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R C Augusteyn

Publications and source records attributed to R C Augusteyn.

At least 37 records · Page 2Linked to original sources

On the interaction of alpha-crystallin with membranes.

The interaction of human and bovine alpha-crystallins with bovine lens membranes was evaluated using binding curves and Scatchard plots constructed from scans of SDS-PAGE gels and/or from the association of [14C]-leu alpha-crystallin with the membranes. No differences were observed for total bovine, normal human 19 and 88 year old and cataractous alpha-crystallins. In each case, interaction takes place through two distinct processes, a) a high affinity (Kd = 1 x 10(-8) M) binding with low capacity (25 mg alpha-crystallin/g membrane protein) and b) partitioning (Kp = 0.25 l/g membrane protein). Loss of the high-affinity binding component was observed for bovine nuclear alpha-crystallin. Contrary to previous reports, it is concluded that cataract formation does not affect the ability of human alpha-crystallins to interact with bovine lens membranes. Reanalysis of previously published data supports this conclusion.

Adult↗

Studies on the location of aromatic amino acids in alpha-crystallin.

The locations of tryptophan residues in alpha-crystallin and homopolymers constructed from the alpha A- and alpha B-chains were examined by comparing their fluorescence emission properties and their accessibilities to quenchers. Two classes of tryptophan could be distinguished on the basis of differences in their spectral characteristics, fluorescence decay lifetimes, quenching with acrylamide and exposure by increasing concentrations of urea. Polarization measurements indicated that the tryptophan residues were associated with flexible segments of the polypeptide chains. The two classes could be assigned, one to Trp-9 (in both A- and B-chains) which is in an hydrophobic environment, and one to Trp-60 (B-chain) which appeared to be nearer the surface of the aggregate. No evidence was found for residues inaccessible to the quenchers. An apparent partition coefficient of 40 was obtained for the association of acrylamide with the protein. From temperature-dependence studies, it was concluded that there was a significant energy barrier to the penetration of acrylamide into the protein matrix (Ea = 5.8 kcal/mol) and that entry of the quencher was through channels produced by temporary disruption of the matrix (delta s = 1.5 eu). The phenolic side-chains of tyrosine residues in several different alpha-crystallins were found to ionize with pK values above pH 11, indicative of residues highly shielded from the solvent. Comparisons of polypeptide sequences, together with tyrosine fluorescence emission data and the pK values, permitted a tentative assignment of residue locations. All of the data are consistent with a possible micelle-like structure for alpha-crystallin but not with a layered structure.

Acrylamide↗

Acid-induced dissociation of alpha A- and alpha B-crystallin homopolymers.

Homopolymers were constructed from the alpha A and alpha B polypeptides isolated from the lens protein alpha-crystallin. As the pH is lowered from 7.0 to 3.4, these homopolymers dissociate to smaller species with molecular masses ranging from 80 to 250 kDa for the alpha A and around 140 kDa for the alpha B dissociation products. The pKa for this dissociation was 3.8 +/- 0.2 for alpha A and 4.1 +/- 0.1 for alpha B homopolymers. Further decreases in pH, to 2.5, resulted in the presence of only denatured alpha B polypeptides, whereas the alpha A dissociation products remained intact. Fractionation of the acid dissociation products from the alpha A homopolymer at pH 2.5 yielded stable species with molecular masses of 220 +/- 30, 160 +/- 20, and 90 +/- 10 kDa. The majority of the population at acid pH consisted of the 160 kDa species. Conformational analysis of these species revealed that most of the secondary structure of the original alpha A homopolymer was retained but that the tertiary structure was perturbed. Fluorescence quenching and energy transfer measurements suggested that the molecule had undergone acid expansion, with the greatest perturbation observed in the smallest particles. The results from this work suggest that alpha A homopolymers are heterogeneous populations of aggregates of a "monomeric" molecule with a molecular mass of 160 kDa. This "monomeric" molecule may be formed from the association of two tetrameric units.

Amino Acids↗

Growth related changes to functional parameters in the bovine lens.

Dimensions, volumes and protein contents were measured for bovine lenses with wet weights ranging from 0.17-3.07 g (2 months gestation to 19 years post-natal). All increase in a non-linear fashion. The lens becomes flatter with age due to a more rapid increase in the equatorial plane, but the ratio of anterior to posterior sagittal distances remains constant (1.19). The radius of curvature increases from 4.9 to 15 for the anterior surface and from 4.4 to 13 for the posterior. Protein content increases more rapidly than volume resulting in an increased average protein concentration from around 18% in the early prenatal lens to nearly 50% in the 19 year old. Total protein content (TPC) was found to be related to wet weight (We) according to the equation, TPC = 0.3We1.33. It is suggested that TPC is a better parameter for describing growth than wet weight or age. The refractive index, in the equatorial plane, increases towards the centre, from 1.38 at the edge of the lens. The maximum index, in the centre, increases with lens size up to 1.474 in the largest lens studied. This corresponds to a protein concentration of 70%. In all lenses, refractive index and protein concentration gradients were superimposable when plotted from the outside towards the centre. The optical performance of the lenses was assessed by measuring the back focal length which increases gradually from 24 to 51.5 mm over the 0.17 to 3.07 g size range. This was attributed to the increased radii of curvature.

