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B Dale

Publications and source records attributed to B Dale.

At least 91 records · Page 5Linked to original sources

Temporal and spatial correlation of fertilization current, calcium waves and cytoplasmic contraction in eggs of Ciona intestinalis.

Eggs of the ascidian Ciona intestinalis were loaded with the calcium indicator fura-2 via whole-cell clamp electrodes and changes in cytoplasmic calcium and cell currents were monitored during fertilization either in separate eggs or simultaneously in the same egg. The first indication of egg activation was the fertilization current; which reached peak values around 1 nA after 30 s. A wave of elevated calcium was detectable between 5 s and 30 s (mean = 21 s) after the start of the fertilization current. This wave spread across the egg increasing cytoplasmic calcium levels to at least 10 microM. When the fertilization current and calcium wave were complete and cytoplasmic calcium levels were decreasing to prefertilization levels, a cortical contraction wave spread across the egg surface. In eggs showing normal fertilization current, the calcium wave and the contraction wave were in the same direction. A region of elevated calcium persisted at the animal pole. Changing cytoplasmic calcium levels locally by local application of ionophore A23187 caused a contraction wave originating at the site of ionophore application. Increasing cytoplasmic calcium uniformly by facilitating calcium entry through voltage-regulated channels did not result in a contraction wave.

Animals↗

Distribution of ion channels in ascidian eggs and zygotes.

Ascidian eggs and zygotes were whole-cell voltage-clamped and inward membrane currents, generated by stepping the membrane potential, studied from fertilization up to cytokinesis. Currents, induced by changing the voltage in steps from -80 to -30 mV, or to 0 mV, had maximum amplitudes which ranged from 400 to 1200 pA in the unfertilized egg and 100 to 1300 pA in the zygote. At 5 to 10 min after fertilization it was not possible to generate inward currents owing to the activity of nonspecific fertilization channels. Preceding cytokinesis, we observed a reduction in amplitude of the inward currents. By cutting eggs and zygotes into fragments, we have shown that the ion channels generating these inward currents are symmetrically distributed over the egg plasma membrane, but regionalized in the zygote with a maximum density at the animal pole.

Animals↗

Protection of cattle against rinderpest with vaccinia virus recombinants expressing the HA or F gene.

Rinderpest is a highly contagious ruminant viral disease manifested by a rapid course and greater than 90% mortality. Infectious vaccinia virus recombinants were constructed that express either the hemagglutinin or the fusion gene of rinderpest virus. All cattle vaccinated with either recombinant or with the combined recombinants produced neutralizing antibodies against rinderpest virus and were protected against the disease when challenged with more than 1000 times the lethal dose of the virus.

Animals↗

Sulfhydryl groups are involved in the activation of sea urchin eggs.

Unfertilized sea urchin eggs exposed to the sulfhydryl reagents Ag+ or N-ethylmaleimide either elevated fertilizationlike membranes, formed surface protrusions, developed a clear cortical layer devoid of organelles, or cytolysed. The relative fraction of each modification varied from batch to batch and was also dose and time dependent. With Ag+ and higher doses of N-EMI (10(-3) M), the most common effect was the elevation of a membrane indicating cortical exocytosis, while at lower doses of N-EMI protrusions were predominant. Glutathione (GSH) protected eggs against these reagents also in a dose-dependent manner. Eggs exposed to equimolar amounts of N-EMI and GSH, which otherwise formed membranes, produced protrusions, while increasing GSH tenfold afforded complete protection. We suggest there are two targets for the sulfhydryl reagents--the first, SH groups on proteins that regulate the release of Ca2+ from the intracellular sequestering mechanism which subsequently triggers cortical exocytosis; the second, SH groups on the egg surface that may regulate cortical organization.

Animals↗

Primary and secondary messengers in the activation of ascidian eggs.

Two early events of activation in the ascidian egg, the surface contraction and the fertilization current, were studied. Ca ionophore induces contraction without generating a fertilization current, whereas microinjection of IP3 or soluble fractions of homogenized spermatozoa trigger both a contraction and a current. This suggests that the primary trigger of activation in ascidian eggs is a soluble component of spermatozoa that may be released into the egg subsequent to gamete fusion. IP3, or other intermediates in phosphoinositide metabolism, is a putative second messenger that activates fertilization channels directly (probably a Ca-independent process), and subsequently induces surface contraction by releasing Ca from intracellular stores.

Animals↗

Cloning of the fusion gene of rinderpest virus: comparative sequence analysis with other morbilliviruses.

