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Determinants of protein stability and folding: comparative analysis of beta-lactoglobulins and liver basic fatty acid binding protein.

A new energy decomposition approach, aimed at identifying residues playing a folding key role, has been applied here to three homologous proteins, belonging to the calycin superfamily, namely bovine and porcine beta-lactoglobulins and Liver basic fatty acid binding protein, sharing the same beta-barrel fold and different degree of sequence identities. All-atom, explicit solvent molecular dynamics simulations around the native conformation were used to generate, for each of the three proteins, energy maps which were further simplified through eigenvalue decomposition. Analysis of the components of the eigenvector associated with the lowest eigenvalue singled out those residues (hot sites) behaving as strongly interacting and possible nucleation centers. The results fit well with experimental folding data and, especially, with the analysis of side chain-side chain interaction conservation.

Amino Acid Sequence↗

On the stability of two rigidly rotating magnetic fluid columns in zero gravity in the presence of mass and heat transfer.

The stability of two rigidly rotating magnetic fluids separated by a cylindrical interface and stressed by a timely oscillating axial magnetic field is investigated. Only axisymmetric disturbances are considered. The interface admits both mass and heat transfer. Weak viscous effects on the interface are taken into account so that their contributions are demonstrated in the boundary conditions. The solution of the boundary value problem leads to a transcendental differential equation. It includes a periodic coefficient together with modified Bessel functions of operators involved as their arguments. In the absence of rotation and under the assumption of small amplitude of the harmonic magnetic field, the characteristic equation is analyzed by means of Whittaker's perturbation technique to determine the transition curves which separate stable from unstable solutions. While in the presence of rotation, the method of multiple-time scales is adopted to investigate the necessary and sufficient conditions for stability. The analysis results in the resonance cases as well as the nonresonance cases. In order to simplify the analysis, the periodic solutions are only considered. Therefore, stability is discussed through the marginal state. Furthermore, the rotation is considered as small. The analytical results are numerically confirmed.

Colloids↗

Biomechanical analysis of human arm stabilization during force production.

The activity of muscles of the human arm can produce force against an external system which may be interpreted as a directional force and a stabilizing force. This paper investigated the relationship between muscle activity in the human arm during both maximal and submaximal external force development against a handle. Three different handle arrangements were studied; fixed, free to move in the horizontal direction and free to move in the vertical direction. Ten subjects were utilized. Analyses of angle, force and electromyographic data revealed that the increased muscle activity at the wrist when compared with action against the movable external system was a function of the stabilizing force and not of directional force production. It is suggested that the extensor muscles of the wrist are the initiators of the stabilizing force as well as the major stabilizers of the wrist joint during the resultant force production against the handle.

Arm↗

Analysis of time to stabilization in the treatment of depression: biological and clinical correlates.

The discovery of clinical and biological variables which correlate with the rate of treatment response is an important aim of outcome research. In this report, such items were assessed in a large group of patients with recurrent depression to determine what variables contribute to stabilization during treatment. Relatively few items were strongly related to time to stabilization aside from age, clinical severity of illness, and number of previous episodes. One biological variable, cortisol nadir, was positively related to the time of stabilization. Similar assessments of non-responders did not yield any specific predictors.

Adult↗

Effect of polyols on alpha-chymotrypsin thermostability: a mechanistic analysis of the enzyme stabilization.

The influence of the synthetic substrate (N-acetyl-L-tyrosine ethyl ester) and the different polyols (ethylene glycol, glycerol, erythritol, xylitol and sorbitol) on the thermostability of alpha-chymotrypsin at 60 degrees C have been studied. The results obtained showed an important stabilizing effect in the presence of both additives. In order to describe the kinetics of enzyme stabilization, the experimental results were analyzed by a four-parameters deactivation model with excellent agreement. In all cases, alpha-chymotrypsin exhibited non-first-order deactivation kinetics, corresponding to a two-step unimolecular mechanism, where the main protective effect of polyols was observed in the first-step of the deactivation profile. Thus, the presence of polyols increased the level of activity stabilization (alpha 1), and decreased the first-order deactivation rate constant (k1). Additionally, the experimental results were analyzed as a function of both, the change in the standard free energy of denaturation (delta(delta Gzero)), and a protective effect, defined as the ratio of alpha-chymotrypsin half-lives (with and without polyols), showing in both cases a clear stabilizing effect of these polyhydroxylic cosolvents for the enzyme. The overall protective effect of polyols was also simultaneously related to their concentration and their water-activity depressing power.

