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Biomedical subjects

D L Engelhardt

Publications and source records attributed to D L Engelhardt.

At least 19 recordsLinked to original sources

Benzodiazepines: rat pinealocyte binding sites and augmentation of norepinephrine-stimulated N-acetyltransferase activity.

Studies of [3H]diazepam binding to intact rat pineal cells were carried out in tissue culture preparations. The binding was saturable, reversible and proportional to the number of cells used. Scatchard analysis resulted in a linear plot [Kd = 23 nM, maximum binding sites (Bmax) = 1.56 pmol/mg of protein for cells in monolayer culture; Kd = 7 nM, Bmax = 1.3 pmol/mg of protein for cells in suspension culture]. Inhibition constants (Ki) for clonazepam (500 nM), flunitrazepam (38 nM) and Ro-5-4864 (5 nM) indicated that the binding sites were probably of the "peripheral" type. In addition, the effects of diazepam on norepinephrine-stimulated N-acetyltransferase (NAT) activity were studied in organ culture and dissociated cell culture. Diazepam (10-50 microM) both prolonged and increased the magnitude of the norepinephrine-induced increase in NAT activity but did not affect the initial rate of rise of enzyme activity. The effect was dose-dependent and was also seen with clonazepam, flunitrazepam and Ro-5-4864, but not with Ro-15-1788. Diazepam, by itself, at these concentrations, had no effect on NAT, but enzyme activity was increased by higher concentrations (0.1-1 mM). Although a relationship between the [3H]diazepam binding sites described here and the effect of benzodiazepines on NAT cannot be established from these studies, the data suggest that the benzodiazepines may alter melatonin levels through their action on NAT.

Acetyltransferases

Specific protein production during melanogenesis in B16/C3 melanoma cells.

The mouse melanoma cell line B16/C3 offers an excellent in vitro model for studying melanocyte differentiation. Melanogenesis can be induced by serum, a hormone-supplemented serum-free medium, melanocyte stimulating hormone, and dibutyryl cAMP. The tumor promoter, 12-O-tetradecanoyl-phorbol-13-acetate, 5-bromodeoxyuridine, and acidic pH inhibit this process. Using two-dimensional polyacrylamide gel electrophoresis, we have identified four cellular proteins whose production is modulated during melanogenesis, a process which includes concomitant increases in levels of tyrosinase, the rate limiting enzyme for melanin biosynthesis, melanization, and ultimately, cell death. The production of these proteins are coordinately expressed or inhibited in response to the diverse inducers and inhibitors of melanogenesis. We conclude from these studies that these specific proteins are intimately involved in the differentiation of B16/C3 melanoma cells.

Animals

Control of melanin synthesis and secretion by B16/C3 melanoma cells.

In culture, B16/C3 murine melanoma cells grown in the presence of serum undergo melanogenesis at a specific time after plating. At this time, melanin is synthesized intracellularly and then secreted into the extracellular culture fluid. We have found that melanin secretion is dependent on the presence of serum in the growth medium. When confluent cultures are deprived of serum, that is, refed with serum-free medium, cells remain viable but do not undergo melanogenesis. Addition of serum-free medium supplemented with either melanocyte-stimulating hormone (MSH) or dibutyryl cAMP induced melanogenesis in these cells but did not result in melanin secretion. Furthermore, when B16/C3 cells are grown in serum-free, hormone-supplemented medium, they also undergo melanogenesis but fail to release melanin. The addition of serum, however, to B16/C3 cells induced to undergo melanogenesis with MSH, dibutyryl cAMP, or hormone-supplemented medium promotes melanin secretion. Fractionation studies hence revealed that serum contains specific factors capable of inducing melanin secretion. These results demonstrate that factors that regulate melanin synthesis are distinct from those that induce cells to release melanin into their extracellular environment. Furthermore, the ability to induce melanogenesis with single factors will permit us to study the precise sequence of events leading to differentiation in B16/C3 cells under chemically defined conditions.

