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Theoretical analysis of the kinetics of DNA hybridization with gel-immobilized oligonucleotides.

A new method of DNA sequencing by hybridization using a microchip containing a set of immobilized oligonucleotides is being developed. A theoretical analysis is presented of the kinetics of DNA hybridization with deoxynucleotide molecules chemically tethered in a polyacrylamide gel layer. The analysis has shown that long-term evolution of the spatial distribution and of the amount of DNA bound in a hybridization cell is governed by "retarded diffusion," i.e., diffusion of the DNA interrupted by repeated association and dissociation with immobile oligonucleotide molecules. Retarded diffusion determines the characteristic time of establishing a final equilibrium state in a cell, i.e., the state with the maximum quantity and a uniform distribution of bound DNA. In the case of cells with the most stable, perfect duplexes, the characteristic time of retarded diffusion (which is proportional to the equilibrium binding constant and to the concentration of binding sites) can be longer than the duration of the real hybridization procedure. This conclusion is indirectly confirmed by the observation of nonuniform fluorescence of labeled DNA in perfect-match hybridization cells (brighter at the edges). For optimal discrimination of perfect duplexes from duplexes with mismatches the hybridization process should be brought to equilibrium under low-temperature nonsaturation conditions for all cells. The kinetic differences between perfect and nonperfect duplexes in the gel allow further improvement in the discrimination through additional washing at low temperature after hybridization.

DNA

Hydration and conformational equilibria of simple hydrophobic and amphiphilic solutes.

We consider whether the continuum model of hydration optimized to reproduce vacuum-to-water transfer free energies simultaneously describes the hydration free energy contributions to conformational equilibria of the same solutes in water. To this end, transfer and conformational free energies of idealized hydrophobic and amphiphilic solutes in water are calculated from explicit water simulations and compared to continuum model predictions. As benchmark hydrophobic solutes, we examine the hydration of linear alkanes from methane through hexane. Amphiphilic solutes were created by adding a charge of +/-1e to a terminal methyl group of butane. We find that phenomenological continuum parameters fit to transfer free energies are significantly different from those fit to conformational free energies of our model solutes. This difference is attributed to continuum model parameters that depend on solute conformation in water, and leads to effective values for the free energy/surface area coefficient and Born radii that best describe conformational equilibrium. In light of these results, we believe that continuum models of hydration optimized to fit transfer free energies do not accurately capture the balance between hydrophobic and electrostatic contributions that determines the solute conformational state in aqueous solution.

Alkanes

Efficiency of energy conversion in model biological pumps. Optimization by linear nonequilibrium thermodynamic relations.

Experimental investigations showed linear relations between flows and forces in some biological energy converters operating far from equilibrium. This observation cannot be understood on the basis of conventional nonequilibrium thermodynamics. Therefore, the efficiencies of a linear and a nonlinear mode of operation of an energy converter (a hypothetical redox-driven H+ pump) were compared. This comparison revealed that at physiological values of the forces and degrees of coupling (1) the force ratio permitting optimal efficiency was much higher in the linear than in the nonlinear mode and (2) the linear mode of operation was at least 10(6)-times more efficient that the nonlinear one. These observations suggest that the experimentally observed linear relations between flows and forces, particularly in the case of oxidative phosphorylation, may be due to a feedback regulation maintaining linear thermodynamic relations far from equilibrium. This regulation may have come about as the consequence of an evolutionary drive towards higher efficiency.

Energy Metabolism

Enzyme-linked immunosorbent assay for the detection of antibodies to bovine viral diarrhea virus in bovine sera.