Aging↗

The effects of isolation buffers on the properties of alpha-crystallin.

This work was undertaken in order to resolve some of the controversy in the literature concerning the properties of alpha-crystallins isolated in different laboratories. Bovine lens proteins were extracted and isolated by gel chromatography using 'Hoenders buffer' (0.02 M Tris-HCl, 1 mM EDTA, 80 mM NaCl, pH 7.3), 'Tardieu buffer' (0.04 M phosphate, 1 mM EDTA, 0.2 mM DTT, 0.06 M KCl, pH 6.8) and 'Thomson/Augusteyn' buffer (0.05 M Tris-HCl, 2 mM EDTA, 0.2 mM DTT, pH 8.0). The alpha-crystallin peaks were then divided into 12-16 pools and subjected to detailed physicochemical characterization. Fractionation by HPLC-GPC and quasi-elastic light scattering indicated that the size of the proteins decreased with increasing elution volume and that they were stable for at least 9 months at 20 degrees C. Molecular masses were found to range from over 2 mDa at the front of the peaks to around 600 kDa at the end. The size distributions, for the three buffers, were indistinguishable. No differences could be detected in the polypeptide distributions by SDS-PAGE. The proteins were also identical in their near- and far-UV circular dichroism spectra, accessibility of their sulphydryl groups to DTNB, tryptophan accessibility to quenching by acrylamide and iodide, and immunoreactivity with two monoclonal antibodies with different specificities. It is concluded that identical alpha-crystallins are isolated with the three different buffers and that variations in pH (6.9-8.0), ionic strength (60-150 mM) and cation (K, Na, Tris) during the isolation do not affect the properties of the protein. Claims that differing observations on the properties of alpha-crystallin may be attributed to the buffers used, are untenable.

Animals↗

Structural properties of polydisperse biopolymer solutions: a light scattering study of bovine alpha-crystallin.

We have measured mean value of RHz, mean value of R2G1/2z, and mean value of Mw for individual fractions of the protein alpha-crystallin obtained by gel filtration of bovine lens nuclear extracts. A strong and monotonic decrease of mean value of RHz and mean value of Mw with increasing elution volume could be observed, indicating a broad size distribution. The experimental results are quantitatively consistent with a polymerization of monomeric units into linear chains, which may have a certain degree of flexibility. Using theoretical expressions for mean value of R2G and mean value of RH originally derived for semiflexible polymers in solution, we can self-consistently analyse the data from static and dynamic light scattering, and from electron microscopy experiments. We thus obtain detailed information on the molecular weight distribution and the quaternary structure of alpha-crystallin in these solutions.

Animals↗

The effects of sonication on alpha-crystallin.

Sonication of bovine alpha-crystallin increases its molecular mass from around 770 kDa to in excess of 2,300 kDa. Exposure to 2M urea or 0.1 M glycine pH 7, did not affect the size of the sonicated protein, indicating that it did not consist of dimers and higher polymers of the original molecule. Sonication of a mixture of alpha-crystallins labelled on the A chain sulphydryl group with either an aminonaphthalene or a fluorescein chromophore, generated a product exhibiting substantial energy transfer. The average distance between the probes was calculated to be 5 nm. These observations suggest that sonication has generated a new quaternary structure, incorporating subunits from two or more different alpha-crystallin molecules. No significant differences were observed in the microenvironments of tryptophan residues although those in the sonicated protein could be more easily exposed by controlled denaturation with urea. A small decrease was observed in the quenchability of a fluorescent probe attached to the sulphydryl group and a small increase in the uptake of an hydrophobic probe. These data suggest that sonication may have altered the conformation of the subunits at, or near the surface of the protein.

Animals↗

Structure/function relationship between optics and biochemistry of the lens.

