PubMed HealthSearch

Biomedical subjects

S L Young

Publications and source records attributed to S L Young.

At least 19 recordsLinked to original sources

Conformational similarities between one-chain and two-chain tissue plasminogen activator (t-PA): implications to the activation mechanism on one-chain t-PA.

Tissue plasminogen activator (t-PA) is an exceptional serine protease, because unlike most other serine protease zymogens single-chain tissue plasminogen activator (sct-PA) possesses a substantial amount of proteolytic activity. The unusual reaction of sct-PA afforded the opportunity to directly compare the active site environment of sct-PA and two-chain tissue plasminogen activator (tct-PA) in solution through the application of a series of nitroxide spin labels and fluorophores. These labels, which have been previously shown to covalently label the catalytic serine of other serine proteases, inactivated both sct-PA and tct-PA. The labels can be divided into two classes: those which form tetrahedral complexes (sulfonates) and those which form trigonal complexes (anthranilates). Those which formed tetrahedral complexes were found to be insensitive to structural differences between sct-PA and tct-PA at the active site. In contrast, those which formed trigonal complexes could differentiate and monitor the sct-PA to tct-PA conversion by fluorescence spectroscopy. Models of the structure of sct-PA and tct-PA were constructed on the basis of the known X-ray structures of other serine protease zymogen and active enzyme forms. One of the nitroxide spin labels was modeled into the sct-PA and tct-PA structures in two possible orientations, both of which could be sensitive to structural differences between sct-PA and tct-PA. These models formed the structural rationale used to explain the results obtained with the "tetrahedral" and "trigonal" probes, as well as to offer a possible explanation for the unique reactivity of sct-PA.

Amino Acid Sequence

Bile acid transport in the anhepatic rat.

Hepatocyte dysfunction eventually results in the loss of canalicular bile formation. Without canalicular flow, intestinal bile acid may originate from plasma by reverse transport. Anhepatic rats with preserved intestinal function permit evaluation of such transport. In the present study, plasma taurocholate clearance was markedly decreased in anhepatic rats. The relative proportion of free cholate increased with time. Peripheral tissues contained virtually only cleared taurocholate, but the intestinal contents were mainly free cholate. This indicates the intestinal contents as the source of the plasma cholate and shows an equilibrium between intestinal and plasma bile acid even without bile flow. The enteral administration of an anion exchange resin to anhepatic rats increased intestinal bile acid recovery and decreased the bile acid recovery in tissue. Plasma bile acid concentration was decreased and fractional loss increased threefold, confirming the anhepatic plasma-intestine bile acid equilibrium. However, the enhanced plasma clearance produced by the resin was less than 1% of the fractional loss found in the intact rat. These data show a very limited bile acid flux between intestine and plasma without bile flow, which could be modestly influenced by an intestinal bile acid sequestrant.

Animals

Associative regulation of Pavlovian fear conditioning: unconditional stimulus intensity, incentive shifts, and latent inhibition.

Conditional stimuli (CS) associated with painful unconditional stimuli (US) produce a naloxone-reversible analgesia. The analgesia serves as a negative-feedback regulation of fear conditioning that can account for the impact of US intensity and CS predictiveness on Pavlovian fear conditioning. In Experiment 1 training under naloxone produced learning curves that approached the same high asymptote despite US intensity. Shifting drug treatment during acquisition had effects that paralleled US intensity shifts. In Experiment 3 naloxone reversed Hall-Pearce (1979) negative transfer using a contextual CS, indicating that conditional analgesia acquired during the CS-weak-footshock phase retards acquisition in the CS-strong-footshock phase. Experiment 5 used a tone CS in both a latent-inhibition and a negative-transfer procedure. Only negative transfer was blocked by naloxone. Therefore, negative transfer but not latent inhibition is mediated by a reduction of US processing.

Animals

Cocaine: its effects on maternal and child health.

Cocaine abuse has become one of America's leading public health problems. Its use throughout pregnancy is associated with an increased risk of abruptio placentae, stillbirth, and preterm labor. Cocaine-associated neonatal complications include congenital malformations, decreased fetal growth, seizures, cerebral infarction and hemorrhage, auditory system deficits, sudden infant death syndrome, cardiac arrhythmias, necrotizing enterocolitis, and behavioral changes. Children followed throughout the first year of life continue to show developmental delay. Infants and children growing up in cocaine-abusing families are at risk for drug-related injuries. Accidental and intentional intoxication has occurred in infants and children from the smoke of freebase cocaine. The drug has also caused intoxication in breast-feeding infants. Adolescents experimenting with cocaine are at risk, with an apparently high frequency of seizures and loss of consciousness, as well as behavioral changes and psychosocial dysfunction.