We have cloned the cDNA of the fusion (F) gene of the virulent (Kabete O) strain of rinderpest virus and provided a comparative analysis of its sequence with that of the F genes of measles and distemper viruses. The gene has an open reading frame of 2241 nucleotides with two potential initiation codons in-frame. Use of the first ATG would produce a polypeptide 747 amino acids long with a calculated molecular weight of 81,068. However, we suggest that the second ATG is used to generate the Fo protein, which is 546 amino acids long with a calculated molecular weight of 58,754. During maturation, the cleavage of F0 gives rise to the functional F1 and F2 polypeptides. The F1 polypeptide is 438 amino acids long and has a calculated molecular weight of 46,791, with a single (potential) glycosylation site in its cytoplasmic domain. The F2 polypeptide, probably 89 amino acids long after the signal sequence is cleaved, is estimated to be 9,800 Da and has three potential glycosylation sites. There is a divergence of 18.7% in amino acid sequences between rinderpest and measles virus F0 polypeptides; between distemper and rinderpest viruses the divergence is 31.8%. No significant homology in nucleotide sequences of rinderpest DNA to measles or distemper DNA was found in the 5' and 3' untranslated regions.

Base Sequence↗

Cloning and sequence analysis of the hemagglutinin gene of the virulent strain of rinderpest virus.

We have cloned the cDNA of the hemagglutinin (HA) gene of the virulent (Kabete O) strain of rinderpest virus and produced a comparative analysis of its sequence with that of the HA genes of rinderpest (lapinized strain) and measles viruses. The gene has an open reading frame of 1827 nucleotides, and the derived protein is 609 amino acids long with a calculated molecular weight of 68,006. The Kabete O HA polypeptide is identical in length to the HA of the lapinized strain of rinderpest virus and has a similar hydropathy profile. The nucleotide divergence between the lapinized and the Kabete O HA genes is 11.4% within the coding region, and 34.3% in the 3' untranslated region. The two rinderpest HA polypeptides differ at 74 amino acid residues for a divergence of 12.2%. Three-way comparison of the two rinderpest HA molecules with the measles virus HA polypeptide indicates that 56.6% of the residues are conserved.

Amino Acid Sequence↗

Analysis of the polypeptides synthesized in rinderpest virus-infected cells.

We have identified, by [35S]methionine labeling, eight major induced proteins and a number of minor proteins in rinderpest virus-infected bovine kidney cells. The polypeptides ranged in molecular weight from 212 to 21.5 kDa. The majority of these polypeptides are virus specific, as demonstrated by immunoprecipitation with rabbit hyperimmune serum against rinderpest. Infected cells radiolabeled with glucosamine contained a 75-kDa polypeptide and a broad band migrating at 80 kDa, both identified as virus specific by immunoprecipitation. Phosphorylated virus-specific proteins of 65 kDa and a complex of polypeptides at 92.5 kDa were also identified. Monospecific and monoclonal antibodies against measles virus and canine distemper virus hemagglutinin, fusion protein, nucleocapsid protein, and phosphoproteins confirmed the identity of the corresponding rinderpest virus-specific polypeptides.

Animals↗

An assessment of human epidermal repair in elderly normal subjects using immunohistochemical methods.

The purpose of this study was to document a timetable for selected events of epidermal repair in standard partial thickness incised wounds on the legs of normal elderly human subjects. A Simplate-II bleeding-time device was used for producing the wounds, and immunohistochemical techniques were employed for evaluation of the wounds. Antibodies to filaggrin and Ulex europeus I demonstrated little or no staining on migrating epithelium, but staining was apparent whenever epidermal closure had occurred. Bullous pemphigoid antigen was present in the basement membrane zone at all time points examined, including beneath migrating epithelium, whereas antibodies to laminin and type IV collagen were found only at the most lateral aspects of 2-, 3-, and 5-day wounds. Staining progressed centrally by day 7 and was present as a complete linear band beneath most 14-day wounds. The Simplate-II device provides a standard, easy to use, commercially available, sterile, relatively safe method of producing wounds for systematic studies in humans.

Aged↗

Fertilization channels in ascidian eggs are not activated by Ca.

Using the whole-cell voltage clamp technique, experiments were carried out on ascidian eggs to determine the role of intracellular Ca in the gating of fertilization channels. Raising the level of Ca by adding Ca to the intracellular perfusion medium or by loading the egg cortex (greater than 50 microM) with Ca through voltage gated channels did not lead to the activation of fertilization channels. Alternatively, eggs exposed to low-Ca seawater, perfused with the chelator K-EGTA or Ca channel blocking agents to prevent the release of Ca from intracellular organelles, and subsequently inseminated generated fertilization currents. This argues against Ca as a second messenger in the activation of fertilization channels in the ascidian egg and alternative mechanisms are discussed.

Animals↗

Distribution of fertilization channels in ascidian oocyte membranes.

Fertilization currents are similar in ascidian oocytes and fragments, irrespective of the size and global origin of the fragments; this result suggests that fertilization channels are distributed uniformly over the oocyte surface. Because no correlation exists between peak current and surface area of the cell, it is probable that the fertilizing spermatozoon does not open all available precursor fertilization channels, but a fixed number limited to an area around its point of entry.

Animals↗

Electrical characteristics of ascidian egg fragments.