Animals

A monoclonal antibody to vasopressin: preparation, characterization, and application in immunocytochemistry.

The hypothalamo-neurohypophysial system, containing the hormones oxytocin (OT) and vasopressin (VP) and their associated carrier proteins, the neurophysins (NPS), has been the subject of extensive investigation for more than 40 years. This system has been reinvestigated during the last decade by application of immunocytochemical methods employing the rabbit antisera to the hormones and NPS. In this study we describe the preparation and characterization of a monoclonal antibody to VP and its application in immunohistochemistry. The antibody did not cross-react with OT or arginine vasotocin (AVT). Its antigenic determinants as characterized by absorption with various VP analogs included two aromatic amino acids: Phe in position 3, and to a lesser extent Tyr in 2. Tissue fixation with formaldehyde resulted in inadequate immunostaining as compared to glutaraldehyde, most likely due to interference with the aromatic amino acid determinants by the former fixative.

Animals

Benzodiazepines have high-affinity binding sites and induce melanogenesis in B16/C3 melanoma cells.

We found that two markers of differentiation, tyrosinase (monophenol, dihydroxyphenylalanine:oxygen oxidoreductase, EC 1.14.18.1) activity and melanin synthesis, are induced by diazepam in B16/C3 mouse melanoma cells. We also demonstrated high-affinity binding sites for [3H]diazepam in these cells by radioreceptor assay, and we visualized binding to the cell surface by fluorescence microscopy with a benzodiazepine analog conjugated to a fluorescein-labeled protein. Our studies also showed that there are differences between the binding characteristics in intact cells and in membrane fractions prepared from these cells. Scatchard analysis of the binding data from membrane fractions gave a linear plot (Kd = 9.1 X 10(-8) M). With intact cells, a curvilinear Scatchard plot was obtained. This was resolved into two components defining binding sites with affinity constants of 1.7 X 10(-9) M and 4.6 X 10(-7) M. Thus, it appears that [3H]diazepam binding in intact cells is more complex than in isolated membranes. Several related benzodiazepines, including flunitrazepam, Ro-5-4864, nitrazepam, oxazepam, lorazepam, Ro-5-3072, chlordiazepoxide, and clonazepam also induced melanogenesis. When these compounds were tested for their ability to inhibit [3H]diazepam binding, flunitrazepam, diazepam, and Ro-5-4864 were found to be the most effective inhibitors. These three compounds were also the most potent in inducing melanogenesis. Our results suggest that the benzodiazepines modulate cell differentiation. The presence of high-affinity binding sites in this homogeneous, easily grown cell line may provide a useful model for studies on the mechanism of action of these compounds.

Benzodiazepines

A comparison of surface antigens of senescent and presenescent human fibroblasts.

In order to test if there is an alteration in major surface proteins in human fibroblasts as they become senescent in vitro, activity of specific antisera against presenescent and senescent cells was measured. Two strains of human foreskin fibroblasts were grown into senescence by serial transfers. One strain (HF-J) became senescent after 49 population doublings while the second (HF-4) became senescent after 62. Antibodies were made against these cells while in the presenescent (phase II) and senescent (phase III) stages. Antibody binding to presenescent and senescent cells was measured before and after preabsorption with heterologous cells (e.g., presenescent HF-4 cell stimulated antisera was absorbed with senescent HF-4 cells, etc.). Two assays were used to measure antibody binding: complement mediated cell lysis and the binding of radiolabeled staphylococcal protein A. The amount of protein A binding after treatment with specific antisera was found to be the same for both senescent and presenescent cells. Likewise no difference in complement mediated cell lysis titers were observed. These results are consistent with the conclusion that senescent and presenescent cells do not differ in major cell surface antigens.

Antigens, Surface

Identification of a distinct phase during melanogenesis that is sensitive to extracellular pH and ionic strength.