A specific and sensitive enzyme-linked immunosorbent assay (ELISA) was established for the detection of antibodies to bovine viral diarrhea virus (BVDV) in bovine sera. Polyethylene-glycol concentrated, equilibrium density gradient purified BVDV was used as test antigen at an optimal amount of 1 microgram/well, whereas the optimal concentration of conjugate was at 1/2000 dilution. The standardized test encountered no non-specific reaction with test sera at a starting dilution of 1/10. A total of 50 bovine serum samples was assayed for the presence of antibodies against BVDV by ELISA and serum neutralization test (SNT). A positive correlation between the 2 tests was found. However, ELISA could be as much as 500-fold more sensitive than SNT in detecting low levels of BVDV antibodies.

Abortion, Veterinary

Characterization of DNA binding protein from rat liver chromatin which decreases during growth.

A nuclear nonhistone protein which decreases in chromatin during growth (Yeoman, L. C., et al. (1975) Cancer Res. 35, 1249) has been isolated in high purity from the chromatin of normal rat liver nuclei by gel electrophoresis and column chromatography. This protein, designated BA (Yeoman, L.C., et al. (1973) Biochem Biophys. Res. Commun. 53, 1067), has a molecular weight of 31 000, an acidic to basic amino acid composition ratio of 0.9, and contains one tryptophan residue per molecule. Hydrazinolysis indicated protein BA has a lysine carboxyl terminus; however, the amino terminal is blocked as no reaction occurred with dansyl chloride. Maps of tryptic peptides of protein BA contained 46 spots. Protein BA binding to various DNAs was examined by the nitrocellulose filter assay. Binding was slightly enhanced by 2mM Mn2+ion; Mg2+, however, decreased binding. Binding was optimal at neutral pH and an ionic strength of 0.2 M [NaCl]. Equilibrium competition binding studies indicated a binding preference of protein BA for dA-dT rich DNA.

Aging

Characterization of the binding of DL-[3H]-2-amino-4-phosphonobutyrate to L-glutamate-sensitive sites on rat brain synaptic membranes.

The binding of DL-[3,4-3H] 2-amino-4-phosphonobutyric acid DL[3H]-APB to rat whole brain synaptic membranes was investigated. Binding was linear with membrane protein concentration, and optimal at physiological pH and temperature. The association rate was rapid, achieving equilibrium within 10 min. Prolonged incubations (greater than 20 min) revealed additional sites, which apparently possessed identical binding characteristics to those detected with 10 min incubations. Binding of DL-[3H]-APB was enriched in synaptic membrane fractions, and assessment of the regional distribution, indicated greatest binding in those areas with a rich glutamatergic innervation. The binding of DL-[3H]-APB in HEPES-KOH buffer exhibited an absolute requirement for Cl-. The addition of Ca2+ resulted in a further enhancement of binding. Saturation analysis revealed the presence of specific glutamate-sensitive DL-[3H]-APB binding sites, with a KD = 1.26 microM and Bmax = 12.08 pmol mg-1 protein. A Hill plot revealed a slope slightly greater than unity, which could possibly be a reflection of a contribution to binding of a further site which is relatively insensitive to glutamate. Analysis of 60 min incubation data indicated an approximately 3 fold increase in the capacity of the system, but a relatively unchanged KD. Examination of the pharmacological specificity of binding, showed that for both agonist and antagonist molecules, the L-enantiomers were invariably more active than the D-forms. For example, the L-(+)-2-amino-4-phosphonobutyrate isomer was 15 times more active than the D-(-)-form in inhibiting the binding of DL-[3H]-APB. This is in close agreement with the ability of these compounds to produce depression of synaptic transmission. The most potent inhibitor of binding was quisqualate. It is suggested that APB may interact with a quisqualate-preferring class of excitatory amino acid receptors, possibly localised predominantly on presynaptic terminals.

Aminobutyrates

Purification and characterization of a novel 5-oxoprolinase (without ATP-hydrolyzing activity) from Alcaligenes faecalis N-38A.

