Conformation of diphtheria toxin and an enzymically-active fragment.
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Biomedical subjects
Publications and source records attributed to D Puett.
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Testicular tumors are generally characterized by a loss of responsiveness to gonadotropins. The M5480 Leydig cell tumor is unusual, if not unique, in that it responds to human choriogonadotropin and to lutropin via increased steroidogenesis. This report describes the identification of two variants of the original M5480 tumor that have altered steroid output both in the basal state and in response to human choriogonadotropin. One of the tumors produces mainly progesterone, which is stimulated by the choriogonadotropin; the other tumor produces about equal amounts of progesterone and testosterone, and the secretion of both is stimulated by the choriogonadotropin. The dissociation constant describing the interaction between Leydig tumor cells and (125)I-labeled human choriogonadotropin is between 3 and 5x10(-11) M. This agrees with values reported for normal Leydig cells, although the tumor cells appear to have fewer receptors. The differences noted in the two tumors and normal Leydig cells may have arisen from alterations in gene regulation, or in mutations, involving one or more enzymes in the pathway in which progesterone is converted to testosterone. Under the experimental conditions used, all the tumors studied (seven generations) responded to the choriogonadotropin both in binding and in the resultant stimulation of steroidogenesis. This property, together with the characteristic that a homogeneous cell population can be obtained without enzymatic treatment, should qualify the M5480 Leydig cell tumor(s) as a model system for further studies on the mechanism of action of gonadotropin, on hormone receptors, and on hormonally responsive tumors.
Haemolysates of family members from three generations, all of whom had polycythaemia, were analysed by polyacrylamide gel electrophoresis at pH 8.8. Two closely spaced major bands were observed, one of which corresponded to Hb A and the other to a new mutant designated Hb Vanderbilt. Whole blood from a heterozygote for Hb Vanderbilt was analysed for oxygen affinity which was found to be much higher than that of normal subjects. Haemoglobin Vanderbilt was separated from Hb A using anion exchange chromatography. Cation exchange chromatography yielded a variant beta chain from which a mutant peptide was identified with a structure corresponding to residues beta83--89 with a Ser leads to Arg replacement at position 89. The oxygen affinity of 'stripped' haemolysates from the heterozygote was found to be much less sensitive to added organic phosphates than haemolysates from normal subjects. In while blood, the decreased sensitivity to 2,3-diphosphoglycerate results in an increased oxygen affinity, thus explaining the clinical observations of tissue hypoxia and compensatory polycythaemia.
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The human chorionic gonadotrophin (hCG) preparation (ca. 3000 IU/mg) from pooled pregnancy urine has been fractionated using anion-exchange and gel exclusion chromatography. The various fractions, many of which were heterogeneous, were assayed using radioimmunoassay (RIA) and a testicular radio-receptor assay (RRA). Three fractions were obtained with potencies between 9000 and 20 000 IU/mg); five fractions were characterized by potencies between 1000 and 6000 IU/mg; and four fractions exhibited low potencies (less than 500 IU/mg). A linear relationship between RRA and RIA potency (P) was found to exist for the various fractions: In(PRRA) = 1.14 In(PRIA) - 1.67. The major fractions, which exhibited various potencies, were further characterized by amino acid and carbohydrate analysis. Urine was collected from an individual at various times of gestation, and the hCG fraction was concentrated by benzoic acid and ethanol precipitation. Ion-exchange chromatography of the hCG fraction yielded multiple immunoreactive components throughout pregnancy; thus the observed heterogeneity in the commercial preparation does not appear to result from processing pooled urine from numerous donors. Also, heterogeneity was observed in an individual donor whose urine was not treated with the benzoic acid and alcohol fractionation scheme. It seems indisputable that individual urinary hCG is heterogenous, and this does not appear to reflect isolation artefacts.
