Search PubMed⌕ Search

Biomedical subjects

B D Johnson

Publications and source records attributed to B D Johnson.

At least 55 records · Page 3Linked to original sources

Fate of the type II pneumocyte following tracheal occlusion in utero: a time-course study in fetal sheep.

Tracheal occlusion in utero has been shown to cause accelerated fetal lung growth and is now being considered as a therapeutic modality for pulmonary hypoplasia. We report the effects of tracheal ligation on the surfactant-producing type II pneumocyte population. Three groups of fetal lambs underwent tracheal ligation of 2 weeks', 4 weeks' and 6 weeks' duration, respectively, and all were sacrificed at 136 days' gestation (9 days pre-term). Nonoperated twins served as controls. The type II pneumocyte population was studied morphometrically using a combination of anti-surfactant protein B immunohistochemistry and computer-assisted stereologic morphometry at light and electron microscopic levels. Single-factor ANOVA was used for statistical analysis. Two weeks of tracheal ligation resulted in doubling of the total lung volume as a result of airspace distension and, to lesser extent, growth of the tissue compartment. With increasing duration of tracheal ligation, there was no additional lung growth. However, more prolonged tracheal occlusion was found to result in significant reduction of the surfactant system, as reflected in the marked decrease of total pneumocyte type II volume (3.14 cm3, 0.95 cm3, and 0.46 cm3, after 2, 4, and 6 weeks of ligation, compared with 5.96 cm3 for controls) and total pneumocyte type II number (13.9 x 10(9), 3.8 x 10(9), and 2.4 x 10(9), compared with 53.2 x 10(9) for controls). Ultrastructural analysis of the type II cells in obstructed lungs showed vacuolar degenerative changes that, after 6 weeks of ligation, were apparently irreversible. In utero tracheal ligation causes fetal lung hyperplasia, but results in reduction of and injury to the surfactant-producing cell population. Before tracheal occlusion can find wide-spread clinical application, its pathophysiology needs to be further elucidated.

Animals↗

Predictive value of monitoring parameters in fetal surgery.

BACKGROUND/PURPOSE: The choice of monitoring parameters in fetal surgery has thus far been based on feasibility rather than on predictability. Ideally, monitoring should be noninvasive, have a rapid response time and high sensitivity, and be applicable to open and endoscopic techniques. Herein, the authors studied the response of several parameters to standardized episodes of fetal ischemia and stress. METHODS: Eight time-dated fetal lambs (110 days, term, 145 days) were used. Under general anesthesia, a balloon occluder was placed around the umbilical cord. Pulse oximetry (POx + heart rate, HR), electrocardiography (ECG), direct oximetry (DOx), and blood pressure (BP) were recorded continuously. After stabilization, the umbilical cord was completely occluded for 5 seconds, then released. False-negative recordings were defined as failure of a parameter to respond to umbilical occlusion; false-positive episodes were defined as 10% change in value over < or = 10 seconds during stabilization (baseline) period. RESULTS: The fetuses were monitored for an aggregate of 358 minutes. Baseline DOx was 64%+/-5%, POx, 66%+/-16%; HR, 141+/-18 beats per minute (bpm); systolic BP (SBP), 51+/-3 torr; and diastolic BP (DBP), 38+/-2 torr. During umbilical occlusion (n=15), SBP increased to 56+/-3 torr and DBP to 43+/-2 torr at 0.5 seconds, then returned to baseline at 8.0 seconds. A decrease was seen in DOx (start at 3.5s, maximum delta 9.9+/-1.5% at 10.5 seconds) and POx (start at 4.2 seconds, maximum delta 7.3+/-2.4% at 20.5 seconds). Heart rate showed <10% decrease (start at 8.5 seconds, nadir 131+/-14 bpm at 19.5 seconds). No ECG changes were noted. Sensitivity was 100% for DOx, POx, and BP, but only 14% for HR; specificity was 97% for DOx and 88% for POx; positive predictive value was 58% for DOx and 37% for POx; negative predictive value was 100% for DOx and POx. CONCLUSIONS: Direct intravascular oximetry and blood pressure provide a prompt and reliable response to acute fetal stress, but are too invasive for routine use. Bradycardia is an insensitive and late sign of fetal distress. Pulse oximetry has a rapid response time (<5 seconds), high sensitivity, and negative predictive value. In addition, its application is noninvasive and has proven to be feasible in open and endoscopic fetal surgical procedures. It therefore appears to be the monitoring parameter of choice for fetal surgery.