The lens is an important element in the optical system of the eye. It has a gradient of refractive index for purposes of aberration control and in order to provide the ocular system with sufficient power. The lens also contains unique structural proteins. Although much work has been done to characterize the lens proteins, a structure/function relationship between these entities and the optics of the normal lens had not been previously considered. To investigate if such a relationship exists, biochemical and optical investigations were carried out under the common theme of development and aging. Investigations of distribution patterns of the three protein classes and measurements of the refractive index gradient were made on bovine and human lenses over wide age ranges. The results of these studies were compared. Although there was no direct evidence of a link between a single protein class and the index gradient, there are hints from interspecies comparison, that the level of LMW proteins may determine the magnitude of the refractive index. It is also possible that the insoluble fraction, which bears the greatest relationship in trend to the refractive index gradient, may represent proteins (largely pounds-crystallins) which have been structurally altered in situ in order for the lens to maintain viable optical function under the conditions of continual growth and aging.

Adult↗

On the composition and origin of the urea-soluble polypeptides of the U18666A cataract.

The composition and origin of the urea soluble polypeptides which accumulate in the U18666A rat-cataract were studied. Chromatography on Sephacryl S-200 in 7.2 M urea separated the USP into 19-20 and 22-26 kDa enriched fractions. The polypeptide composition of these fractions was probed by immunoblotting of IEF and 2-D electrophoresis gels. The cataract USP largely focused at pHs comparable to alpha- and beta-crystallins. Immunoblotting of 2-D gels showed the USP to be composed predominantly of alpha- and beta-derived crystallins; little gamma-polypeptide was detected in the gels. Some of the insoluble alpha-crystallin appeared to be degraded. Changes in the lens WSP which accompanied the increase in USP were also measured. WSP decreased more than USP increased. Decreases in soluble high molecular weight proteins (alpha- plus beta-crystallins) and medium molecular weight proteins (beta-crystallins) were calculated which together could entirely account for the increased USP. An unexpected decrease in the lens soluble low molecular weight proteins (gamma-crystallins) appeared largely due to the selective leakage of gammas from the lens. The protein content of the ocular humors from eyes with cataracts increased 4 fold and contained polypeptides that focused on IEF like gamma-light crystallin and reacted with the gamma-crystallin antiserum. The cause of the protein insolubilization in the U18666A cataract is unknown but could be partially due to increased aggregation of alpha-crystallins secondary to loss of gamma-crystallins from the lens.

Androstenes↗

The effect of phosphorylation on the structure of alpha-crystallin.

Homopolymers were constructed from the highly purified phosphorylated (A1 and B1) and non-phosphorylated (A2 and B2) polypeptides of alpha-crystallin. These were examined using electron microscopy, light scattering, fluorescence spectroscopy and sulphydryl probing to determine the effects of phosphorylation on the structure of alpha-crystallin. Each reconstituted aggregate consisted of uniform particles with circular cross-sections and diameters of 9.3-9.5 nm. Some of these were associated in chain-like structures. The molecular mass of the homopolymers varied from 360-507 kDa; for a single particle, it was estimated to be 216 +/- 10 kDa. Tryptophan residues in the alpha B2 homopolymers were more accessible to the solvent and to quenchers than those in alpha A2. Phosphorylation increased this accessibility in the alpha A homopolymer but decreased it in alpha B. This decrease could be attributed to phosphorylation of the serine adjacent to tryptophan 60 in the B chain. The kinetics of the reaction with DTNB indicated that the single cysteine in the A chain was buried in the alpha A2 homopolymer (k1' = 0.013 min-1) but more accessible in alpha A1 (k1' = 0.046 min-1). It was concluded that phosphorylation significantly alters the conformation of the alpha A subunits but probably has little effect on the B subunits. The alterations do not affect the ability of the subunits to associate into alpha-crystallin-like particles.

Animals↗

On the structure of alpha-crystallin: construction of hybrid molecules and homopolymers.

The alpha A2 and alpha B2 subunits of bovine alpha-crystallin were purified by chromatofocussing in urea and assembled into homopolymers. Light-scattering measurements indicated their molecular masses were 360 and 420 kDa. The alpha A2 and alpha B2 polypeptides were also used to construct a series of hybrid molecules with alpha A/alpha B ratios ranging from 7:1 to 1:7. Sedimentation velocity analyses, isoelectric focussing under non-deaggregating conditions, circular dichroism spectroscopy and immunochemical analysis indicated that all of the subunits had copolymerized to alpha-crystallin-like aggregates with complete regeneration of the native structure. The polymers could be distinguished on the basis of their differing affinities for the antiserum. This was directly related to the proportion of alpha A2 subunits in each polymer. It was concluded that the alpha A2 and alpha B2 subunits are structurally equivalent and occupy equivalent site in the alpha-crystallin aggregates. It was also concluded that a micellar-like quaternary structure was consistent with most previous observations on the protein.

Animals↗

Evaluation of equilibrium constants from precipitin curves: interaction of alpha-crystallin with an elicited monoclonal antibody.