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Human urinary Tamm-Horsfall glycoprotein, which contains 28% carbohydrate, has a monomeric molecular weight of about 80,000 but is isolated from urine in the form of intertwining helical suprastructures with molecular weights greater than 10(7). The native glycoprotein was dissociated and denatured with 6 M guanidinium chloride and was subsequently renatured by dialysis against a Tris-HCl buffer. Using sedimetation equilibrium, the renatured glycoprotein was characterized by a Mw cell of 256,800 and a Mz cell of 356,000. The ratio, Mz/Mw, of 1.39 indicates some polydispersity with regard to molecular size. There was no evidence of helical suprastructures in the renatured glycoprotein as judged by electron microscopy. Ca2+ concentrations of up to 50 mM failed to precipitate the renatured glycoprotein; in contrast, the native glycoprotein is precipitated by Ca2+ concentrations between 5-10 mM. The circular dichroic spectrum of renatured Tamm-Horsfall glycoprotein was obtained, resolved, and tentative band assignments made. The spectrum, which is quite similar to that of native Tamm-Horsfall glycoprotein, exhibited negative extrema at 269 nm (due in large part to disulfides and tyrosines) and at 215 nm (due to protein beta-structure and the N-acetylated hexosamines). The alpha-helical content of the glycoprotein was estimated to be no more than 10% and the amount of beta-structure to be about 33%; these values were not affected by the presence of Ca2+ (1 mM). A glcopeptide fraction (ca. 90% carbohydrate), prepared by extensive pronase digestion of the reduced, S-carboxymethylated glycoprotein, exhibited an ellipticity extremum at 212 nm of + 4,750 deg-cm2/dmole, referred to the concentration of (N-acetylated) hexosamines and neuraminic acid.
Using sequential pronase digestions, glycopeptide fractions were prepared from human alpha1-acid glycoprotein, hen egg ovalbumin, and bovine thyroglobulin, two types of glycopeptides being obtained from the latter. The fractions were characterized on the basis of hexose, hexosamine, sialic acid, and peptide content. The glycopeptide fraction from alpha1-acid glycoprotein is complex (i.e., the carbohydrate moiety contains mannose, galactose, N-acetylglucosamine, and sailic acid), as is one of the glycopeptide fractions from thyroglobulin (type I). The glycopeptide fraction from ovalbumin and the type II glycopeptide fractions from thyroglobulin are simple (i.e., the carbohydrate moiety contains only mannose and N-acetylglucosamine). The circular dichroic spectra of the two complex glycopeptide fractions and the ovalbumin glycopeptide fraction were similar and were characterized by a negative extremum between 207.5 nm and 211 nm with magnitudes in the range of --6400 deg-cm2-dmol-1 to --7200 deg-cm2-dmol-1 (referred to the molar concentration of N-acetylated sugars). The thyroglubulin type II glycopeptide fraction exhibited a circular dichroic spectrum with an extremum of --29 200 deg-cm2-dmol-1 at 205 nm. Removal of sialic acid from the complex glycopeptide fractions greatly increased the (negative) magnitude of ellipticity at the extremum. The circular dichroic spectra of the complex of glycopeptide fractions were reasonably additive using the spectra of monomeric sialic acid and the asialo-derivatives. This demonstrates that the contributions of sialic acid to the circular dichroic spectrum are nearly additive. The implications of this observation are that covalent attachment of these terminal residues to the oligosaccharides does not lead to strong interactions with other chromophores nor to positioning in particularly asymmetric environment. In contrast, the magnitudes of the observed ellipticity extrema in the circular dichroic spectra of the asialo-derivatives, in which N-acetylglucosamine is the major chromophore, are much greater than can be accounted for on the basis of monomeric contributions (i.e., free N-acetylglucosamine). This finding shows that the optical activity of N-acetyl-glucosamine is greatly influenced by the formation of the carbohydrate core in glycoproteins and suggests the possible formation of secondary structure in the carbohydrate moiety.
Nephrectomy of mature rats was found to result in a significant increase in the circulatory half-life of tritiated ovine lutropin. The interaction of the glycoprotein hormone with the kidneys was studied in a more direct fashion using electron microscopic autoradiography. Evidence is presented showing the transfer of the hormone from microvilli into tubular epithelia (probably via vesicular transport), where radioactivity then becomes associated with lysosomes. This provides direct support for related results based on subcellular fractionation in which renal lysosomal catabolism was suggested as being important in the degradation of tritiated lutropin (M. Ascoli, R. A. Liddle, and D. Puett, Molecular and Cellular Endocrinology 4, 297, 1976). These results add substantial weight to the growing evidence that the kidneys assume a major role in controlling the concentration of circulating macromolecules.