A novel type of 5-oxoprolinase was found in a cell extract of strain N-38A, which was later identified as Alcaligenes faecalis. The enzyme in the cell extract was purified to a homogeneous state with a yield of 16.6%. The molecular weight of the purified enzyme was estimated to be 47,000 by both sodium dodecyl sulfate-polyacrylamide gel electrophoresis and gel filtration, suggesting that the enzyme is a monomeric protein. The enzyme specifically catalyzed a decyclization of L-pyroglutamate without hydrolyzing ATP and also without any requirements for metal ions such as Mg2+ and K+. The optimal pH for the decyclization was 7.4. The reaction was reversible. The equilibrium constant of the reaction, Keq = [L-glutamate]/[L-pyroglutamate], was evaluated to be approximately 0. 035, which indicates that the reaction tends to form L-pyroglutamate. The amino-terminal amino acid sequence of the enzyme was H-Glu-Pro-Arg-Leu-Asp-Thr-Ser-Gln-Leu-Tyr-Ala-Asp-Val-His-Phe-. No protein with a similar sequence was found in the DNASIS database. Based on these data, it was strongly suggested that the enzyme described here is a novel type of 5-oxoprolinase.

Journal Article

Binding of [125I]iodipine to parathyroid cell membranes: evidence of a dihydropyridine-sensitive calcium channel.

The parathyroid cell is unusual, in that an increase in extracellular calcium concentrations inhibits PTH release. Calcium channels are glycoproteins that span cell membranes and allow entry of extracellular calcium into cells. We have demonstrated that the calcium channel agonist (+)202-791, which opens calcium channels, inhibits PTH release and that the antagonist (-)202-791, which closes calcium channels, stimulates PTH release. To identify the calcium channels responsible for these effects, we used a radioligand that specifically binds to calcium channels. Bovine parathyroid cell membranes were prepared and incubated under reduced lighting with [125I] iodipine (SA, 2000 Ci/mmol), which recognizes 1,4-dihydropyridine-sensitive calcium channels. Bound ligand was separated from free ligand by rapid filtration through Whatman GF/B filters. Nonspecific binding was measured by the inclusion of nifedipine at 10 microM. Specific binding represented approximately 40% of the total binding. The optimal temperature for [125I] iodipine binding was 4 C, and binding reached equilibrium by 30 min. The equilibrium dissociation constant (Kd) was approximately 550 pM, and the maximum number of binding sites was 780 fmol/mg protein. Both the calcium channel agonist (+)202-791 and antagonist (-)202-791 competitively inhibited [125I] iodipine binding, with 50% inhibition concentrations of 20 and 300 nM, respectively. These data indicate the presence of dihydropyridine-sensitive calcium channels on parathyroid cell membranes.

Animals

Characterization and subtype identification of the Na(+)-H+ exchanger in bovine corneal epithelium.

Amiloride analogues with N5-alkyl substitutions are specific high-affinity ligands for the Na(+)-H+ exchanger in various tissues. As a means to characterize the Na(+)-H+ exchanger in the bovine corneal epithelium, we determined the binding properties of [3H] methylisobutylamiloride (MIA) to a fraction enriched in plasma membrane from this tissue. [3H]MIA bound to these membranes in a time, -a temperature-, and -a pH-dependent manner. The binding was optimal at 4 degrees C and at pH 8.5 and it reached equilibrium at 60 min. Under these conditions, specific binding, which was inhibitable by excess unlabeled MIA, was about 85%. Scatchard analysis of this specific binding revealed a single saturable binding component with a Kd of 61 nM and a Bmax of 271 pmoles/mg protein. Inhibition of [3H]MIA specific binding by amiloride analogues showed the following order of potency: MIA > dimethylamiloride (DMA) > benzamil > amiloride. Na+ did not compete with MIA for binding. The effectiveness of clonidine, an alpha 2 agonist, and cimetidine, an H2 receptor antagonist, as inhibitors of Na(+)-H+ exchange activity was also determined because these compounds are used to distinguish between the exchanger subtypes. At concentrations higher than those needed for receptor interaction, clonidine was more effective than cimetidine in decreasing MIA binding. The activity of Na(+)-H+ exchanger, which was measured as the uptake of 22Na+ in the presence of an outwardly directly H+ gradient, was also inhibited by DMA, benzamil and amiloride with the same order of potency as obtained in the binding studies.(ABSTRACT TRUNCATED AT 250 WORDS)

Amiloride

[Model of therapeutic programming in NIDDM diabetes].