Animals↗

Primary structure and function of an A kinase anchoring protein associated with calcium channels.

Rapid, voltage-dependent potentiation of skeletal muscle L-type calcium channels requires phosphorylation by cAMP-dependent protein kinase (PKA) anchored via an A kinase anchoring protein (AKAP). Here we report the isolation, primary sequence determination, and functional characterization of AKAP15, a lipid-anchored protein of 81 amino acid residues with a single amphipathic helix that binds PKA. AKAP15 colocalizes with L-type calcium channels in transverse tubules and is associated with L-type calcium channels in transfected cells. A peptide fragment of AKAP15 encompassing the RII-binding domain blocks voltage-dependent potentiation. These results indicate that AKAP15 targets PKA to the calcium channel and plays a critical role in voltage-dependent potentiation and regulation of skeletal muscle contraction. The expression of AKAP15 in the brain and heart suggests that it may mediate rapid PKA regulation of L-type calcium channels in neurons and cardiac myocytes.

A Kinase Anchor Proteins↗

The relationship of demographic factors, locus of control and self-efficacy to successful nursing home adjustment.

This study investigated demographic and psychological predictors of 58 older adults' successful adjustment to a nursing home. Predictors included demographic variables, locus of control, and self-efficacy beliefs. Successful adjustment was defined by activity level and by positive and negative affect. Findings suggest that demographic variables were not effective predictors of successful adjustment. Perceived self-efficacy accounted for more of the unique variance in adjustment than locus of control. Results are discussed in the context of improving resident adjustment to nursing home environments.

Adaptation, Psychological↗

Smack, crack, and score: two decades of NIDA-funded drugs and crime research at NDRI 1974-1994.

Since 1972, National Development and Research Institutes (NDRI) has been fortunate to have on its staff outstanding researchers involved in studying the relationship between drugs and criminality. This paper describes federally-funded research conducted by them. The drug-crime nexus has been an ongoing focus along with drug-user treatment evaluation and AIDS research. Over the two decades, NDRI has had about 20 major "drugs and crime" grants. Key research findings are presented from studies related to violent and nonviolent crime; prison-based treatment; drug use detection; and the use and distribution of heroin, crack, and methadone.

Crime↗

Nurturing for careers in drug use and crime: conduct norms for children and juveniles in crack-using households.

A very sizable proportion of juvenile delinquents and adult criminals come from backgrounds and family kin systems having deviant parents or kin. This paper provides a focus upon the child-rearing practices directly observed by trained ethnographer during a case study of one highly criminal, drug-using household/kin network. The concrete expectations (and actual practices--called conduct norms--with which the household adults respond to (or "nurture") children and juveniles are delineated. While children are taught to "pay attention" to what adults do, adults typically model various deviant activities and rarely engage in conventional behaviors. Drug-using, and especially crack-using, men and women are expected not to raise (or financially support) children born to them; other kin expect to raise children of such unions. Children are not expected, nor able, to develop strong affective bonds with any household adults, and receive little or no psychological parenting. Adults do not take strong measures to protect children/juveniles from harm, and often adults are a major source of harm. In many ways the conduct norms in such crack-using households are well designed to "nurture" those persons who will be antisocial as children, delinquents as juveniles, and become criminals, drug misusers, and prostitutes in adulthood--and who have very few chances to become conventional adults.

Adolescent↗

Temporal pattern of accelerated lung growth after tracheal occlusion in the fetal rabbit.

