± 0.01 | 9.99 ± 0.01 |
| 1 | 2 | 12.61 ± 0.02 | 13.61 ± 0.02 | 14.88 ± 0.03 | |
|
| |||||
| L-Ser | 1 | 1 | 8.95 ± 0.01 | 9.12 ± 0.02 | 9.89 ± 0.01 |
| 1 | 2 | 12.16 ± 0.02 | 12.95 ± 0.03 | 14.71 ± 0.03 | |
|
| |||||
| L-Isl | 1 | 1 | 9.31 ± 0.01 | 9.51 ± 0.02 | 9.91 ± 0.02 |
| 1 | 2 | 12.75 ± 0.01 | 13.56 ± 0.03 | 15.02 ± 0.03 | |
|
| |||||
| L-Leu | 1 | 1 | 9.46 ± 0.01 | 9.77 ± 0.05 | 10.18 ± 0.01 |
| 1 | 2 | 12.80 ± 0.02 | 13.81 ± 0.05 | 14.98 ± 0.02 | |
|
| |||||
| L-Phe | 1 | 1 | 9.06d | 9.35c | — |
| 1 | 2 | 12.44 | 13.43 | ||
|
| |||||
| L-Met | 1 | 1 | 9.07d | 9.48c | — |
| 1 | 2 | 12.69 | 13.48 | ||
|
| |||||
| L-Thr | 1 | 1 | 8.95d | 9.32c | — |
| 1 | 2 | 12.30 | 13.38 | ||
aData taken from reference [87]; b p and q are stoichiometric coefficients corresponding to ligand and H+, respectively; cdata taken from reference [88]. Species 11 refers to L− + H+⇌ LH; species 12 refers to L + 2H+⇌LH2 +; the % is expressed as (volume/Volume).
Protonation constants (log10β ) of some α-amino acids in solution containing 50% DMSO at different temperatures and I = 0.1 mol·dm−3 NaNO3 and their thermodynamic parametersb.
| System |
|
| 20°C | 25°C | 30°C | 35°C | Thermodynamicsd | ||
|---|---|---|---|---|---|---|---|---|---|
| Δ | Δ | Δ | |||||||
| Gly | 1 | 1 | 10.04 | 9.79 | 9.53 | 9.30 | −85.71 | −100.14 | −55.87 |
| 1 | 2 | 14.14 | 13.85 | 13.52 | 13.22 | −21.04 | 6.87 | −23.09 | |
|
| |||||||||
| L-Ala | 1 | 1 | 10.02 | 9.85 | 9.69 | 9.46 | −63.51 | −24.63 | −56.17 |
| 1 | 2 | 14.19 | 13.96 | 13.75 | 13.46 | −19.34 | 13.80 | −23.46 | |
|
| |||||||||
| L-Val | 1 | 1 | 9.79 | 9.57 | 9.49 | 9.26 | −57.69 | −9.63 | −54.82 |
| 1 | 2 | 13.89 | 13.61 | 13.47 | 13.17 | −21.75 | 4.31 | −23.03 | |
|
| |||||||||
| L-Ser | 1 | 1 | 9.42 | 9.12 | 8.82 | 8.52 | −103.66 | −173.88 | −52.02 |
| 1 | 2 | 13.30 | 12.95 | 12.60 | 12.25 | −17.28 | 15.34 | −21.85 | |
|
| |||||||||
| L-Isl | 1 | 1 | 9.72 | 9.51 | 9.39 | 9.20 | −58.07 | −12.28 | −55.74 |
| 1 | 2 | 13.81 | 13.56 | 13.42 | 13.19 | −11.06 | 40.55 | −23.01 | |
|
| |||||||||
| L-Leu | 1 | 1 | 10.09 | 9.77 | 9.45 | 9.13 | −110.57 | −184.0 | −55.74 |
| 1 | 2 | 14.18 | 13.81 | 13.42 | 13.04 | −21.07 | 6.51 | −32.01 | |
aDMSO% (vol/vol), bdata taken from reference [87], c q and r are stoichiometric coefficients corresponding to ligand and H+ respectively; dWith respect to the thermodynamic parameters (ΔH°, ΔS° and ΔG°) these parameters referred to these reactions (L− + H+⇌ LH±, corresponding to –NH2 group) and (LH± + H+⇌LH2 +, corresponding to carboxylate group); The % is expressed as (volume/Volume).
Figure 12The variation of protonation constants of glycine with the percentage of DMSO.
Figure 13Intramolecular H-bond of serine.
Effect of temperature and thermodynamic parameters of protonation equilibria of inosine and IMPa.
| System |
|
|
| log | Equilibrium | Δ | Δ | Δ |
|---|---|---|---|---|---|---|---|---|
| Inosine | 15 | 1 | 1 | 8.77 | Inosine | −35.0 | 46.3 | −48.8 |
| IMP | 15 | 1 | 1 | 9.33 | (1) L− + H+⇌ LH | |||
| 1 | 2 | 15.28 | ||||||
| Inosine | 20 | 1 | 1 | 8.67 | ||||
| IMP | 20 | 1 | 1 | 9.17 | ||||
| 1 | 2 | 15.17 | ||||||
| Inosine | 25 | 1 | 1 | 8.55 | IMP | −33.0 | 64.6 | −52.2 |
| IMP | 25 | 1 | 1 | 9.09 | (2) L3−+ H+⇌ LH2− | 0.32 | 114.6 | −33.8 |
| 1 | 2 | 15.07 | (3) LH2− + H+⇌LH2 − | |||||
| Inosine | 30 | 1 | 1 | 8.44 | ||||
| IMP | 30 | 1 | 1 | 8.95 | ||||
| 1 | 2 | 14.99 |
a p and q are stoichiometric coefficients corresponding to ligand and H+, respectively; bdata taken from reference [83]; L denotes inosine and inosine 5′-monophosphate.
Figure 14Van't Hoff plot of logK of glycine in 50% DMSO-50% H2O mixture (logK 1 denotes protonation of amino group and logK 2 denotes protonation of carboxylate group).