The usual choice of therapy in NIDDM diabetes, using oral anti-diabetic compounds, insulin or associated treatments, is based on the results of treatment evaluated empirically using glycemic profiles. As a contribution to the search for a method of choosing a treatment which is based on laboratory data and can restore metabolic equilibrium as quickly as possible using the most efficacious drug at an optimal dose, the paper reports a method of assessing the severity of diabetes according to mean daily glucose concentrations, the degree of instability in relation to the standard deviation, and proposes a sensitivity test to SU which indicates the choice of therapy, together with an insulin sensitivity test which is useful for evaluated the optimal dose. Sensitivity to SU evaluated using this method is not dependent on the degree of severity of diabetes. With regard to its practical use for prescribing treatment the test is highly predictive in positive cases since it is extremely sensitive, while its low specificity does not rule out its use in cases of resistance. The analysis of the results obtained after treatment which was not indicated by the sensitivity tests but based on personal experience and the comparison of the two methods shows that a high percentage of patients received inadequate therapy either due to the prescription of the wrong type of treatment or an incorrect dosage.

Blood Glucose

Human postural dynamics.

The study of posture dynamics is important not only to understand disorders of impaired equilibrium and protective reactions to unexpected displacements of the human body, but also to the design of prosthesis and functional neuromuscular stimulation as aids to patients with impaired postural stability and locomotion. Coordinated control of the body segments is a complex aspect of motor behavior, owing to the multiple degrees of freedom of the controlled system. Several interacting subsystems are involved in the dynamics of human posture and locomotion, including the skeletal, neuromuscular, and sensory systems. Human posture control is maintained by somatosensory, vestibular, and visual feedback, integrated within the locomotor and central nervous systems. Studies of posture dynamics and stability therefore entail the study of mechanical aspects of the human body, its sensory systems, and the principles governing coordination in motion control. In this paper is reviewed some of the research done in the field of human posture dynamics, including such topics as biomechanics, equilibrium, stability, motion coordination, neural feedback, neural control systems modeling, motion strategies, optimality of motion, and adaptation. We consider experimental approaches and theoretical models, as well as the gap between them. Principles for the experimental investigation of control systems are considered.

Animals

Changes in phosphoproteins during commitment of HL60 cells to monocyte differentiation: evidence for multiple protein kinase involvement.

The human promyeloid cell line HL60 differentiates toward monocytes when treated with TPA. We have analyzed, by two-dimensional gel electrophoresis, the phosphoprotein patterns within HL60 cells, labeled to equilibrium with [32P]orthophosphate when cells were treated with suboptimal (1 nM), optimal (5 and 10 nM), and supraoptimal (40 and 100 nM) concentrations of 12-O-tetradecanylphorbol-13-acetate (TPA) as regards the induction of differentiation. No change was detected in the phosphoprotein pattern at 1 nM TPA, whereas four phosphoproteins showed increased levels of phosphorylation at 5 and 10 nM TPA. When cells were treated with 40 and 100 nM TPA, in total eight and ten proteins, respectively, were phosphorylated, including the above four proteins. Two proteins were dephosphorylated when cells were treated with 40 and 100 nM TPA. A 15-kd protein, phosphorylated when HL60 cells were treated with 5 nM TPA, was observed as an intense spot in autoradiographs of total cellular phosphoproteins of two variant HL60 cell lines that are unable to differentiate toward monocytes and prior to treatment with TPA. In the case of three variant cell lines, which like HL60 differentiate toward monocytes, the phosphoprotein spot was almost absent. Thus, paradoxically, the 15-kd phosphoprotein is affected by TPA although its constitutive level of expression or increased phosphorylation state is inversely related to the potential for monocyte differentiation. This observation, together with the TPA dose-response effects on protein phosphorylation, is discussed in relation to multiple protein kinase involvement.