Abnormalities, Drug-Induced

Triple helix formation inhibits transcription elongation in vitro.

We have identified a 15-nucleotide site within a G-free transcription cassette that forms triple helix with sequence-specific oligodeoxyribonucleotides. When oligodeoxynucleotides were added to template DNA prior to in vitro transcription, a significant fraction of transcripts were truncated at a site corresponding to the region of triple helix formation. Kinetic analysis of the transcription products demonstrated that these truncated transcripts could be elongated to full length upon prolonged incubation. When an alkylating base was incorporated into the oligodeoxynucleotide to form covalent triple helix, most of the transcripts remained truncated. We conclude that triple helix formation can stall or, in the case of covalent crosslinking, can block RNA polymerase II and thus may provide a method for the specific inhibition of gene expression.

Base Sequence

Analgesia for formalin-induced pain by lateral hypothalamic stimulation.

Few studies of analgesia induced by electrical brain stimulation have examined the effects of brain stimulation on responses to tonic pain stimuli. Recent evidence suggests that analgesia for tonic and phasic pain may involve different neural substrates. The present study examined the effects of lateral hypothalamic (LH) stimulation on responses to tonic pain induced by subcutaneous formalin. Our findings demonstrate that LH stimulation produced analgesia for tonic pain and that the effect is primary and not related to stress-induced analgesia. The results are discussed in relation to hypotheses regarding the different neural substrates involved in analgesia for tonic and phasic pain.

Analgesia

A nonradioactive assay for transfected chloramphenicol acetyltransferase activity using fluorescent substrates.

Studies of the transcriptional activity of gene promoters have been greatly assisted by the widespread use of the chloramphenicol acetyltransferase (CAT) gene as a reporter gene. Previous techniques for assaying CAT enzymatic activity have utilized radioactive substrates or cofactors with the resulting complications of handling radioactive materials. We report here the development of fluorescent substrates for the CAT enzyme which form the basis of a CAT enzyme assay of enzyme kinetic parameters (Km and Vmax) and sensitivity similar to those based on radioactive substrates. Fluorescent substrates were designed as analogs of chloramphenicol and were based on the structure-function requirements of the enzyme. Several fluorophores were used to derivatize chloramphenicol base; one of the most effective was the borondipyrromethene difluoride (BODIPY) fluorophore. One BODIPY-chloramphenicol analog was found to have a Km for the purified CAT enzyme of 2 microM (compared to 12 microM for 14C-labeled chloramphenicol) and a Vmax of 120 pmole/min (compared to 180 pmol/min for the radioactive substrate). To verify its usefulness, a BODIPY--chloramphenicol-based CAT assay was used to measure transient transfection of primary cultures of ovarian granulosa cells in serum-free medium. This experimental system requires a highly sensitive assay for detecting transfected CAT gene activity. Robust expression of CAT activity was easily detected in crude cellular extracts using FluoReporter FAST CAT, a kit containing the BODIPY-chloramphenicol analog. The expression was precisely quantified by methanol extraction of the substrate and products from TLC plates and subsequent measurement of fluorescence using excitation-emission spectroscopy.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Specific inhibition of protein kinase A in granulosa cells abolishes gonadotropin regulation of the proopiomelanocortin promoter.

Gonadotropins (follicle-stimulating hormone (FSH), luteinizing hormone, and human chorionic gonadotropin) and beta-adrenergic agonists have been shown to stimulate expression of the proopiomelanocortin (POMC) gene in ovarian granulosa cells. The current studies investigate the intracellular mechanisms by which gonadotropins regulate gene expression. Primary cultures of rat granulosa cells were transfected with the plasmid POMC-CAT-150, which expresses the chloramphenicol acetyltransferase (CAT) reporter gene under the regulation of the rat POMC 5'-flanking region. CAT activity was stimulated by treatment of the cells with either 20 ng/ml FSH or 1 microM isoproterenol. To assess the role of protein kinase A (ATP:protein phosphotransferase; EC 2.7.1.37) in the gonadotropin and adrenergic response, an expression vector, MtR-AB, encoding a mutant RI regulatory subunit was cotransfected with POMC-CAT-150. The mutant protein kinase A regulatory subunit encoded by MtR-AB lacks functional cAMP-binding sites but effectively binds and specifically inhibits the catalytic activity of protein kinase A. The results of this analysis demonstrated that gonadotropin and adrenergic agonist stimulation of the POMC-CAT reporter construct in primary cultures of rat granulosa cells were abolished by cotransfection with MtR-AB; whereas a control SV40-promoter construct was unaffected by either gonadotropin treatment or cotransfection with MtR-AB. Basal expression directed by the POMC promoter was also decreased by cotransfection with the MtR-AB, implying that basal expression from the POMC promoter may also depend on protein kinase A. Deletion analysis of the POMC sequence indicated regions (-40 to -33 and +4 to +63) important for basal and FSH-stimulated expression. These studies suggest that both gonadotropin and adrenergic stimulation of the POMC promoter are mediated by protein kinase A and that regions proximal to the promoter are essential for gonadotropin-regulated expression from the promoter.

