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Sculpting proteins interactively: continual energy minimization embedded in a graphical modeling system.

We describe a new paradigm for modeling proteins in interactive computer graphics systems--continual maintenance of a physically valid representation, combined with direct user control and visualization. This is achieved by a fast algorithm for energy minimization, capable of real-time performance on all atoms of a small protein, plus graphically specified user tugs. The modeling system, called Sculpt, rigidly constrains bond lengths, bond angles, and planar groups (similar to existing interactive modeling programs), while it applies elastic restraints to minimize the potential energy due to torsions, hydrogen bonds, and van der Waals and electrostatic interactions (similar to existing batch minimization programs), and user-specified springs. The graphical interface can show bad and/or favorable contacts, and individual energy terms can be turned on or off to determine their effects and interactions. Sculpt finds a local minimum of the total energy that satisfies all the constraints using an augmented Lagrange-multiplier method; calculation time increases only linearly with the number of atoms because the matrix of constraint gradients is sparse and banded. On a 100-MHz MIPS R4000 processor (Silicon Graphics Indigo), Sculpt achieves 11 updates per second on a 20-residue fragment and 2 updates per second on an 80-residue protein, using all atoms except non-H-bonding hydrogens, and without electrostatic interactions. Applications of Sculpt are described: to reverse the direction of bundle packing in a designed 4-helix bundle protein, to fold up a 2-stranded beta-ribbon into an approximate beta-barrel, and to design the sequence and conformation of a 30-residue peptide that mimics one partner of a protein subunit interaction. Computer models that are both interactive and physically realistic (within the limitations of a given force field) have 2 significant advantages: (1) they make feasible the modeling of very large changes (such as needed for de novo design), and (2) they help the user understand how different energy terms interact to stabilize a given conformation. The Sculpt paradigm combines many of the best features of interactive graphical modeling, energy minimization, and actual physical models, and we propose it as an especially productive way to use current and future increases in computer speed.

Amino Acid Sequence↗

A model system for the biochemical study of luteinizing hormone/chorionic gonadotropin receptor synthesis.

A model system for the biochemical study of LH/CG receptor synthesis has been developed. Culture conditions for porcine granulosa cells were adapted that maximized the selective induction of LH/CG receptors by cAMP-inducing stimuli with an elimination of background LH/CG receptor appearance. It was found that the addition of FSH (1.5 micrograms/ml) or cholera toxin (10 ng/ml) 1 day after plating resulted in optimal induction of the LH/CG receptor (20-60 pg [125I]CG bound/micrograms DNA 72 h after addition) with virtually no LH/CG receptor appearance in the absence of added stimuli. Later additions of FSH or cholera toxin required insulin (1.0 microgram/ml) which alone caused background LH/CG receptor appearance in the absence of any additional stimuli. Furthermore, insulin increased the general rate of cellular protein synthesis, whereas FSH or cholera toxin each decreased it. Thus, the use of FSH or cholera toxin, without insulin, may enable one to detect the synthesis of the LH/CG receptor by metabolic labeling techniques where background protein synthesis has been lowered.

Animals↗

Anxiety and arousal: tests of a new six-system model.

The present experiment was a test of a new six-system model of anxiety, which includes physiological, behavioral, cognitive, affective, trait, and state components of anxiety and also differentiates between direct and mediated responses. The State-Trait Anxiety Inventory was used to screen 795 undergraduates at the University of Maryland. Of the 52 subjects chosen, half were high trait anxious and half low. The two groups were further divided into high and low situational stress conditions. Subjects in the high-stress condition were exposed to two types of stressful cognitive and two types of stressful affective tasks. Subjects in the low-stress condition were exposed to the same four tasks with the stressful aspect removed. Prior state anxiety and cognitive or affective sensitivity were also considered. It was found that the most influential factor in resultant arousal was situational stress. Trait anxiety, state anxiety, and cognitive vs. affective sensitivity also significantly influenced both direct and mediated physiological and subjective anxiety responses. In addition, rather than leading to increased arousal, as hypothesized, the presence of trait and state anxiety reduced arousal under certain conditions.