Chymotrypsin↗

An analysis of factors influencing stability of surgical advancement of the maxilla by the Le Fort I osteotomy.

Skeletal stability after maxillary surgical advancement was studied in 30 patients. Postoperative movement of all measured skeletal and dental points were on the average negligible. Equal stability was seen in maxillary advancement alone and with concomitant mandibular surgery. Eight cases examined individually showed larger than desired postoperative movements. In six of these cases the undesirable postoperative changes were secondary to undesirable preoperative orthodontic flaring of the incisors. The Begg orthodontic technique, because of its tendency to axially rotate teeth, was shown to produce more variability in tooth position than edgewise orthodontics. This study confirms that no preoperative flaring of the maxillary incisors should be attempted; instead, the teeth should be retracted and placed over basal bone with a normal axial inclination. Occlusal correction should then be accomplished by surgery. Suspension wires and bone grafting are sufficient to obtain skeletal stability in cases of maxillary advancement up to 11 mm. In cases where the surgery is more complex, rigid fixation is recommended.

Bone Nails↗

Application of capillary zone electrophoresis to the analysis and to a stability study of nitrite and nitrate in saliva.

The applicability of capillary zone electrophoresis for the determinations of nitrite and nitrate was studied. Using direct UV detection the limit of detection values of the analytes were 0.14 and 0.21 microg/mL, respectively. The developed method was found to be useful to directly determine nitrite, nitrate and thiocyanate in saliva. It was found that adjusting the pH of the sample to 11 and storing the saliva at 4 degrees C was adequate to make constant the nitrite/nitrate ratio in saliva samples at least 7 days.

Electrophoresis, Capillary↗

Analysis of global exponential stability and periodic solutions of neural networks with time-varying delays.

In this paper, a general class of recurrent neural networks with time-varying delays is studied. Some novel and sufficient conditions are given to guarantee the global exponential stability of the equilibrium point and the existence of periodic solutions for such delayed neural networks. Comparing with some previous literature, in which the time-varying delays were assumed to be differentiable and their derivatives were simultaneously required to be not greater than 1, the restrictions on the time-varying delays are removed. Therefore, our results obtained here improve and extend some previously related results. Finally, two numerical examples are provided to illustrate our theorems.

Algorithms↗

Functional analysis of replication and stability regions of broad-host-range conjugative plasmid CTX-M3 from the IncL/M incompatibility group.

Plasmid CTX-M3 (89 kb) isolated from Citrobacter freundii from a Warsaw hospital is a mosaic plasmid with replication functions 100% identical with those of pMU407.1 of the IncL/M group, conjugative operons with up to 60% homology to ColIb-P9 (IncI) and stability functions originating either from NR1(R100) (IncFII) or ColIb-P9 /R1/NR1 plasmids. We established the broad-host-range for pCTX-M3 and defined its minireplicon in Escherichia coli. We analyzed the role of stability cassettes and showed that the par operon consists of three orfs parA (stbA), parB (stbB) and nuc with a centromere-like region located upstream of the operon. Deletion of the par operon strongly destabilized pCTX-M3 despite the presence of the pemIK toxin-antidote system identical to that on NR1(R100) plasmids. Deletion of the pemIK operon had no effect on plasmid stability.

Amino Acid Sequence↗

Squaric acid and esters: analysis for contaminants and stability in solvents.

