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Biomedical subjects

E J Carroll

Publications and source records attributed to E J Carroll.

At least 19 recordsLinked to original sources

A 9.6 S protein is the third calcium-insoluble component of the sea urchin hyaline layer.

A third major, calcium-insoluble component of the sea urchin (Strongylocentrotus purpuratus) hyaline layer has been purified and physically characterized. In the absence of divalent cations, the native, soluble protein has a sedimentation coefficient of 9.6 S and a molecular weight of 4.5 +/- 0.1 x 10(5). These data indicate that this large protein assumes an elongated, nonspherical conformation in solution. Its sedimentation behavior and its mobility on nondenaturing electrophoretic gels distinguish the 9.6 S protein from the 11.6 S and 6.4 S hyalin proteins we have previously characterized. That the 6.4 S, 9.6 S, and 11.6 S proteins are the major calcium-insoluble structural components of the hyaline layer is supported by the fact that we have found them in a variety of hyalin protein fractions prepared by a number of standard approaches. All three proteins are precipitated by calcium ions, thus fitting the operational definition of hyalin. Evidence is presented that the 11.6 S protein may overlie the 9.6 S protein in the hyaline layer.

Animals

Purification, physicochemical characterization, and immunohistochemical localization of a major 11.7 S glycoprotein from the jelly coats of the anuran Lepidobatrachus laevis.

Embryos of the frog Lepidobatrachus laevis are encased by a fertilization envelope and two jelly layers, termed J1 (innermost) and J2 (outermost). From preparations of total jelly solubilized from cleavage-stage embryos by a solution of alkaline beta-mercaptoethanol we have purified one jelly coat glycoprotein to homogeneity via FPLC gel permeation chromatography on Superose 6H. The purified glycoprotein was 94% protein and 6% carbohydrate, had an s0(20),w of 11.7 S, with a molecular weight of 245,000 measured by sedimentation equilibrium and 263,000 by gel permeation chromatography. SDS-PAGE revealed that the glycoprotein is composed of a single subunit near 29,700 molecular weight; thus we propose that eight of these subunits comprise the native molecule. Amino acid analysis of the glycoprotein indicated a high content of Glx + Asx (32.4 mole%), a low content of basic amino acids (Arg + Lys = 12.2 mole%), and a single cysteine residue per subunit. The N-terminal amino acid was threonine and the sequence of the first twenty amino acids was determined. Monospecific antisera to the glycoprotein were prepared in rabbits and were used to immunohistochemically localize the glycoprotein throughout the matrix of both jelly layers. Antiserum against the glycoprotein had virtually no effect on the fertilizability of jellied eggs in vitro; thus we hypothesize that the glycoprotein fulfills a structural role in both jelly layers.

Amino Acid Sequence

Gastrulation in the sea urchin Strongylocentrotus purpuratus is blocked by the fluorescein dye erythrosin B.

Erythrosin B, a food, drug, and cosmetic dye, arrested gastrulation in embryos of the sea urchin Strongylocentrotus purpuratus. A 30 min pulse of 5 microM erythrosin B added at 18 hr postinsemination blocked gastrulation scored at 50 hr postinsemination when control embryos had completed gastrulation. Dye addition at later times had no detectable effects on development through 50 hr postinsemination. The dye may block primary invagination via its known effects on plasma membrane permeability and fluidity.

Animals

A comparison of fertilization envelope development in three species of Strongylocentrotus (S. franciscanus, S. droebachiensis, and S. purpuratus).

The ultrastructure of fertilization envelope (FE) development and the polypeptide spectra of Strongylocentrotus franciscanus and S. droebachiensis envelopes were compared to S. purpuratus. In S. franciscanus, the FE reached its maximum thickness of 67 nm by 3 minutes postinsemination (PI), and final structuralization was observed by 40 minutes PI. The fully formed FE did not have microvillar impressions (casts) and was symmetrical, with outer double laminar elements surrounding an amorphous central region. Isolated S. franciscanus FEs were soluble in reducing and denaturing solvents and the same set of 33 polypeptides ranging from 18.5 to 260 kD was detected in FEs isolated from 10 to 180 minutes PI. The S. droebachiensis FE retained microvillar casts, assumed its definitive form by 3 minutes PI, and was 70 nm thick between microvillar impressions. Isolated S. droebachiensis FEs were partially soluble in reducing and denaturing solvents, and the polypeptide spectra of FEs isolated between 10 and 60 minutes PI were identical and showed 14 polypeptides from 18.5 to 265 kD. Antisera against extracted FEs and the FE extract from S. purpuratus were immunologically cross-reactive (using an enzyme-linked immunosorbent assay) with S. franciscanus and S. droebachiensis FE preparations; immunoblots identified 13 and 5 cross-reactive polypeptides, respectively. Most of the cross-reactive polypeptides were of slightly different molecular weight. Based on comparative ultrastructural, solubility, and electrophoretic data, we suggest that S. droebachiensis FE development is most like that observed in S. purpuratus.