Tracheal occlusion in utero is a potent stimulus of fetal lung growth. We describe the early growth mechanics of fetal lungs and type II pneumocytes after tracheal ligation (TL). Fetal rabbits underwent TL at 24 days gestational age (DGA; late pseudoglandular stage; term = 31 to 33 days) and were sacrificed at time intervals ranging from 1 to 5 days after TL. Lung growth was measured by stereological volumetry and bromodeoxyuridine (BrdU) pulse labeling. Pneumocyte II population kinetics were analyzed using a combination of anti-surfactant protein A and BrdU immunohistochemistry and computer-assisted morphometry. Nonoperated littermates served as controls. TL resulted in dramatically enhanced lung growth (lung weight/body weight was 5.00 +/- 0.81% in TL versus 2.52 +/- 0.13% in controls at 29 DGA; P < 0.001, unpaired Student's t-test). Post-TL lung growth was characterized by a 3-day lag-phase typified by relative stagnation of growth, followed by distension of airspaces, increased cell proliferation, and accelerated architectural and cellular maturation by postligation days 4 and 5. During the proliferation phase, the replicative activity of type II cells was markedly increased (type II cell BrdU labeling index was 10.0 +/- 4.1% in TL versus 1.1 +/- 0.3% for controls at 29 DGA; P < 0.02), but their numerical density decreased (3.0 +/- 0.5 x 10(-3)/microm2 in TL versus 4.5 +/- 0.3 x 10(-3)/microm2 in controls at 29 DGA; P < 0.02), suggesting accelerated terminal differentiation to type I cells. In conclusion, post-TL lung development is characterized by a well defined temporal pattern of lung growth and maturation. The rabbit model lends itself well to study the regulatory mechanisms underlying accelerated fetal lung growth after TL.

Animals↗

The role of the pro sequence of Bacillus subtilis sigmaK in controlling activity in transcription initiation.

The sigma (sigma) subunit of prokaryotic RNA polymerase is required for specific recognition of promoter DNA sequences and transcription initiation. Regulation of gene expression can therefore be achieved by modulating the activity of the sigma subunit. In Bacillus subtilis the mother cell-specific sporulation sigma factor, sigmaK, is synthesized as a precursor protein, pro-sigmaK, with a 20-amino acid pro sequence. This pro sequence renders sigmaK inactive for directing transcription of sigmaK-dependent genes in vivo until the pro sequence is proteolytically removed. To understand the role of the pro sequence in controlling sigmaK activity, we have constructed NH2-terminal truncations of pro-sigmaK and characterized their behavior in vitro at the gerE promoter. In this report we show that the pro sequence inactivates sigmaK by interfering with the ability of sigmaK to associate with the core subunits of polymerase and also influences the interactions between holoenzyme and promoter DNA. Additionally, removal of as few as 6 amino acids (pro-sigmaKDelta6) is sufficient to activate pro-sigmaK for DNA binding and transcription initiation. Surprisingly, pro-sigmaKDelta6 binds to DNA with higher affinity and stimulates transcription 30-fold more efficiently than sigmaK, under certain conditions.

Amino Acid Sequence↗

Type II regulatory subunits are not required for the anchoring-dependent modulation of Ca2+ channel activity by cAMP-dependent protein kinase.

Preferential phosphorylation of specific proteins by cAMP-dependent protein kinase (PKA) may be mediated in part by the anchoring of PKA to a family of A-kinase anchor proteins (AKAPs) positioned in close proximity to target proteins. This interaction is thought to depend on binding of the type II regulatory (RII) subunits to AKAPs and is essential for PKA-dependent modulation of the alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid/kainate receptor, the L-type Ca2+ channel, and the KCa channel. We hypothesized that the targeted disruption of the gene for the ubiquitously expressed RIIalpha subunit would reveal those tissues and signaling events that require anchored PKA. RIIalpha knockout mice appear normal and healthy. In adult skeletal muscle, RIalpha protein levels increased to partially compensate for the loss of RIIalpha. Nonetheless, a reduction in both catalytic (C) subunit protein levels and total kinase activity was observed. Surprisingly, the anchored PKA-dependent potentiation of the L-type Ca2+ channel in RIIalpha knockout skeletal muscle was unchanged compared with wild type although it was more sensitive to inhibitors of PKA-AKAP interactions. The C subunit colocalized with the L-type Ca2+ channel in transverse tubules in wild-type skeletal muscle and retained this localization in knockout muscle. The RIalpha subunit was shown to bind AKAPs, although with a 500-fold lower affinity than the RIIalpha subunit. The potentiation of the L-type Ca2+ channel in RIIalpha knockout mouse skeletal muscle suggests that, despite a lower affinity for AKAP binding, RIalpha is capable of physiologically relevant anchoring interactions.

Animals↗

Analysis of the dihydropyridine receptor site of L-type calcium channels by alanine-scanning mutagenesis.