Cell Differentiation

Spectrophotometric assay of bisphosphoglycerate mutase: a reexamination of Rapoport-Luebering's method.

The saturation by substrates and cofactors, the effects of pH and the influence of salts and auxiliary enzymes have been studied. The linear NAD+ reduction observed before addition of haemolysate to the assay system was proportional to pH, being higher with phosphate than with Tris-HCl buffer. In the presence of bisphosphoglycerate mutase, an optimal pH (7.8-8.1) was obtained and the inhibition by sulfate ions could be confirmed. It can then be suggested that the absence of an equilibrium, the pH used by several authors and sulfate inhibition could be sources of error in the spectrophotometric assay of bisphosphoglycerate mutase activity. Once optimal conditions have been established, activities found in both human and rat erythrocytes are similar to those given by other accurate methods.

Animals

Regulation of inositol 1,4,5-trisphosphate receptors in rat basophilic leukemia cells. I. Multiple conformational states of the receptor in a microsomal preparation.

A detailed characterization of the inositol 1,4,5-trisphosphate (IP3) receptor in rat basophilic leukemia (RBL) cells, a neoplastic mast cell line, has been possible through the growth of solid RBL cell tumors which provide a rich source of IP3 receptor. Equilibrium binding studies show a 1.6 +/- 0.1 pmol/mg of protein maximal binding capacity for [3H]IP3 at optimal Ca2+ (10 microM). The specificity of the RBL cell IP3 receptor towards phosphoinositides, ATP and heparin parallels those previously described with excitable and nonexcitable tissues. [3H]IP3 binding is slightly enhanced from < 1 nM to 10 microM Ca2+ and inhibited by > 10 microM Ca2+. Kinetic and equilibrium studies provide evidence for at least two classes or conformational states of binding sites with pico- and nanomolar affinities. At nM concentrations of IP3, neither binding to the IP3 receptor nor IP3-induced Ca2+ efflux from permeabilized cells demonstrates cooperativity. In contrast, at pM concentrations, IP3 binding kinetics deviate from simple mass action suggesting a complex interaction among binding sites for IP3 on the receptor-channel oligomer. The mechanisms that regulate [3H]IP3 binding in RBL cells are unique when compared to what has been reported in other cells.

Animals

Characterization of topoisomerase II-DNA interaction and identification of a DNA-binding domain by ultraviolet laser crosslinking.

We have used ultraviolet laser crosslinking to characterize the DNA-binding properties of highly purified yeast topoisomerase II in the absence of ATP. A single 5 ns, 20 mJ pulse of 266 nm light produced optimal crosslinking to a short DNA duplex, with an efficiency of 0.25%. An equilibrium binding constant (Keq) of 1.2 +/- 0.5 x 10(8) M(-1) was determined from kinetic analysis. Topoisomerase II showed highest affinity for supercoiled DNA. Limited proteolysis of crosslinked topoisomerase II-DNA complexes showed a site of crosslinking to be within a 29-kDa fragment with Leu-681 at its amino-terminal end. This region contains the active Tyr-783 and is homologous to the amino-terminal region of the DNA-binding bacterial gyrase GyrA subunit, suggesting a conserved DNA-binding mechanism.

Base Sequence

Angiotensin II receptors in the fowl aorta.