A simple procedure, based on the precipitin curve and the antibody:antigen ratios of the precipitates, is described for evaluation of the intrinsic association constant (k) governing the interaction between a multivalent antigen and a bivalent antibody. Its application is illustrated with a study of the interaction between alpha-crystallin and an elicited monoclonal antibody, which is shown to exhibit essentially identical affinities (k = 9 X 10(4) M-1) for the alpha m and alpha c forms of the antigen.

Animals↗

The effect of temperature on the renaturation of alpha-crystallin.

The effects of variations in temperature and protein concentration on the renaturation of bovine alpha-crystallin have been examined using gel permeation chromatography, sedimentation analysis, fluorescence spectroscopy and electron microscopy. High protein concentration (3-53 mg/ml) were found to generate heterogenous populations of aggregates. It was concluded that concentrations above 3 mg/ml were inappropriate for renaturation of alpha-crystallin. Aggregates with molecular masses gradually increasing from 461,000 to 695,000 Da were produced with increasing temperature over the range 6-39 degrees C. Electron microscopy demonstrated that the reaggregates were composed predominantly of particles with circular cross-sections and mean diameters of 13-14 nm. As the renaturation temperature increased, increasing amounts of sheet-like structures were observed. Tryptophan accessibility to acrylamide quenching decreased in these aggregates as the size increased. These observations are consistent with the concept that there is no unique quaternary structure, or set of structures, for alpha-crystallin but that the protein can exist in a variety of forms containing different numbers of subunits.

Animals↗

Excimer fluorescence in lens proteins labelled with N-(1-pyrene)maleimide.

Lens proteins labelled with the sulphydryl reagent, N-(1-pyrene)maleimide exhibit pyrene excimer fluorescence around 470 nm. This was found to be associated with both the beta- and gamma-crystallins but not the alpha-crystallins. Disappearance of the 470 nm peak on exposure to denaturants indicates it arose from an intramolecular excimer. This excimer fluorescence provides a new and sensitive tool for monitoring conformational changes in the beta- and gamma-crystallins.

Animals↗

Specific dissociation of alpha B subunits from alpha-crystallin.

Exposure of bovine alpha-crystallin to 0.1 M glycine at pH 7 decreases the average molar mass of the protein from 700 to 420 kDa. When the pH is lowered to 2.5, in the same buffer, the alpha B chains specifically dissociate from the aggregates, leaving a particle of 290 kDa containing only alpha A chains. The decrease in the molar mass corresponds to the mass of the alpha B chains in the original aggregate. The pH-dependent dissociation is fully reversible. Similar changes were observed with rat and kangaroo alpha-crystallins but the dogfish protein was not affected. Sedimentation velocity analyses and fluorescence spectroscopy yielded a pK, for the dissociation, of 3.7 for alpha-crystallin and 4.0 for a homopolymer constructed from purified alpha B2 polypeptides. An alpha A2 homopolymer was virtually unaffected by the lowering of pH. The products from the dissociation were isolated and their properties studied by sedimentation analysis and acrylamide quenching of tryptophan fluorescence. The alpha B chains were found to be completely denatured, whereas the structure of the alpha A chains, in the 290 kDa, particle, were only slightly altered. Comparisons of the sequences of the various proteins examined suggested that decreased ionization of aspartic acid 127 in the alpha B chain was responsible for the specific dissociation of this polypeptide.

Animals↗

Isolation of alpha-crystallin and its subunits by affinity chromatography on immobilized monoclonal antibodies.

Use has been made of the specific interactions between monoclonal antibodies and the alpha A or alpha B subunits of alpha-crystallin to devise methods for the purification of the intact protein or its subunits. alpha A and alpha B subunits were separated by affinity chromatography on an immobilized monoclonal antibody specific for alpha A chains, using a pH gradient. Use of an antibody which binds both subunits has enabled the isolation of intact alpha-crystallin aggregates. Gel electrophoresis, conformational probing and size analysis showed that the affinity purified proteins were purer but otherwise indistinguishable from the alpha-crystallins isolated by other methods.

Animals↗

Nondestructive method of constructing three-dimensional gradient index models for crystalline lenses: I. Theory and experiment.

A nondestructive method of constructing the three-dimensional refractive index profile of crystalline lenses is presented. The technique is based on earlier work in which the refractive index profile is deduced from measuring the refraction of a set of light rays that traverse the lens in a particular plane. However, the present approach requires fewer assumptions about the form of the refractive index profile so that the deduced results are less likely to reflect preconceived notions about the form of the refractive index distribution. An accurate model for the bovine crystalline lens has been constructed with the present approach. Without further adjustable parameters, our three-dimensional model of the lens refractive index profile is able to predict accurately the refraction of meridional rays that traverse the lens in the sagittal plane. Preliminary data on human lenses are also presented.

Adolescent↗