Adult↗

Empirical tests of the Neuman systems model: relational statement analysis.

To be a valid test of the Neuman systems model, researchers' relational statements must be congruent with Neuman's axioms and must also be congruent at the conceptual, theoretical, and operational levels. Guided by Cooper's five-stage integrative review method, 92 quantitative research studies (dissertations and journal articles) were collected and categorized according to an expanded version of Silva's levels of theory testing. Nine studies, with explicit relational statements, were analyzed at three levels of abstraction, and interpretations of the studies' results were explored. Recommendations are made for the establishment of a program of research.

Data Collection↗

WEHI-3B D+ Y1 leukemia cells as a model system to assess the induction of differentiation in vivo.

An in vivo model system for assaying the induction of differentiation by therapeutic agents was developed using WEHI-3B D+ Y1 myelomonocytic leukemia cells in BALB/c mice, which exhibit characteristics analogous to those of human acute non-lymphocytic leukemia. An integrated copy of the non-mammalian 3'-aminoglycoside phosphotransferase gene in WEHI-3B D+ Y1 cells permitted the unambiguous identification of these leukemia cells in vivo by in situ hybridization. The administration of aclacinomycin A to BALB/c mice bearing this leukemia produced an increase in survival time. In situ analyses of peritoneal cells obtained from anthracycline-treated animals supported the concept that the increase in life-span was due in part to the induced maturation of WEHI-3B D+ Y1 cells to more mature granulocytic elements. This action was accompanied by an order of magnitude decrease, relative to vehicle-treated animals, in the peritoneal leukemic cell burden. The schedule and dosage of the anthracycline antibiotic that produced the maximum prolongation of life had no effect on peripheral platelet levels or packed red cell volume. Elevated white blood cell levels were observed in leukemia-bearing mice; these increases were reversed in animals receiving 2 mg/kg of aclacinomycin A and reached control levels by day 8. Treatment with aclacinomycin A had no effect on body weight, or femoral or splenic cellularity. Increased numbers of granulocyte-macrophage colony forming units were observed in leukemia-bearing animals. Leukemia-bearing mice receiving aclacinomycin A decreased these stem cell levels to that of drug-treated non-leukemia bearing animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Aclarubicin↗

Intermittent hypoxic loading: a model system to study the early stages of myocardial lesions.

Authors applied the model system of intermittent hypoxic loading to study the development of early myocardial alterations. It was found that a primary role is played by the deficiency of high-energy phosphate synthesis and by the disturbance of energetic and transport processes. The change of Ca2+-control, activation of anaerobic glycolysis and intracellular acidosis were found to be instrumental in decreasing contractility, impairing membranes and finally in a diffuse destruction of myofilaments.

Adenosine Triphosphate↗

Rat peritoneal mast cells: a model system for studying membrane fusion.

We used the mast cell as a model system for studying some of the membrane events which occur during exocytosis. Our observations indicate that the maximum cluster size of IgE molecules necessary for the "on" signal to activate a mast cell is 10 or less and that the "off" signal is not associated with the gross patching or pinocytosis of IgE and its Fc receptors. Furthermore, the use of Con A-Sepharose beads to stimulate mast cells has shown that such signaling is localized to the areas of stimulus, but this localization is not a function of desensitization over the rest of the cell since the subsequent addition of soluble Con A to locally released cells induced generalized degranulation. Ca2+ influx therefore acts in a localized manner to initiate degranulation. Following receptor cross-linking, most of the membrane proteins and the layer of intervening cytoplasm are laterally displaced away from the areas of membrane interaction. This displacement may act as the signal for fusion to occur. The resulting fused bilayers are predominantly lipid, a situation which may be common in all transient membrane fusion. The mechanism of exposing histamine-containing granules to the extracellular space by blebbing is discussed.

Animals↗

Mathematical models for combined high pressure and thermal plasmin inactivation kinetics in two model systems.