The dihydropyridine Ca2+ antagonist drugs used in the therapy of cardiovacular disorders inhibit L-type Ca2+ channels by binding to a single high affinity site. Photoaffinity labeling and analysis of mutant Ca2+ channels implicate the IIIS6 and IVS6 segments in high affinity binding. The amino acid residues that are required for high affinity binding of dihydropyridine Ca2+ channel antagonists were probed by alanine-scanning mutagenesis of the alpha1C subunit, transient expression in mammalian cells, and analysis by measurements of ligand binding and block of Ba2+ currents through expressed Ca2+ channels. Eleven amino acid residues in transmembrane segments IIIS6 and IVS6 were identified whose mutation reduced the affinity for the Ca2+ antagonist PN200-110 by 2-25-fold. Both amino acid residues conserved among Ca2+ channels and those specific to L-type Ca2+ channels were found to be required for high affinity dihydropyridine binding. In addition, mutation F1462A increased the affinity for the dihydropyridine Ca2+ antagonist PN200-110 by 416-fold with no effect on the affinity for the Ca2+ agonist Bay K8644. The residues in transmembrane segments IIIS6 and IVS6 that are required for high affinity binding are primarily aligned on single faces of these two alpha helices, supporting a "domain interface model" of dihydropyridine binding and action in which the IIIS6 and IVS6 interact to form a high affinity dihydropyridine receptor site on L-type Ca2+ channels.

Alanine↗

Molecular determinants of high affinity phenylalkylamine block of L-type calcium channels in transmembrane segment IIIS6 and the pore region of the alpha1 subunit.

Recent studies of the phenylalkylamine binding site in the alpha1C subunit of L-type Ca2+ channels have revealed three amino acid residues in transmembrane segment IVS6 that are critical for high affinity block and are unique to L-type channels. We have extended this analysis of the phenylalkylamine binding site to amino acid residues in transmembrane segment IIIS6 and the pore region. Twenty-two consecutive amino acid residues in segment IIIS6 were mutated to alanine and the conserved Glu residues in the pore region of each homologous domain were mutated to Gln. Mutant channels were expressed in tsA-201 cells along with the beta1b and alpha2delta auxiliary subunits. Assay for block of Ba2+ current by (-)-D888 at -60 mV revealed that mutation of five amino acid residues in segment IIIS6 and the pore region that are conserved between L-type and non-L-type channels (Tyr1152, Phe1164, Val1165, Glu1118, and Glu1419) and one L-type-specific amino acid (Ile1153) decreased affinity for (-)-D888 from 10-20-fold. Combination of the four mutations in segment IIIS6 increased the IC50 for block by (-)-D888 to approximately 9 microM, similar to the affinity of non-L-type Ca2+ channels for this drug. These results indicate that there are important determinants of phenylalkylamine binding in both the S6 segments and the pore regions of domains III and IV, some of which are conserved across the different classes of voltage-gated Ca2+ channels. A model of the phenylalkylamine receptor site at the interface between domains III and IV of the alpha1 subunit is presented.

Action Potentials↗

Acquired resistance to experimental autoimmune encephalomyelitis is independent of V beta usage.

In Lewis rats, activated encephalitogenic T-helper cells elicit a single bout of experimental autoimmune encephalomyelitis (EAE). Recovery from EAE is marked by reduced susceptibility to disease reinduction. The purpose of this study was to determine whether a dominant expression of V beta gene segments by encephalitogenic T cells was required for development of recovery-associated resistance. Several polyclonal and monoclonal T cell lines were derived from Lewis rats sensitized with R72-86, a synthetic peptide representing the 72- to 86-amino-acid sequence of rat myelin basic protein (RMBP). The results revealed broad heterogeneity among encephalitogenic T cells specific for R72-86 in regard to V beta expression and CDR3 sequence. Encephalitogenic clones exclusively bearing either V beta 4 or V beta 10 TCR or polyclonal T cells bearing heterogeneous TCR transferred EAE to recipient rats and elicited resistance to EAE as revealed by subsequent challenge with guinea pig (GP)MBP in complete Freund's adjuvant (CFA). Nonpathogenic V beta 3+ and V beta 8.6+ clones specific for the 68-86 and 55-66 regions of MBP, respectively, did not elicit effective protection from EAE. These data indicate that induction of postrecovery resistance to EAE does not depend upon a particular V beta usage.

Adoptive Transfer↗

Comparison of peak exercise oxygen uptake in men versus women in chronic heart failure secondary to ischemic or idiopathic dilated cardiomyopathy.