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Circular dichroic (CD) spectra of the glycoprotein hormone subunit, lutropin-alpha, have been obtained under denaturing conditions (6 M guanidinium chloride, GdmCl) with the disulfides intact, reduced, and reduced and S-carboxymethylated. Above 260 nm, these spectra are similar (although not identical), showing that the disulfide chromophores do not contribute appreciably to the near ultraviolet CD spectrum under denaturing conditions. However, these spectra differ considerably from that of native lutropin-alpha over this spectral region demonstrating that the tertiary structure of lutropin-alpha has a major influence on the near ultraviolet CD spectrum. The magnitude of the 232.5 nm positive CD extremum of lutropin-alpha was found to increase with increasing GdmCl concentration and with decreasing temperature. Between 5 degrees C and 45 degrees C, the ellipticity [theta] at 232.5 nm changed in a linear fashion with temperature; at other wavelengths the thermal changes in [theta] were quite small. [theta] at 232.5 nm increased by about 80% over a 3 M GdmCl range; in contrast, [theta] at 216 nm (indicative of beta-structure) exhibited maximal changes over a 0.5 M GdmCl range. These results indicate some conformational flexibility in lutropin-alpha. The positive 232.5 nm CD extremum has been assigned to one or more tyrosyls which are influenced by an intact disulfide. The latter was demonstrated by showing that reduced and S-carboxymethylated lutropin-alpha failed to exhibit the positive extremum.
The conformations of porcine somatotropin and human choriomammotropin have been studied using circular dichroism (CD) and the results compared with spectra of human, murine, ovine, and bovine somatotropin. The far ultraviolet CD spectra of the six proteins were similar, and each spectrum was analyzed using constrained linear least squares. The following average percentages of alpha-helicity, beta-structure, and aperiodic (nonhelical) conformation were obtained: 57, 6, and 37, respectively, based on a standard protein reference set, and 42, 22, and 36, respectively, based on poly-L-lysine as reference. Thus, the estimated secondary structure is strongly dependent upon the reference data used. Interestingly for these similar proteins, it appears that over 60% of the residues are part of ordered secondary structure and less that 40% are in an aperiodic conformation. The near ultraviolet CD spectra of these hormones were similar in many respects, although certain significant differences were observed, particularly in the sign of various extrema. These spectral differences probably reflect non-identical microenvironments of the aromatics and disulfides, arising from differences both in amino acid sequence and local conformation.
Ornithine decarboxylase (L-ornithine carboxylase, EC 4.1.1.17) is an important enzyme in polyamine synthesis. Its activity is influenced by several peptides hormones, including growth hormones, which have physiological significance in various growth situations. A crude ovine pituitary growth hormone preparation (NIH-GH-S10) was subjected to gel exclusion chromatography (Sephadex G-100) and two major fractions were obtained. One of these corresponded to dimeric growth hormone (GH). The other fraction was excluded by the gel matrix, suggesting a material of higher molecular weight than GH. This was confirmed by polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate. Analysis of a high molecular weight fraction by radioimmunoassay (antisera prepared against GH) and by bioassay (weight gain in hypophysectomized rats) gave apparent GH contents of 19% and 6%, respectively. On a weight basis, the high molecular weight fraction was more effective than GH in stimulating the activity of hepatic and adrenal ornithine decarboxylase, but GH was more effective in stimulating renal ornithine decarboxylase activity. Subfractionation of the high molecular weight fraction using a high porosity gel (Sephadex G-200) gave four fractions, which were shown by amino acid analysis and by polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate to be distinct from GH and heterogenous. These subfractions had different potencies for stimulating renal and hepatic ornithine decarboxylase activity. The ability of crude growth hormone preparations to stimulate ornithine decarboxylase activity in some tissues may be a function of pituitary factors, in addition to GH, which have minimal growth promoting activity.