In the domestic fowl, angiotensin II (ANG II) causes an in vivo depressor response and in vitro relaxation of aortic rings which appear to be a direct action of ANG II on the blood vessels. Thus, we determined whether binding sites specific to ANG II exist in the membrane fraction of the fowl aorta. The particulate fraction of aortas from adult female fowl, Gallus gallus, exhibits high specific binding to ANG II ligand. 125I-[Ile5]ANG II (0.5 nM) binding to the above fraction (30 micrograms protein) in 50 mM Tris (pH 7.2), 10 mM MgCl2, and 0.2% bovine serum albumin at 12 degrees (1) is rapid, saturable, and reversible; (2) increases as a function of ligand or membrane concentration, time, and temperature; and (3) optimally fits to a two-site (high and low affinity) model. The equilibrium dissociation constant (0.15 +/- 0.03 nM) and binding site concentration (28.7 +/- 8.1 fmol/mg protein) of the high affinity site as well as association (0.055 nM-1.min-1) and dissociation (0.0122 min-1) rate constants are similar to those of mammalian vascular ANG II receptors. Both 125I-[Ile5]ANG II and 125I-[Val5]ANG II are competitively displaced by unlabeled ANG II. These results suggest that specific ANG II receptors exist in the fowl aorta.

Angiotensin II

The manpower situation in pathology: implications for the future.

With the exception of academic pathology and specific subspecialty areas, manpower in pathology is currently in a state of apparent equilibrium between supply and demand. Exogenous influences, and especially an influx of Americans who have attended foreign-chartered medical schools, could disturb this apparent equilibrium. Other key manpower issues with respect to pathology include mechanisms to determine optimal numbers of pathologists, the future productivity of pathologists, current and prospective needs in academic pathology and subspecialty areas, and the role of the federal government in the area of medical manpower. Recommendations to deal with these and related issues are presented.

Foreign Medical Graduates

Length changes of the cat soleus muscle under frequency-modulated distributed stimulation of efferents in isotony.

The length changes of the cat soleus muscle have been examined in isotony within closed cycles of the stimulation rate change. Successive stimuli were applied in a cycle to five filaments of the preliminary dissected L7-S1 ventral roots (method of distributed stimulation), maximal rate did not exceed 80-90/s (16-18/s per single filament). At the beginning of a slow linear increase in the rate a muscle began shortening rather quickly, the rate changes without muscle reaction consisted of 5.91 +/- 0.28/s (mean +/- S.E.M.). A substantially linear movement was observed during increase of the input rate up to 40-50/s (i.e. 8-10/s per filament), a further rate increment could evoke a somewhat slowing of the shortening velocity with a distinctive infection of the rate-length curve. During a significant part of the rate decrease phase no movement was seen, the rate range with the absence of muscle lengthening was 29.93 +/- 1.57/s. After such a pronounced period of length fixation, a muscle began to elongate, the steady-state velocity at this part of the movement trajectory was invariably higher as compared with shortening velocity at the leading edge of the cycle. The striking feature of a powerful length clamping seen in active muscle at the phase of rate decrease preceded by previous rate increment allows us to suppose that this strongly non-linear behaviour of muscle might be a main reason for the existence of powerful dynamic components in efferent activity every time when muscle should shorten against external load in a ramp-and-hold fashion. We used the following experimental paradigm to check the assumption. Stimulation began with regular rate of 15/s; then, after transition from isometry to isotony and cessation of movement transients, the rate was raised linearly; after reaching a peak value of 50-90/s, it decreased linearly or exponentially, being afterwards fixed at several different levels between the maximal and initial values of the rate. It was demonstrated that such pattern of stimulation could be effective for a linear transition between two equilibrium lengths, provided that corresponding parameters in modulation signal were chosen in an optimal way. Duration and amplitude of the leading edge of the dynamic component seemed to completely define amplitude and velocity of the ramp phase of movement, parameters of decay to the final steady rate were, on the other hand, important for efficacy of the length clamping at hold phase. It was concluded that hysteresis effects of muscle contraction seemed to be an extremely important nonlinear property of muscle dynamics in producing any transition movements between two steady-states. Thus, oversimplified muscle models, like the spring model based on the isometric length-tension dependencies, seem to be incorrect. Possible mechanisms for the muscle hysteresis and its role in motor control are discussed.

Animals