Fragments of ascidian eggs, but at random in any plane and ranging in size from 10 to 90% of the total egg volume, displayed the electrical characteristics of the intact egg, having a resting potential of -86 mV and giving rise to an action potential upon stimulation by electrical current injection. Following insemination, the fragments generated fertilization potentials, comparable to those of intact eggs, although the repolarization phase was shorter. Our data show that there are sufficient ion channels throughout the egg surface to generate action potentials and fertilization potentials in excised egg fragments, irrespective of their global origin. Furthermore, the fertilizing spermatozoon is capable of activating fertilization channels in areas of the egg plasma membrane not destined for sperm entry.

Action Potentials↗

Nucleotide and deduced amino acid sequence of the influenza neuraminidase genes of two equine serotypes.

Equine influenza is caused by two serotypes of type A influenza virus, EIV-A1 and EIV-A2. The complete nucleotide sequence of the neuraminidase (NA) genes of both the A1 (N7 subtype) and A2 (N8 subtype) serotype has been determined following cloning of full-length viral NA cDNAs into pBR322. Analysis of the deduced amino acid sequences reveals that the N7 and N8 genes share expected extensive homologies with the previously sequenced N1, N2, and N9 NA subtypes. These homologies include conservation of basic NA gene and protein structure, cysteine residues, potential glycosylation sites, and residues known to reside in the enzyme active site of the NA molecule. Additionally, the N1 and N8 molecules and the N7 and N9 molecules are more related by total amino acid homology than any other combination of two subtypes. The area of homology in both cases is particularly strong in the region of residues 100-205, an area roughly corresponding to the amino terminal one-third of the "head" of the NA protein.

Amino Acid Sequence↗

Differentiation-dependent expression of keratins in human oral epithelia.

The polypeptide composition of epithelial keratins varies with the state of differentiation. The epithelia lining the human oral cavity show regional variations in their histology. In the present study, paired samples of nonkeratinized buccal epithelium and keratinized hard palate epithelium were analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and by immunoblots with monoclonal antibodies AE1, AE2, and AE3, and results were correlated with immunofluorescence staining of tissue sections of the same samples. Keratins from hard palate (Mr 67K, 63-65K, 58K, 56.5K, 56K, 50K, 48K) and epidermis (Mr 67K, 63-65K, 58K, 56.5K, 50K) were similar to each other but distinctly different from those of buccal epithelium (major bands of Mr 52K and 59K, minor bands of 50K and 58K). The immunoblot analysis further indicated the similarity of hard palate and epidermal keratins, in contrast to those of buccal epithelium. Each oral tissue expressed keratins of the type I (AE1, acidic) subfamily and type II (AE3, basic) subfamily. In tissue sections, the predominant staining pattern for nonkeratinized buccal epithelium was: AE1, positive in the basal layer; AE2, negative; AE3, positive in all layers. In contrast, the staining pattern for keratinized palatal epithelium was: AE1 and AE2, positive in the suprabasal layers; AE3, positive in all layers. Strong suprabasal AE1 staining in palate may be related to the presence of the 48K keratin. Some buccal samples showed an alternate staining pattern of spotty suprabasal staining with AE1 and AE2 which was correlated with the expression of the 56.5K and 63-67K keratins, as well as filaggrin. These results suggest differentiation-specific expression of the keratins and show immunologically detectable variation in the apparently normal differentiation pattern of nonkeratinized buccal epithelium.

Antibodies, Monoclonal↗

Second marrow transplants for recurrence of haematological malignancy.

Nine patients with haematological malignancy relapsed 3-32 months after receiving cyclophosphamide 120 mg/kg, 12-14 Gy fractionated total body irradiation and an HLA-identical sibling bone marrow transplant. They were reconditioned with melphalan 180-220 mg/m2 and retransplanted using the same donor and the same cyclosporin regimen as prophylaxis for graft-versus-host disease (GVHD). Three of the nine remain alive greater than 81, greater than 33, and greater than 36 months after second transplant. While the rate of marrow engraftment, the incidence of acute GVHD and the incidence of interstitial pneumonitis were similar after first and second transplants, the use of melphalan before second transplant was associated with increased nephrotoxicity and oropharyngeal mucositis. The present study shows that second narrow transplants are feasible, can produce prolonged remission of haematological malignancies and should be considered in appropriate patients who relapse after first marrow transplant.

Actuarial Analysis↗

Injection of a soluble sperm fraction into sea-urchin eggs triggers the cortical reaction.

Fertilization membranes form around unfertilized sea-urchin eggs after microinjection of a soluble spermatozoa fraction isosmotic with seawater. This demonstrates that the spermatozoon contains a chemical that triggers an increase in cytosolic calcium, leading to exocytosis of cortical granules. It also demonstrates that the triggering mechanism does not require an externally-activated egg-membrane process. Further experiments show that the chemical trigger is not calcium.

Animals↗