Animals

Immunohistochemical localization of the peptide sauvagine in the skins of phyllomedusine frogs.

We have immunohistochemically localized immunoreactive sauvagine (ir-SV) in the skins of two species of frogs of the genus Phyllomedusa. Using rabbit antiserum against synthetic sauvagine conjugated to keyhole limpet hemocyanin, sauvagine-like immunoreactivity (SVLI) was detected in the lumina of all serous glands observed and in a few mucous glands in skin sections of adult P. sauvagei and P. trinitatus. SVLI was not detected in the skin of a third species, P. azurea. In P. trinitatus tadpoles, the presence of cutaneous SVLI was first observed at the onset of metamorphosis. Larval SVLI was evident in forming serous glands, but was not seen in mucous or lipid glands. Patchy SVLI was also observed in the dermis around the chromatophores in one tadpole. Preincubation of the antiserum with synthetic SV blocked SVLI; preincubation of the antiserum with urotensin I or rat or ovine corticotropin-releasing factor reduced but did not obliterate SVLI. The presence of SV in serous and mucous glands suggests that the release and function of SV may be different for each gland type, and the presence of SVLI in some mucous glands but not others suggests that biochemically discrete populations of mucous glands exist in the frog skin.

Amphibian Proteins

A calcium-insoluble 6.4 S protein derived from sea urchin cortical granule exudate.

A major protein component of the sea urchin, Strongylocentrotus purpuratus, cortical granule exudate has been purified and characterized. In the absence of divalent cations, the native, soluble protein has a sedimentation coefficient at infinite dilution of 6.4 S and a molecular weight from sedimentation equilibrium measurements of 2.8 +/- 0.3 X 10(5). These and other data indicate that the protein assumes an elongated, rod-like structure in solution. The protein is greater than 95% homogeneous as judged by agarose- and sodium dodecyl sulfate-gel electrophoresis. In the latter experiments, the protein shows a relative molecular weight of 1.8 X 10(5) and is clearly distinct from the 11.6 S protein described earlier which shows two bands corresponding to 3.2 X 10(5) and 2.1 X 10(5). The 6.4 S protein is the major protein of the calcium-insoluble fraction of cortical granule exudate and contributes to the formation of the extracellular investments of the sea urchin embryo. Using a light-scattering assay, we show that the purified protein retains the ability to aggregate in the presence of divalent cations mirroring its assembly in vivo. Calcium ion alone is able to initiate this reaction and the rate of precipitation increases with calcium concentration. Magnesium alone is ineffective in this regard but, in combination, the two ions act synergistically. Strontium and barium can substitute for calcium, but higher concentrations of the former cations are required to produce an equivalent effect.

Animals

Refertilization in eggs of the sea urchin Strongylocentrotus purpuratus.

To determine the role of the sea urchin egg plasma membrane in the species-specificity of fertilization, the ability of denuded activated eggs to be heterospecifically refertilized was determined. Our initial studies included evaluating the effectiveness of three commonly used methods of vitelline envelope (VE) removal using indirect immunofluorescence microscopy with antibodies directed against the VE. Unfertilized Strongylocentrotus purpuratus eggs were extracted with 0.01 M dithiothreitol (DTT) for 3 min or digested with 1.0 mg/ml pronase for 1 hr. Eggs were also fertilized, then diluted into a divalent-free medium to produce thin, elevated envelopes (VE*s) that were mechanically removed by sieving the eggs through nylon mesh. We found that both DTT extraction and pronase digestion were not completely effective in VE removal, and mechanical removal methods gave rise to a mixed population of eggs, those that had their VEs removed and those with a collapsed envelope that was not detectable at the light microscope level. Therefore, a new method of VE removal was developed. Eggs with VE*s were prepared followed by treatment with 0.01 M DTT to solubilize the envelopes. Nearly 100% of the denuded activated eggs incorporated one or more homologous and heterologous sperm, suggesting that the egg plasma membrane does not function in determining the species-specificity of fertilization.