The combined high-pressure thermal inactivation kinetics of plasmin was studied in 2 model systems. The first system contained both plasmin and plasminogen, whereas, in the second system, all plasminogen was converted into plasmin, with urokinase, before the inactivation studies. High-pressure treatments were conducted in the range of 300 to 800 MPa combined with temperatures from 30 to 65 degrees C. Under all conditions of pressure and temperature (isobaric-isothermal) studied, for both systems, first-order inactivation was observed. A third-degree polynomial model (derived from thermodynamic principles) successfully described the temperature and pressure dependence of the inactivation rate constant over the entire experimental domain. The antagonistic effect and the stabilization effect observed above a threshold pressure value of 600 MPa were thought to be related to the disruption of disulfide bonds in plasmin and plasminogen.

Animals↗

Calcium dynamics: a model system approach.

A computerized model used to simulate calcium metabolism in growing chicks combines growth equations with differential equations that account for the amount and action of various components of the plasma calcium regulating subsystems--intestine, kidney and bone. These in turn are modulated by the calcium-regulating hormones: parathyroid hormone and 1,25-dihydroxycholecalciferol. Simulation with this model indicated oscillations in the plasma calcium concentration in growing chicks under normal dietary conditions. The oscillations diminish in amplitude and finally disappear when dietary calcium concentrations are either reduced or elevated. These oscillations, triggered by the perturbation imposed by growth, are the result of the dual action of parathyroid hormone on bone on the one hand and on intestinal calcium absorption via the 1,25-dihydroxycholecalciferol synthesizing system on the other and the difference in the response time between the two subsystems. Simulation also predicts that at high or low intakes of calcium, the capacity of the control systems is exceeded and oscillation in plasma. calcium diminish and finally disappear. Bone calcium, simulated for different calcium concentrations, mimics documented experimental results.

Animals↗

Congenital nystagmus: hypotheses for its genesis and complex waveforms within a behavioral ocular motor system model.

Attempts to simulate dysfunction within ocular motor system (OMS) models capable of exhibiting known ocular motor behavior have provided valuable insight into the structure of the OMS required for normal visual function. The pendular waveforms of congenital nystagmus (CN) appear to be quite complex, composed of a sustained sinusoidal oscillation punctuated by braking saccades and foveating saccades followed by periods of extended foveation. Previously, we verified that these quick phases are generated by the same mechanism as voluntary saccades. We propose a computer model of the ocular motor system that simulates the responses of individuals with pendular CN (including its variable waveforms) based on the instability exhibited by the normal pursuit subsystem and its interaction with other components of the normal ocular motor control system. Fixation data from subjects with CN using both infrared and magnetic search coil oculography were used as templates for our simulations. Our OMS model simulates data from individuals with CN during fixation and in response to complex stimuli. The use of position and velocity efference copy to suppress oscillopsia is the key element in allowing for normal ocular motor behavior. The model's responses to target steps, pulse-steps, ramps, and step-ramps support the hypothetical explanation for the conditions that result in sustained pendular oscillation and the rules for the corrective saccadic responses that shape this underlying oscillation into the well-known family of pendular CN waveforms: pendular (P), pseudopendular (PP), pendular with foveating saccades (Pfs), and pseudopendular with foveating saccades (PPfs). Position error determined the saccadic amplitudes of foveating saccades, whereas stereotypical braking saccades were not dependent on visual information. Additionally, we propose a structure and method of operation for the fixation subsystem, and use it to prolong the low-velocity intervals immediately following foveating saccades. The model's robustness supports the hypothesis that the pendular nystagmus seen in CN is due to a loss of damping of the normal pursuit-system velocity oscillation (functionally, it is pursuit-system nystagmus--PSN).

Computer Simulation↗

Development of a speciated, hourly, and gridded air pollutants emission modeling system--a case study on the precursors of photochemical smog in the Seoul metropolitan area, Korea.