Animals

The pulmonary surfactant system.

Surfactant's importance is underscored by the severe morbidity of deficiency states--primary, as in neonatal respiratory distress syndrome, or secondary, as in ARDS. Current knowledge of surfactant synthesis and metabolism is reviewed. Clinically, the effectiveness of exogenous surfactant in RDS has prompted investigation of its administration in ARDS.

Adult

Intracellular mechanisms of gonadotropin-stimulated gene expression in granulosa cells.

Previous studies have shown that the gonadotropins follicle-stimulating hormone and luteinizing hormone stimulate proopiomelanocortin (POMC) promoter activity and mRNA levels in ovarian granulosa cells. The objective of these studies was to determine the role of cAMP-dependent protein kinases (pKA) in gonadotropin-stimulated gene expression. Primary cultures of rat granulosa cells were transfected with a gene construct consisting of the POMC promoter (-150 to +63; designated pOMC-CAT) fused to the chloramphenicol acetyltransferase (CAT) reporter gene either alone or cotransfected with an expression plasmid (designated mutant RI), which overexpresses a mutant form of the murine RI subunit incapable of binding cAMP and serving as an irreversible inhibitor of the catalytic subunit of pKA. Follicle-stimulating hormone or isoproterenol caused a significant stimulation of pOMC-CAT activity in transfected cells. Cotransfection of pOMC-CAT with mutant RI caused a significant inhibition of basal pOMC-CAT activity and abolished the gonadotropin stimulation. As a control, transfection of the SV-40 viral enhancer-promoter fused to CAT (pSV2-CAT) was unresponsive to follicle-stimulating hormone stimulation and cotransfection with mutant RI had no significant effect on pSV2-CAT activity. These studies suggest that gonadotropin regulation of the POMC promoter is mediated by pKA and that promoter activity is stringently controlled by pKA.

Animals

Development of type II pneumocytes in rat lung.

At a late stage of fetal development, the mammalian alveolar epithelium undergoes an abrupt differentiation as a part of the preparation of the lung for the postnatal demands of gas exchange. Some of the most striking changes occur in the type II pneumocytes as they lose their glycogen and start to produce the lamellated inclusion granules that contain pulmonary surfactant. Premature birth before adequate type II cell maturation results in the neonatal respiratory distress syndrome, which is frequently fatal. We have used serial ultrathin sectioning, electron microscopy, and three-dimensional reconstructions to study the ultrastructural features of maturation of rat type II cells from a single rat each at age gestational day 20 through adult stages. We found evidence over this time span for compartmentation of several secretory granule precursors within type II cells. Changes in the polarization of lamellar bodies were observed over the time period studied. We also found marked gestational changes in the number and morphology of type II cell cytoplasmic processes that perforate the basement membrane. Type II cell mitochondria changed in shape during postnatal development from single, spherical to complex, branched structures. Volume composition obtained from serial sections of a small number of type II cells agreed closely with published morphometric data, indicating that throughout the animal's lifespan, type II cells are a homogenous population.

Aging

Surfactant apoprotein in adult rat lung compartments is increased by dexamethasone.

The distribution of the major surfactant apoprotein (SP-A) in adult rat lung was determined in order to gain insight into its metabolism, including packaging of SP-A into lamellar bodies. The effect of glucocorticoid treatment on surfactant apoprotein was studied to test whether regulation of surfactant apoprotein genes, which has been described for the fetal lung, can be demonstrated in the adult animal. We measured the amounts of immunoreactive SP-A in several lung tissue compartments and lavage fractions from control animals and from the lungs of rats given dexamethasone for 1 wk. Protein and phospholipids were measured, SP-A was quantitated with a noncompetitive enzyme-linked immunoabsorbent assay (ELISA) and SP-A, SP-B, and SP-C mRNAs were estimated by Northern blotting. We found an 85-fold concentration of SP-A in a lamellar body-rich fraction compared with lung tissue homogenate and we calculated that as much as one-half of all the tissue SP-A might be accounted for by a lamellar body pool. After 1 wk of dexamethasone treatment, there was an increase in adult rat lung SP-A, SP-B, and SP-C mRNA and a substantial increase in tissue and lavage fluid immunoreactive SP-A pools. Lamellar body fraction SP-A content per lung was 1.4-fold higher after dexamethasone, and there was a fivefold increase in the lavage SP-A pool, much of which was inseparable from the alveolar macrophages. We conclude that SP-A is concentrated in the lamellar bodies of type II cells, that dexamethasone treatment increased all surfactant mRNAs, and that it increased SP-A content in adult rat lung.