Two squaric acid diesters, squaric acid diethyl ester (SADEE) and squaric acid dibutyl ester (SADBE), have been suggested as replacements for 2,4-dinitrochlorobenzene in the treatment of alopecia areata and alopecia totalis. We synthesized these squaric acid diesters and examined them for the presence of carcinogenic contaminants, hexachlorobutadiene and tetrachloro-2-cyclobutene-1-one, by gas chromatography-mass spectrometry (GC-MS). The stability of SADBE to hydrolysis by water in acetone, butanol, isopropanol, and absorbent ointment with and without molecular sieves was examined. The stability of SADEE in ethanol and acetone, with and without molecular sieves, was also studied. Hydrolysis products were detected by their formation of a colored complex with ferric chloride. This complex absorbs in the visual range at 480 nm, thus affording a convenient method for determination of the concentration of free squaric acid in a solution. No contaminants were found by positive or negative ion detection in our GC-MS system. At the end of 3 weeks the extent of hydrolysis was greater in alcohols than in acetone when 10 and 100 molar excess of water were added to the solutions. In the presence of molecular sieves, hydrolysis was reduced even at 100 molar excess of added water in alcohol ar acetone. However, under storage conditions without sieves, acetone solutions and alcohol solutions were equally stable over a period of 2 months. Molecular sieves reduce hydrolysis of squarate esters in the presence of a large molar excess of water, regardless of solvent.

Alopecia↗

Analysis of the thermal stability of type II collagen in various solvents used for reversed-phase high performance chromatography.

The thermal stability of type II collagen in various solvents is shown to depend on the ability of the solvent to form hydrogen bonds. Mixtures of water with 1-propanol, 2-propanol, 1,2-propanediol, tetrahydrofuran and acetonitrile effect the stability of the triple helix differently. The temperature of the triple helix coil transition of type II collagen in 50(v/v)% solvent mixture in 0.1% trifluoroacetic acid ranges from 34 degrees C for 1,2-propanediol to 22.5 degrees C for acetonitrile, compared to 38 degrees C in 0.1% trifluoroacetic acid and 41.5 degrees C at neutral pH. There is no correlation between the dielectric constants of the solvents and the decrease in thermal stability, indicating that electrostatic interactions play only a minor role in the stability of the triple helix. Acetonitrile and tetrahydrofuran destabilize the triple helix more than the solvents containing hydroxyl groups. For reversed-phase high performance chromatography 2-propanol is the solvent of choice, but temperature control is very important, because the interaction of the triple helix with the column matrix leads to an additional destabilization of the triple helix beyond the destabilization effect of the solvent. In acetonitrile, a solvent commonly used for reversed-phase high performance chromatography, the triple helix is completely denatured when eluted from a C18 column at room temperature.

Animals↗

Application of capillary zone electrophoresis to the analysis and to a stability study of cephalosporins.

The applicability of capillary zone electrophoresis (CZE) for the determination of cephalosporin antibiotics has been studied. In the case of the separation conditions optimised for fourteen cephalosporins, the precision of migration times was smaller than 1.3% RSD, and the values of the limit of detection ranged between 0.42 and 1.62 microg/ml. The proposed CZE method was applied to study the stability of cephalosporins in water at different temperatures (+25, +4 and -18 degrees C). It was established that the degradation of most cephalosporins was not higher than 20% at room temperature within 4 h of dissolution of these antibiotics.

Cephalosporins↗

Thermodynamic analysis of the structural stability of the tetrameric oligomerization domain of p53 tumor suppressor.

The structural stability of an amino acid fragment containing the oligomerization domain (residues 303-366) of the tumor suppressor p53 has been studied using high-precision differential scanning calorimetry (DSC) and circular dichroism spectroscopy (CD). Previous NMR solution structural determinations have revealed that the fragment forms a symmetric 29.8 kDa tetramer composed of a dimer of dimers (p53tet) [Lee, W., Harvey, T. S., Yin, Y., Yau, P., Litchfield, D., & Arrowsmith, C. H. (1994) Nature Struct. Biol. 1, 877-890]. Thermal unfolding of the tetramer is reversible and can be described as a two-state transition in which the folded tetramer is converted directly to unfolded monomers (N4<==>4U). According to the DSC and CD data, the population of intermediate species consisting of folded monomers or dimers is insignificant, indicating that isolated dimeric or monomeric structures have a much lower stability than the dimer and do not become populated during thermal denaturation under the conditions studied. The transition temperature of unfolding is found to be highly dependent on protein concentration and to follow the expected behavior for a tetramer that dissociates upon unfolding. Experiments conducted at pH 4.0 in 25 mM sodium acetate at a tetramer concentration of 145.8 microM have a transition temperature (Tm) of 75.3 degrees C while at 0.5 microM the value drops to 39.2 degrees C. The enthalpy change of unfolding at 60 degrees C is 26 kcal (mol of monomer)-1 with a heat capacity change of 387 cal (K.mol of monomer)-1. The stability of p53tet is dependent on pH and salt concentration.(ABSTRACT TRUNCATED AT 250 WORDS)

Calorimetry, Differential Scanning↗

Thermodynamic analysis of the structural stability of the shiga toxin B-subunit.