Mouse submaxillary epidermal growth factor (EGF) is a 53-residue single chain peptide hormone of known amino acid sequence which contains three disulfides, five tyrosines, and two tryptophans. Circular dichroic (CD) spectra have been obtained and resolved for EGF, several well-characterized chemical and enzymic derivatives, and related low molecular weight model compounds. Assignments have been made to most of the resolved bands; these include the peptide, aromatic, and disulfide chromophores. From a comparison of the rotational strength of the 213-nm resolved CD band in native EGF with that of standard proteins, EGF is estimated to contain about 22% beta structure and no alpha helicity. A derivative of EGF lacking the five carboxyl-terminal residues (prepared by limited trypsin digestion) and the cyanogen bromide derivative, in which there is a single main-chain cleavage at residue 21, have spectra properties indicative of approximately 10 and 12% beta structure, respectively. The near-ultraviolet CD spectra of the derivatives are similar to, albeit not identical with, that of EGF. The rotational strengths characteristic of the side-chain chromophores in EGF and these derivatives are several-fold higher than the corresponding values in low molecular weight model compounds. Thus, it appears that EGF and these modified forms contain a stable (and similar) tertiary structure. In contrast, the S-aminoethylated derivative of EGF exhibits a drastically altered CD spectrum relative to EGF indicating a different conformation(s). Equilibrium studies on the guanidinium hydrochloride (GdmCl) mediated reversible unfolding of EGF showed that the transition midpoint is quite high (i.e., 6.89 M GdmCl at 25.0 degrees C), thus, indicating considerable stability. From these data a rough estimate of 16 kcal/mol can be made for the unfolding free energy (delta G degrees) of EGF in the absence of denaturant. Interestingly, EGF exhibits greater stability characteristics than several proteins two to four times its size. The cyanogen bromide derivative of EGF exhibited greatly reduced stability characteristics, e.g., the transition midpoint occurred at 4.19 M GdmCl (25.0 degrees C) and delta G degrees was estimated to be approximately 4 kcal/mol. Thus, a single main-chain cleavage reduced the stability of EGF by about 70%. Thermal transitions of EGF and the cyanogen bromide derivative in the presence of concentrated GdmCl are characterized by a relatively high enthalpy of about 25 kcal/mol at 40 degrees C and a low (probably zero) heat capacity. From these thermodynamic parameters one can calculate that the large reduction in delta G degrees due to scission of the single peptide bond between residues 21 and 22 can be attributed almost completely to a change in entropy; e.g., at 40 degrees C the apparent entropy of unfolding of EGF is 20.4 cal mol-1 deg-1 while that of the cyanogen bromide derivative is 66.4 cal mol-1 deg-1.
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Following an intravenous injection of tritiated ovine lutenizing hormone (LH) into mature male rats, the liver and kidneys accumulate a significant portion of the non-excreted hormone. The subcellular distribution of total radioactivity in both tissues was found to be similar to that of beta-galactosidase, a lysosomal enzyme marker. Moreover, the subcellular fraction with the highest relative specific activity of beta-galactosidase exhibited the highest degradation rate of endogenous hormone under in vitro conditions. Based on these and other observations, it is concluded that the intracellular catabolism of LH by these tissues is due to lysosomal enzymes. An analysis of the radioactive degradation products produced by a lysosomal-rich subcellular fraction showed the presence of free amino acids and oligopeptides. Thus, the uptake and degradation of the hormone by these tissues appear to occur by endocytosis followed by lysosomal catabolism. This phenomenon may represent a regulatory role in the control of (circulating) hormone concenttrations.
Somatostatin is a hypothalamic tetradeca peptide that inhibits the release of growth hormone insulin, and glucagon. The circular dichroism spectrum is characterized by negative extrema at 238 nm and 270 nm, and a positive extremum at 225 nm. The far ultraviolet circular dichroism spectrum is consistent with the presence of ordered secondary structure such as beta-structure, but not alpha-helix. Sedimentation equilibrium results demonstrate that somatostatin exists in its monomeric form (i.e., a molecular weight of 1610 +/- 36 was obtained) and, thus, the structure must arise from intramolecular interactions. The diffusion constant of somatostatin was estimated to be 1.66 X 10(-6) cm2/sec. These data are consistent with an ellipsoidal rather than a spherical shape. The magnitude of the ellipticity at both 225 nm and 238 nm is quite dependent on guanidinium hydrochloride concentration; the midpoint occurs at about 3 M and the transition is cooperative-like. These data strongly suggest that somatostatin has a stable conformation in aqueous solution. A model, consistent with the results of the physicochemical studies and with semi-empirical rules for secondary structure formation, is proposed for somatostatin. The proposed structure consists of a hairpin loop with several residues in an antiparallel beta-pleated sheet, is somewhat elongated, and contains a hydrophobic domain at one end and a hydrophilic domain at the other end.