A speciated, hourly, and gridded air pollutants emission modeling system (SHEMS) was developed and applied in predicting hourly nitrogen dioxide (NO2) and ozone (O3) levels in the Seoul Metropolitan Area (SMA). The primary goal of the SHEMS was to produce a systemized emission inventory for air pollutants including ozone precursors for modeling air quality in urban areas. The SHEMS is principally composed of three parts: (1) a pre-processor to process emission factors, activity levels, and spatial and temporal information using a geographical information system; (2) an emission model for each source type; and (3) a post-processor to produce report and input data for air quality models through database modeling. The source categories in SHEMS are point, area, mobile, natural, and other sources such as fugitive emissions. The emission database produced by SHEMS contains 22 inventoried compounds: sulfur dioxide, NO2, carbon monoxide, and 19 speciated volatile organic compounds. To validate SHEMS, the emission data were tested with the Urban Airshed Model to predict NO2 and O3 concentrations in the SMA during selected episode days in 1994. The results turned out to be reliable in describing temporal variation and spatial distribution of those pollutants.

Air Pollutants↗

The amphibian egg as a model system for analyzing gravity effects.

Amphibian eggs provide several advantageous features as a model system for analyzing the effects of gravity on single cells. Those features include large size, readily tracked intracellular inclusions, and ease of experimental manipulation. Employing novel gravity orientation as a tool, a substantial data base is being developed. That information is being used to construct a 3-D model of the frog (Xenopus laevis) egg. Internal cytoplasmic organization (rather than surface features) are being emphasized. Several cytoplasmic compartments (domains) have been elucidated, and their behavior in inverted eggs monitored. They have been incorporated into the model, and serve as a point of departure for further inquiry and speculation.

Animals↗

Zebrafish as a model system for studying neuronal circuits and behavior.

Zebrafish are best known as a model system for studies of the genetics of development. They do, however, also offer many advantages for the study of neuronal circuitry because the larvae are transparent, allowing optical studies of neuronal activity and noninvasive photoablations of individual neurons. The combination of these optical methods with genetics through the use of mutant and transgenic lines of fish should make the zebrafish model a unique and powerful one among vertebrates. Here we review the strengths of the model and the possibilities it offers for studies of the neural basis of behavior.

Animals↗

Model systems in developmental biology.

The practical criteria by which developmental biologists choose their model systems have evolutionary correlates. The result is a sample that is not merely small, but biased in particular ways, for example towards species with rapid, highly canalized development. These biases influence both data collection and interpretation, and our views of how development works and which aspects of it are important.

Animals↗

Requirements of in vitro model systems.

In summary I would encourage the continued development of a variety of model systems with maximum characterization and with careful definition of questions to be asked. At the same time it is imperative that the biology of the prostate, and of BPH and prostatic carcinoma in particular, be kept clearly in mind so that appropriate questions can be asked and valid conclusions drawn.

Animals↗

Health as a continuum based on the Neuman systems model.

The following presentation, "Health as a Continuum," is based on the Neuman systems model. New relationships are made with the created-environment and energy as concepts in viewing and defining health on a continuum. Two case studies illustrate these views. An in-depth consideration of environment has important implications for wholistic nursing care and research.

Adult↗

Development and distribution of pathologic lesions are related to immune status and tissue deposition of human granulocytic ehrlichiosis agent-infected cells in a murine model system.

To evaluate pathology and the role of immune status in a murine model system of human granulocytic ehrlichiosis (HGE), C3H/HeJ, C3H-SCID, and Peromyscus leucopus mice were infected with an HGE agent. All mice remained healthy. Ehrlichemia was not detected after day 14 in P. leucopus and C3H/HeJ mice but increased between days 14 and 90 in C3H-SCID mice. In tissues examined at day 21 and later, infection was rarely detected in immunocompetent mice but was present in all C3H-SCID mice and included pulmonary endothelialitis and hepatic mononuclear cell aggregates with apoptoses. HGE agent was demonstrated in mature and immature myeloid cells in hematopoietic tissues and infrequently in lung and liver lesions with deposition of infected cells. HGE agent infection in immunocompromised mice progresses slowly, has a higher infectious burden and more tissue pathology and is persistent. A murine model for HGE may be useful to assess pathologic lesions, transmission, and persistence.

Animals↗