Animals

Ontogeny of rat lung type II cells correlated with surfactant lipid and surfactant apoprotein expression.

During the last stages of intrauterine growth, remarkable changes occur in the alveolar epithelium that include cellular differentiation and increased production of surfactant lipid and apoprotein. We made morphometric measurements of type II cell characteristics from rats aged gestational day 20 to 14 days postnatal. We also measured the amounts of disaturated phosphatidylcholine (DSPC) and surfactant apoprotein (SP-A) in lung tissue, bronchoalveolar lavage, and a lamellar body-rich fraction, and we estimated the lung content of mRNAs for SP-A, SP-B, and SP-C. Lavage and lamellar body surfactant lipid and apoprotein content per lung showed a pattern of a sharp rise in the early postnatal period, then a substantial decline, and a second increase by day 14. When normalized for dry lung weight, the highest DSPC values were found on postnatal day 1 in all compartments. The fraction of whole lung DSPC found in lamellar body or lavage was greatest in the 48-h period surrounding birth. Lamellar body SP-A was greater than lavage SP-A on gestational day 22, but a day later the lavage SP-A was 16 times greater than the lamellar body SP-A. The lung tissue content of all three apoprotein mRNAs increased sharply before birth, fell during the 1st postnatal wk, and then rose again to adult levels. Type II cell number and lamellar body number per milligram of dry lung tissue was highest on post-natal day 1 and fell by one-half during the 1st postnatal wk. The amount of DSPC per unit of lamellar body volume rose to its greatest value on postnatal day 1 and then decreased more than threefold. These findings indicate a pattern of expansion of surfactant cellular and biochemical pools at the time of birth in the rat.

Aging

The effect of the one-chain to two-chain conversion in tissue plasminogen activator: characterization of mutations at position 275.

Tissue plasminogen activator (t-PA) is homologous to other serine proteases and contains an apparent activation cleavage site at arginine 275. It has been demonstrated that this arginine-275 can be replaced with either glutamic acid (Tate, K. M., Higgins, D. L., Holmes, W. E., Winkler, M. E., Heyneker, H. L., and Vehar, G. A. Biochemistry 26, 338-343, 1987) or glycine (Peterson, L. C., Johannessen, M., Foster, D., Kumar, A., and Mulvihill, E. Biochim. Biophys. Acta 952, 245-254, 1988; Boose, J. A., Kuismanen, E., Gerard, R., Sambrook, J. and Gething, M.-J. Biochemistry 28, 635-643, 1989) so that the product of the plasminogen activation reaction, plasmin, can no longer hydrolyze the one-chain form of t-PA to the two-chain form. These "one-chain" t-PA variants had diminished activity, compared to wild-type t-PA, in the absence of a cofactor, but in the presence of the fibrin(ogen) cofactor the two variants had activity similar to wild-type t-PA. In order to compare the effects of all possible substitutions, t-PA variants with each of the other nineteen amino acids besides arginine at position 275 were produced by site-directed mutagenesis. All were recovered from cell culture supernatants completely in the one-chain form, except for R275 (wild-type) and R275K, which were partially converted to the two-chain form. These latter two species could be completely converted to the two-chain form by plasmin. In addition, these two forms showed significantly more plasminogen activating activity in the absence of a fibrin(ogen) cofactor, compared to the other 18 variants. In the presence of a cofactor, all of the t-PA mutants had plasminogen activating activity equivalent to wild-type t-PA, except for R275C. The R275C t-PA had comparatively less clot lysis and fibrin binding activity as well. Presumably the new cysteine in this variant was involved in a mixed disulfide or caused misfolding of the molecule resulting in decreased activity. The difference in the plasminogen activating activity of one- and two-chain forms of t-PA was investigated by determining the apparent Michaelis constants and the apparent turnover numbers for R275E t-PA, which remains in the one-chain form throughout the assay, and two-chain R275 t-PA. The kinetic constants were measured in both the presence and the absence of plasmin-digested fibrinogen.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence

The regulation of proenkephalin expression in a distinct population of glial cells.