Animals

Characterization of hatching-associated changes in the sea urchin fertilization envelope.

The embryo of the sea urchin Strongylocentrotus purpuratus hatches from the fertilization envelope (FE) via synthesis and secretion of a hatching enzyme and by ciliary activity. Although the basic characteristics of the hatching enzyme are known, little is understood about changes in the FE during hatching. We have studied the biochemical changes in FEs during hatching. Polyacrylamide gel analysis revealed an increasingly complex polypeptide spectrum of the extractable fraction of FEs isolated during development. Immunoblotting of these polypeptides (using antiserum against the soluble polypeptides extracted from FEs isolated at 30 minutes postinsemination) revealed a decrease in the soluble FE components during hatching. Immunochemical analysis of hatching medium showed a strong correlation between the soluble FE components released and the hatching interval. Immunoblotting of hatching media indicated the presence of soluble FE polypeptides of similar and lower molecular weights than those obtained for extracts of FEs. These results imply that the hatching-associated changes in the FE of S purpuratus occur via proteolysis of FE components, which are derived from the paracrystalline protein fraction, a subset of cortical granule proteins.

Animals

Intermolecular cross-linking of vitelline envelope polypeptides predominates in the hardened sea urchin fertilization envelope.

At fertilization, the sea urchin egg vitelline envelope (VE) elevates, and a subset of released cortical granule proteins, paracrystalline protein fraction (PCF), associates with the VE to form the fertilization envelope (FE). Cortical granule peroxidase cross-links FE polypeptides by phenolic coupling of tyrosyl residues. We have used an immunological approach to determine which polypeptides are linked together in the hardened FE of Strongylocentrotus purpuratus. Soluble polypeptides were extracted from hardened FEs, and antibodies were prepared in rabbits against the insoluble envelope matrix (FE ghost). Whole immune serum and purified IgGs each reacted with FE ghosts when using an enzyme-linked immunosorbent assay. VEs isolated by means of three published procedures cross-reacted with the immune serum and purified IgGs. Soluble FE polypeptides also cross-reacted with whole immune serum and IgGs owing to the presence of VE polypeptides. Hyalin, a protein not found in FEs, and PCF did not cross-react with antiserum against FE ghosts. To determine which VE polypeptides were cross-linked in the hardened FE, VE polypeptides were immunoblotted by using antiserum against FE ghosts. Most of the VE polypeptides that ranged from 68,000 to 283,000 molecular weight cross-reacted with the antibody.

Animals

Resolution and characterization of a major protein of the sea urchin hyaline layer.

A major protein component of the gel-like, embryonic hyaline layer of Strongylocentrotus purpuratus has been purified and characterized. The protein retains the ability to form an insoluble gel in the presence of specific divalent cations, a property characteristic of the hyaline material. Using a light scattering assay developed to measure the initial rate of hyalin gelation, we have been able to show that calcium alone is capable of initiating this reaction but that calcium and magnesium are synergistic in their effect. In the absence of divalent cations, the major hyalin protein has a molecular weight of 9.2 +/- 0.5 X 10(5) and a sedimentation coefficient of 11.6 S; these and other data indicate that the protein assumes a very elongated, rod-like structure in solution. Smaller amounts of two additional proteins, 8.8 and 6.5 S, are present in the hyalin fraction when the jelly coat and vitelline layer are subjected to a more stringent acid treatment early in the isolation procedure.

Animals

Structure, assembly and function of the surface envelope (fertilization envelope) from eggs of the sea urchin, Strongylocentrotus purpuratus.