The cell line B16/C3 will undergo melanogenesis at a specific time after plating. We have found that this time can be modulated by varying the pH of the culture medium. At high pH levels (8.2--8.6) the onset of melanogenesis occurs in 3 or 4 days, while at lower pH (6.7--7.2) it occurs in 7 or 8 days. Furthermore, the time of onset is also sensitive to the extracellular ionic strength. The addition of sodium lactate, sodium chloride, or any other salt tested delays or blocks completely the onset of melanogenesis. These effects are not simply consequence of growth inhibition, nor can they be correlated with patterns of lactate acccumulation. These cells are sensitive to pH or ionic strength after entering the stationary phase just prior to the time of onset of melanogenesis. The existence of a specific pH-and ionic-strength-sensitive phase may provide an important clue to the events responsible for differentiation in this system.

Animals

Patterns of peptide synthesis in senescent and presenescent human fibroblasts.

Peptide production in senescent and presenescent human foreskin fibroblasts was measured using 2-dimensional polyacrylamide gel electrophoresis. This procedure permits the visualization of a cohort of the major peptides being produced. Among this cohort of over 500 peptides only two were found to differ in relative amount in that more was being produced in senescent cells. This difference was confirmed by measurements of the relative intensity of the peptide spot. This difference was senescent cell-specific and not due to the differences in rate of growth of senescent and non-senescent cells.

Cell Differentiation

Incorporation of lysine into Y base of phenylalanine tRNA in Vero cells.

Vero cells, a line derived from African green monkey kidney, contains a hypermodified base, called Y, adjacent to the 3' end of the anticodon of tRNAPhe. Two types of evidence are presented suggesting that lysine is involved in biosynthesis of Y base in these cells. First, when Vero cells are starved for lysine, a new, early-eluting species of tRNAPhe which lacks the fully modified Y base can be detected by reversed phase chromatography (RPC-5). After addition of lysine to the medium, this new species disappears. Second, when these cells are grown in low-lysine medium and then exposed to [3H]lysine, radioactivity from the lysine comigrates with tRNAPhe. The Y base can be selectively excised from tRNAPhe by incubation at pH 2.9, and extracted into ethyl acetate. Thin-layer chromatography of acid-excised material from these cells reveals that lysine-derived radioactivity comigrates with genuine Y base from calf liver tRNAPhe and the acid-excised tRNA no longer contains radioactivity. These results are consistent with the model that lysine is a structural precursor of Y base in tRNAPhe of Vero cells.

Animals

Formation of phenylalanine transfer RNA lacking the wye base in Vero cells during methionine starvation.

Vero, a cell line derived from African green monkey kidney, normally contains a single species of tRNAPhe (tRNA2Phe), containing a hypermodified base, wye (originally called Y), next to the 3' end of the anticodon. When methionine is removed from the growth medium, there appears a new tRNAPhe species (tRNA1Phe) lacking the wye base and eluting early from reversed phase chromatography columns. Its appearance is not due to the cessation of cell growth. Addition of methionine to cells containing both species of tRNAPhe leads to the disappearance of tRNA1Phe. When [methyl-3H5methionine is added in the presence of actinomycin D, which blocks new RNA synthesis, label appears in the wye base of tRNA2Phe. These results are consistent with the model that tRNA1Phe is an undermodifed precursor of tRNA2Phe and that methionine is required for modification to the mature form.

Cell Line

Fluctuations in the production of specific cellular peptides during the growth of animal cells.

Patterns of newly synthesized proteins of Vero cells in different growth states were obtained using two-dimensional gel electrophoresis. The 240 most prevalent peptide spots were then compared. Cells in exponential growth and in the stationary phase were found to have patterns of peptide spots characteristic of their state of growth. The transition between these patterns is progressive, and the cells acquire a pattern characteristic of quiescent cells by the late exponential phase. These observations suggest that a series of modulations in gene expression occurs during the transition of growth states in animal cells that leads to the specific appearance or disappearance of certain cellular peptides.