The expression of opioid genes was examined in isolated populations of glial cells in primary culture. Northern blot analysis of purified type I astrocytes, oligodendrocytes and mixed oligodendrocyte-type-2-astrocyte lineage cells derived from cerebral cortex demonstrated robust expression of proenkephalin mRNA exclusively in type I astrocytes. The expression of proenkephalin mRNA was stimulated by the beta-adrenergic agonist isoproterenol, and 8-(4-chlorophenyl thio)adenosine 3'-5'-cyclic monophosphate (cpt-cAMP). Both of these compounds regulated a proenkephalin-chloramphenicol acetyltransferase fusion gene transiently transfected into type I astrocytes. HPLC and immunoassay of the cell culture media revealed significant levels of unprocessed proenkephalin secreted by the cell and this secretion was stimulated by isoproterenol and cpt-cAMP. The relatively high levels of proenkephalin expressed suggest that enhanced expression in astrocytes may be important during neural development, in trauma-induced gliosis and in neuroimmune interactions.

Animals

Measurement of boundaries using a digitizer tablet.

The perimeter is the most error prone of the primary measurements (length, perimeter and area) made when using a device such as a digitizer tablet to trace profiles on micrographs. To allow for minimization of this error an expression is developed relating the error in the perimeter to the digitizer resolution plus other errors in the entry process. The predictions of this expression are shown to be in good agreement with the results of computer simulation of the tracing process, as well as results from manual tracing using a digitizer tablet. This analysis of the digitizer entry process also provides a method by which an optimal choice of the sample spacing between digitizer coordinates can be made.

Computer Simulation

Dentists' and physicians' attitudes on the role of the dental health care team in a cardiovascular risk factor reduction program.

This study examines the attitudes of both dentists and physicians on the role of the dental health care team in a cardiovascular risk factor reduction program directed at a general "well" population. A questionnaire was sent to a stratified sample of primary care dentists and physicians in the Augusta, Georgia, metropolitan area. The questionnaire was divided into four parts: the demographic component and three attitude components (the affective component, the cognitive component, and the action component). Results showed that dentists tended to have a positive attitude about performing cholesterol screening, nutrition counseling, and blood pressure screening in the dental office. Physicians tended to be negative about the idea of dentists performing cholesterol screening and nutrition counseling and were undecided about this role for dentists in a cardiovascular risk factor reduction program. Both dentists and physicians had positive attitudes about the idea of dentists referring high cardiovascular risk patients to physicians, as well as about the role of dentists in blood pressure screening. Overall, although dentists and physicians expressed concerns about the role of dentists in a cardiovascular risk factor reduction program, responses of both groups demonstrated a willingness to explore this concept further.

Adult

Alveolar type II cell responses to chronic inhalation of chrysotile asbestos in rats.

The effects of chronic exposure to chrysotile asbestos on alveolar type II cells were examined in the lungs of Fischer 344 rats. Morphometric and three-dimensional analyses were used to characterize the alveolar type II cell and to determine the relationship of asbestos fiber localization to ultrastructural change in these cells. During the 2-yr period of study, type II cell number and volume increased to values more than 4 times those seen in controls. Ultrastructurally, cisternal dilations of the rough endoplasmic reticulum (RER) composed 12% of the total cell volume after 12 mo of exposure to asbestos and was still 15% of the total cell volume 1 yr after fiber exposure had ended compared to less than 1% in control cells. Asbestos fiber density surrounding these cells was directly proportional to the degree of cisternal dilatation in the cell; however, lamellar body volume and number in these cells were not different from that found in control type II cells. The incidence of a subset of type II cells with large lamellated inclusions was 10-fold greater in regions near bronchiolar-alveolar duct junctions, compared to more distal gas exchange regions of the lungs. Normal-sized lamellar bodies were fused to these large lamellated inclusions. These cells also contained significantly greater numbers of lamellar bodies and multivesicular bodies than those type II cells in more distal lung regions. These ultrastructural changes observed in type II cells may be a simple dose response to inhaled asbestos or the manifestation of two distinct populations of cells in the lungs that respond to asbestos in different ways. Asbestos fiber dose, cellular microenvironment, and aberrations of the cell plasma membrane and/or cell cytoskeleton (i.e., microtubules and filaments) are discussed as potential factors in the changes noted in type II cells.

Administration, Inhalation