The conformational stability of Shiga toxin B-subunit (STxB), a pentameric protein from Shigella dysenteriae has been characterized by high sensitivity differential scanning calorimetry and circular dichroism spectroscopy under different solvent conditions. It is shown that the thermal folding/unfolding of STxB is a reversible process involving a highly cooperative transition between folded pentamer and unfolded monomers. The conformational stability of STxB is pH dependent and because of its pentameric nature is also concentration dependent. STxB is maximally stable in the pH range from 5 to 9 (Delta G upon unfolding is close to 13 kcal per mol of monomer at 25 degrees C), and its stability decreases both at lower and at higher pH values. The pH dependence of the Gibbs energy of stabilization between pH 2.5 and 5 is consistent with the change in the ionizable state of an average of four groups per monomer upon unfolding. Structural thermodynamic calculations show that the stabilization of the STxB pentamer is primarily due to the interactions established between monomers rather than intramonomer interactions. The folding of an isolated monomer into the conformation existing in the pentamer is unfavorable and expected to be characterized by a free-energy change upon folding in the order of 2.5 kcal mol(-1) at 25 degrees C. On the average, intersubunit interaction induced upon oligomerization of folded monomers should contribute close to -13.4 kcal per mol of monomer to bring the overall Gibbs energy to the experimentally determined value at this temperature.

Amino Acid Sequence↗

Thermodynamic analysis of the structural stability of phage 434 Cro protein.

Thermodynamic parameters describing the phage 434 Cro protein have been determined by calorimetry and, independently, by far-UV circular dichroism (CD) measurements of isothermal urea denaturations and thermal denaturations at fixed urea concentrations. These equilibrium unfolding transitions are adequately described by the two-state model. The far-UV CD denaturation data yield average temperature-independent values of 0.99 +/- 0.10 kcal mol(-)(1) M(-)(1) for m and 0.98 +/- 0.05 kcal mol(-)(1) K(-)(1) for DeltaC(p)()(,U), the heat capacity change accompanying unfolding. Calorimetric data yield a temperature-independent DeltaC(p)()(,U) of 0.95 +/- 0.30 kcal mol(-)(1) K(-)(1) or a temperature-dependent value of 1.00 +/- 0.10 kcal mol(-)(1) K(-)(1) at 25 degrees C. DeltaC(p)()(,U) and m determined for 434 Cro are in accord with values predicted using known empirical correlations with structure. The free energy of unfolding is pH-dependent, and the protein is completely unfolded at pH 2.0 and 25 degrees C as judged by calorimetry or CD. The stability of 434 Cro is lower than those observed for the structurally similar N-terminal domain of the repressor of phage 434 (R1-69) or of phage lambda (lambda(6)(-)(85)), but is close to the value reported for the putative monomeric lambda Cro. Since a protein's structural stability is important in determining its intracellular stability and turnover, the stability of Cro relative to the repressor could be a key component of the regulatory circuit controlling the levels and, consequently, the functions of the two proteins in vivo.

Bacteriophage lambda↗

Total attenuated reflection infrared analysis of silicon-stabilized tri-calcium phosphate.

Bioceramics based on silicon stabilized tricalcium phosphate [Si-TCP] have been investigated by attenuated total reflection infrared spectroscopy using an experimental preparation that ensures consistent high-quality spectral data. Phase normalized measurements show that changes in OH bands are primarily due to a decrease in the hydroxyapatite content; however, a band at 945 cm(-1) associated with dehydration of the apatite is visible and correlated with silicon doping. Changes in absorption bands with Si content associated with PO(4)(3-) differ for SiO(2) doping levels less than and greater than 0.2 mol of SiO(2)/mol of HA as the amount of Si-TCP phase saturates. Increased resolution allows the study of weak bands linked to Si at 668, 800, 863, and 892 cm(-1) and suggests that the loss of PO(4)(3-) coincides with the development of different silicate groups-SiO(4) at lower doping levels and a new silicon species at higher doping.

Apatites↗