Animals

Growth-related fluctuation in messenger RNA utilization in animal cells.

Monkey fibroblasts maintained in culture regulate their levels of intracellular protein throughout the growth cycle by means of variations in the rate of protein biosynthesis. Cytoplasmic mRNA in stationary phase cells was compared to that in exponential phase cells. In stationary phase cells 56% of the cytoplasmic polyadenylated RNA was found in the 40--90S postpolysomal region of sucrose sedimentation gradients, while only 23% was found in this region in exponential phase cells. Analysis of electron micrographs of sectioned exponential and stationary phase cells revealed that this shift in polyadenylated RNA location is accompanied by a loss of polysome-like aggregates of ribosomes. Most if not all of this species of postpolysomal polyadenylated RNA is not being translated by single ribosomes since no detectable amounts of nascent peptide were present in this region. This nonpolysomal polyadenylated RNA is comparable in size to polysomal polyadenylated RNA. The length of the 3'-poly(A) tract was also comparable for these two species. The extent of capping of poly(A)-containing molecules was also comparable for these two species. The template activity of nonpolysomal RNA in a wheat germ extract was comparable to that of polysomal RNA. The peptides produced by these two preparations were of a similar large size. Furthermore, most of the nonpolysomal polyadenylated RNA of stationary phase cells was driven into polysomes in the presence of a low dose of cycloheximide. Therefore, we conclude that the untranslated mRNA that accumulates in stationary phase cells is structurally intact, is fully capable of being translated, and is not being translated due to the operation of a translational initiation block.

Cell Division

A serum factor requirement for the passage of cultured Vero cells through G2.

When Vero cells, a line derived from and African Green Monkey kidney, are grown under conditions where the saturation density is limited by serum, they deplete the growth medium of a factor necessary for cell division. The factor is a component of serum. When Vero cells are plated at low density (2 X 10(4)/cm2) in this depleted growth medium (after dialysis against serum-free Dulbecco's Modified Eagle's Medium) they initiate an unbalanced program of growth. Protein synthesis proceeds at the same rate as parallel cells in fresh serum, and and the cells accumulate protein as a function of time. DNA synthesis is also initiated in these cells, and the amount of DNA per cell increases for the next four days plating. However the cells quickly stop dividing. Measurements of DNA per cell using microspectrofluorometry show that the cells are accumulating in the late S and G2 period during this time. Thus we conclude that these cells cannot pass through a transition point in G2. When fresh serum is added to cells after three days in depleted growth medium, they divide before they begin to synthesize DNA. This further confirms that they are in late S and G2. Cell division is promoted in Vero cells in depleted growth medium by bovine fetuin, and to a lesser extent by bovine albumin. Cell division is not promoted by insulin, hydrocortisone, dexamethasone, linolenic acid, calcium, and typsin inhibitor form ovomucoid. From these data we conclude that transit through G2 requires the prescence of an extracellular factor.

Animals

Protein metabolism during growth of Vero Cells.

Protein synthesis and degradation were studied throughout a growth cycle of Vero cells. The rate of protein synthesis, measured as the rate of amino acid incorporation, reached a maximum at the mid-exponential phase and declined to 10-30% of the maximum in the stationary phase. The rate of protein degradation, measured as the release of radioactive amino acids from uniformly labelled cellular proteins, did not vary in the growth cycle. The amount of protein per cell, measured by an isotopic method, remained constant when normalized to account for the variation in the proportion of actively dividing cells in the cell population during the growth cycle. Cellular protein was determined using this method since it was found that the chemical determination of the amount of protein in the monolayer was not accurate during the early stage of the growth cycle. This was due to a significant amount of serum protein adsorbed to the cells. In this study we were able to show that, in Vero cells, protein synthetic activity is correlated with the rate of cell division, and variations in the rate of synthesis alone are sufficient to meet the changing requirements for cellular protein in a growth cycle.

Blood Proteins