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S J Leach

Publications and source records attributed to S J Leach.

At least 37 records · Page 2Linked to original sources

Conformational characteristics of the N-acetyl-N'-methylamides of the four (Lys, Tyr) dipeptides.

The conformational properties of the N-acetyl-N'-methylamides of the dipeptides lysyl-lysine, lysyl-tyrosine, tyrosyl-lysine, and tyrosyl-tyrosine were studied by means of conformational energy calculations, by n.m.r. measurements in deuterated dimethylsulfoxide, and by circular dichroism in water, methanol, dioxane-water, and trifluoroethanol. Since these four dipeptides occur occasionally as bends in proteins, it was of interest to see whether short-range interactions, acting within the terminally blocked dipeptides, are sufficient to stabilize bend conformations significantly over other conformations. It was found that the four dipeptides exist as ensembles of conformations in solution. Therefore, it appears that longer-range interactions, such as those present in proteins, are required if bend conformations of these dipeptide sequences are to exist as stable conformations. Three of the dipeptides behave rather similarly. Both the CD and the n.m.r. experiments and computations indicate that the fourth (Lys-Tyr) differs from the others. It has a preference for compact conformations that appear to be stabilized by strong favorable interactions, primarily hydrogen bonds, between the tyrosyl and the lysyl side chains. The computations suggest that the presence of these interactions, and hence the existence of preferred conformations, is strongly solvent-dependent, and that these interactions are weakened in aqueous solution.

Circular Dichroism↗

Study of the state of ionization of [Leu5]-enkephalin in the crystal and in solution.

The state of ionization of [Leu5]-enkephalin in the crystal and in solution was studied with the aid of Raman, i.r., and n.m.r. techniques. The results indicate that, in the crystal, enkephalin adopts the dipolar ion form. In water near neutral pH, enkephalin also exists in the dipolar ion form whereas in DMSO-d6 it is a mixture of the dipolar ion and uncharged species. The pK's of alpha-amino and alpha-carboxyl groups are probably closer to each other in DMSO than in H2O.

Crystallization↗

Leghaemoglobin from Trifolium subterraneum. Purification and characterization.

Leghaemoglobin from the subclover, Trifolium subterraneum cultivar Woogenellup, has been fractionated into at least four electrophoretically distinct components using the ion-exchange chromatographic procedure described by Appleby et al. (Appebly, C.A., Nicola, N.A., Hurrell, J.G.R. and Leach, S.J. (1975) Biochemistry 14, 4444--4450) for soybean leghaemoglobins. Unlike those of soybean, the subclover leghaemoglobins showed no evidence of autoxidation under identical isolation procedures, implying that these proteins have an unusually stable ferrous oxidation state. Circular dichroism in the far-ultraviolet (200--240 nm) indicated a high helicity (approx. 70%) as has been reported for other species of leghaemoglobins. However, circular dichroism in the near-ultraviolet region (240--300 nm) indicated that the haem-protein interactions may be considerably different in the subclover leghaemoglobins and this may explain their atypical resistance to autoxidation and the absence of nicotinate binding in these proteins.

Binding Sites↗

Cyclized dipeptide model for a beta-bend.

A cyclic dipeptide in which L-Ala-Gly was cyclized with epsilon-aminocaproic acid has been synthesized as a model for a beta-bend. Its conformational properties have been examined by means of conformational energy calculations and nuclear magnetic resonance, infrared, Raman, and circular dichroism spectroscopy in various solvents. These calculations and experiments suggest that a type II beta-bend exists in the Ala-Glymoiety, with an NH...O = C hydrogen bond in the epsilon-aminocaproic acid portion of the molecule, and that the molecule adopts a unique conformation in solution. In contrast, an open-chain analog of this compound exists in solution as an ensemble of conformations but with a significant amount of a type II beta-bend structure in the ensemble.

Circular Dichroism↗

Structural rearrangements due to ligand binding and haem replacement in myoglobin and leghaemoglobins.

Structural rearrangements in sperm whale myoglobin and leghaemoglobins caused by changes in the spin or oxidation state of the iron as a consequence of ligand binding have been measured by difference spectroscopy in the ultraviolet. When compared with the high-spin acetate complex, ligands which cause a transition to the low-spin state also cause large perturbations of tyrosine(s) remote from the haem pocket in myoglobin but only minor perturbations of tryptophan (s) in leghaem calobin. This may indicate a weaker coupling between events at the haem site and conformational changes in the protein in leghaemoglobins. The absorption spectra of various haem-liganded forms of the two proteins as well as the binding of the dye rose Bengal to the two apoproteins are consistent with weaker interactions between the haem ano apoprotein and a more solvent-exposed haem pocket in leghaemoglobin compared with myoglobin.

Animals↗

Immunological measurements of conformational motility in regions of the myoglobin molecule.

The conformational motilities of three regions of the sperm whale myoglobin molecule and of an isolated peptide of myoglobin have been examined by measuring the equilibrium constant for the native equilibrium nonnative transition. The immunological approach of Furie et al. (Furie, B., Schechter, A.N., Sachs D., and Anfinsen, C.B. (1975), J. Mol. Biol.92, 497-506) was used with convenient modifications. Antibodies specific to the nonnative conformations were used in assaying for competition between the radioactively labeled peptide and native myoglobin. Labeling was by 125I iodination of the peptide or its 3-(4-hydroxyphenyl)propionyl derivative, and separation of the immune complex from the free peptide was either by ammonium sulfate precipitation or by centrifugation of the antibodies immobilized on Agarose beads. For the antigenic regions of the sequence (1-55), the measured conformational equilibrium constant was 840 +/- 200 at 22 degrees C; the value for the C-terminal region (132-153) was 280 +/- 120 at 25 degrees C, while that for the region (66-76) adjacent to the heme group was greater than 2.5 x 10(6). Measurements on the isolated peptide (132-153) indicated that 1% of the molecules adopt native-type folding in aqueous solution at 36 degrees C.

Amino Acid Sequence↗

Structural basis of heme reactivity in myoglobin and leghemoglobin: thermal difference spectra.

Thermal pertubation difference spectra of sperm whale myoglobin (Mb) and soybean leghemoglobin a (Lb a) in the near-ultraviolet reveal similarities in the tryptophan environment of the two proteins. Of the two tryptophans in each protein, one has its indolyl NH group fully exposed to aqueous solvent, while the other behaves as if it were surrounded by motile but nonpolar residues with little access to water. These environments are not significantly altered by removal of the heme group. Assuming conformational homology, the helix-spacing role of Trp-A12 in Mb (Kendrew, J.C. (1962), Brookhaven Symp. Biol. 15, 216-228) may be taken over, in Lb a, by Trp-H8 which, though remote in linear sequence, would occupy a suitable spatial location. Thermal difference spectra in the Soret and visible regions of pure high-spin (fluoroferric) and pure low-spin (cyanoferric) complexes showed a red shift on cooling Mb complexes, reflecting a predominantly nonpolar environment around the heme, but a blue shift on cooling Lb complexes, reflecting a more solvent-exposed environment. Thermal difference spectra using rose bengal as a probe of the heme pockets in the two apoproteins supported these conclusions. Thermal difference spectra for the high-spin complexes of both Mb and Lb are slightly larger in magnitude than in the low-spin complexes. This may reflect a more flexible heme pocket in the high-spin state, as suggested by recent circular dichroic results. A structural basis for the high oxygen affinity of Lb compared with Mb is proposed, based upon the observed differences in polarity and flexibility of the heme pocket and in amino acid substitutions.

Animals↗