The sea urchin fertilization envelope (FE) is formed following initial sperm-egg interaction from the egg surface vitelline envelope (VE) and the paracrystalline protein fraction (PCF), derived from cortical granules. Although mature FEs are physicochemically hardened postinsemination, a major protein fraction consisting of seven major polypeptides was extracted from Strongylocentrotus purpuratus FEs and the major, separated components were immunologically cross-reactive with the principal polypeptides in PCF and isolated cortical granules. Antibodies prepared against extracted, core FEs were immunologically crossreactive with isolated VEs, but not with PCF, suggesting that only VE components are covalently crosslinked. Based on protease inhibitor experiments, our model of FE development is that a benzamidine-sensitive, cortical granule protease cleaves a 200 kD VE polypeptide during initial envelope elevation to set up the morphological change in FE papillae which occurs later. Divalent cations precipitate the PCF and form metal proteinate bridges between the VE and PCF. Based on peroxidase inhibitor experiments, we suggest that the cortical granule peroxidase crosslinks VE polypeptides, beginning at 2-3 min postinsemination, to restrict the permeability of the VE so that normal envelope thickening occurs. A 305 kD VE polypeptide was isolated and appears to be important in sperm-egg interaction based on inhibition of sperm binding and fertilization by antibodies against the purified polypeptide.

Animals

Role of prostaglandins in pathogenesis of bovine mastitis induced by Escherichia coli endotoxin.

Four doses (5 to 100 micrograms, 1 dose/quarter) of Escherichia coli endotoxin were introduced into lactating mammary glands of 2 cows. There was no effect on milk prostaglandin (PG) E2 concentration, except that the concentration was increased from 200 pg/ml of milk to 1,060 pg/ml at post-treatment hour (PTH) 8 in cow 1 and from 75 to 420 pg/ml at PTH 4 in cow 2 after the highest dose 100 micrograms. Endotoxin caused a dose-dependent increase in milk PGF2 alpha concentrations in both cows. After the highest dose, PGF2 alpha was maximally increased from 200 to 3,500 pg/ml at PTH 4 in cow 1 and from 250 to 2,000 pg/ml in cow 2 at PTH 8. The instillation of 50 micrograms of endotoxin in all 8 quarters of 2 more lactating cows caused no significant (P greater than 0.05) changes in milk PGE2 and thromboxane B2 concentrations, whereas milk PGF2 alpha was significantly increased from the base-line value of 642 to 2,683, 1,189, and 2,281 pg/ml at PTH 4, 8, and 12, respectively. The 6-keto-PGF1 alpha was also significantly increased from the base-line value of 305 to 871, 631, and 600 pg/ml at the corresponding times, respectively. A marked increase in vascular permeability, as judged by high concentrations of serum albumin in the whey, was observed as early as PTH 4 and peaked at PTH 12 followed by a gradual decline, although it remained significantly increased over the control for 48 hours after treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Hemolytic complement titers and complement C3 levels in endotoxin-induced mastitis.

Escherichia coli lipopolysaccharide B was instilled through the lactiferous duct of cows to induce acute mastitis. Hemolytic complement (C) activity and C3 concentrations were determined in blood serum and in renninprecipitated whey before, and at certain times after, mastitis was induced. Hemolytic complement activity was detected in the whey only during the first 36 hours after endotoxin was instilled, whereas activity was not seen before and 48 or more hours after the endotoxin was given. The maximum titer as measured with the guinea pig RBC/bovine natural antibody system was 1:64. The C3 concentrations in normal whey (before installation of endotoxin), measured by radial immunodiffusion, were between 1% and 4% of the base-line blood serum values (pool from healthy cows). The whey concentration of C3 increased (to 5% to 18%) during the first 8 hours of mastitis. However, at 72 hours, the whey values were back to preinstillation concentrations in all quarters.

Animals

Changes of complement values in calves during the first month of life.

Hemolytic complement activity and the 3rd component of complement (C3) concentrations were measured in the blood sera of 8 dams before, at, and after parturition, and in the sera of their calves before and after feeding colostrum and at fixed intervals up to 1 month of life. The mean hemolytic titer in the dams, as measured by incubating guinea pig RBC sensitized with bovine natural antibodies in serially diluted serum, was slightly less than 200 and was not influenced by parturition and onset of lactation. The titers in the sera of the calves immediately after birth ranged from 63 to 149 with a mean of 99. One day later, values in all calves had dropped markedly to a mean of 39. During the following month, the titers increased and reached the precolostral levels after about 4 weeks; however, these titers were still far below the titers measured in adult cows. A similar pattern was seen in the C3 concentration. The mean value at birth was 28% of the values measured in adult cows. Values decreased to 18% one day later and increased during the following month to 43% of the adult C3 concentration.

Aging