Results of exercise testing in 150 patients with chronic heart failure show that women were characterized by shorter exercise time, peak oxygen consumption, and lower peak oxygen pulse than men. There was a 4.1-ml/kg/min difference in peak oxygen uptake between genders after the adjustment of age, peak heart rate, respiratory exchange ratio, ejection fraction, and etiology of heart failure.

Adult↗

Modulation of the cloned skeletal muscle L-type Ca2+ channel by anchored cAMP-dependent protein kinase.

Ca2+ influx through skeletal muscle Ca2+ channels and the force of contraction are increased in response to beta-adrenergic stimulation and high-frequency electrical stimulation. These effects are thought to be mediated by cAMP-dependent phosphorylation of the skeletal muscle Ca2+ channel. Modulation of the cloned skeletal muscle Ca2+ channel by cAMP-dependent phosphorylation and by depolarizing prepulses was reconstituted by transient expression in tsA-201 cells and compared to modulation of the native skeletal muscle Ca2+ channel as expressed in mouse 129CB3 skeletal muscle cells. The heterologously expressed Ca2+ channel consisting of alpha1, alpha2delta, and beta subunits gave currents that were similar in time course, current density, and dihydropyridine sensitivity to the native Ca2+ channel. cAMP-dependent protein kinase (PKA) stimulation by Sp-5,6-DCl-cBIMPS (cBIMPS) increased currents through both native and expressed channels two- to fourfold. Tail currents after depolarizations to potentials between -20 and +80 mV increased in amplitude and decayed more slowly as either the duration or potential of the depolarization was increased. The time- and voltage-dependent slowing of channel deactivation required the activity of PKA, because it was enhanced by cBIMPS and reduced or eliminated by the peptide PKA inhibitor PKI (5-24) amide. This voltage-dependent modulation of the cloned skeletal muscle Ca2+ channel by PKA also required anchoring of PKA by A-Kinase Anchoring Proteins because it was blocked by peptide Ht 31, which disrupts such anchoring. The results show that the skeletal muscle Ca2+ channel expressed in heterologous cells is modulated by PKA at rest and during depolarization and that this modulation requires anchored protein kinase, as it does in native skeletal muscle cells.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Attention, coping, and activity in children undergoing orthopaedic surgery.

The purpose of this study was to determine how children's preoperative focus of attention on the stresses of surgery related to their preoperative coping and return to usual activities during recovery. Children's attention was classified according to three different foci: concrete-objective, emotion, and vague. Children (N = 97) between the ages of 8 and 17 years who were undergoing major orthopaedic surgery participated in the study. Data were collected the day before surgery, and at 3, 6, and 9 months postoperatively. Children who focused on the concrete-objective aspects of surgery had the most positive activity outcomes, followed by the emotion-focused attention group. Children who were classified as having vague focused attentions had the least favorable activity outcomes. When there were significant coping by attention interaction effects, vigilant copers who had a concrete-objective focus of attention had the most favorable activity outcomes at each time of measurement. Children who were able to focus their attention on concrete aspects of the experience tended to use vigilant coping and were able to return to their usual activities sooner.

Activities of Daily Living↗

Increased expression of the cardiac L-type calcium channel in estrogen receptor-deficient mice.

Steroid hormones control the expression of many cellular regulators, and a role for estrogen in cardiovascular function and disease has been well documented. To address whether the activity of the L-type Ca2+ channel, a critical element in cardiac excitability and contractility, is altered by estrogen and its nuclear receptor, we examined cardiac myocytes from male mice in which the estrogen receptor gene had been disrupted (ERKO mice). Binding of dihydropyridine Ca2+ channel antagonist isradipine (PN200-110) was increased 45.6% in cardiac membranes from the ERKO mice compared to controls, suggesting that a lack of estrogen receptors in the heart increased the number of Ca2+ channels. Whole-cell patch clamp of acutely dissociated adult cardiac ventricular myocytes indicated that Ca2+ channel current was increased by 49% and action potential duration was increased by 75%. Examination of electrocardiogram parameters in ERKO mice showed a 70% increase in the QT interval without significant changes in PQ or QRS intervals. These results show that the membrane density of the cardiac L-type Ca2+ channel is regulated by the estrogen receptor and suggest that decreased estrogen may lead to an increase in the number of cardiac L-type Ca2+ channels, abnormalities in cardiac excitability, and increased risk of arrhythmia and cardiovascular disease.

Action Potentials↗