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The tryptophan synthase alpha 2 beta 2 complex: a comparison of the reactivity of amino groups in the alpha and beta 2 subunits and in the complex by differential labeling studies.

The interaction of the alpha and beta 2 subunits of tryptophan synthase of Escherichia coli to form an alpha 2 beta 2 complex has been probed by differential labeling studies. In the first step the separate alpha or beta 2 subunit or the alpha 2 beta 2 complex was labeled by reductive methylation with trace amounts of [3H]HCHO in the presence of NaCNBH3. In the second step the 3H-labeled preparation was fully labeled under denaturing conditions with [14C]HCHO and NaCNBH3. Peptides containing labeled monomethyl or dimethyl amino groups were isolated after thermolytic digestion or after cyanogen bromide treatment. The 3H/14C ratio of each peptide is a measure of the relative reactivity of the amino group or groups in each peptide. The most reactive amino group in the alpha subunit, lysine-109, is strongly shielded from modification in the alpha 2 beta 2 complex. The most reactive amino group in the beta 2 subunit, the amino-terminal threonine, is not shielded from modification in the alpha 2 beta 2 complex.

Amino Acid Sequence↗

A possible in vivo mechanism of intermediate transfer by glycolytic enzyme complexes: steady state fluorescence anisotropy analysis of an enzyme complex formation.

Rate constants of dissociation (k(off)) and association (k(on)) of the bienzyme complex yeast glyceraldehyde-3-phosphate dehydrogenase--yeast alcohol dehydrogenase have been determined in the absence and presence of NAD or NADH by fluorescence anisotropy measurements. We found that dissociation of the complex is considerably slower than catalytic turnover of either of the enzymes (that is k(off) much less than kcat) irrespective of the presence of coenzymes. A perusal of the literature reveals that this relation invariably applies to all systems studied so far. These observations all taken together constitute compelling evidence that direct metabolite transfer in enzyme complexes cannot be satisfactorily described by invoking the dynamic model but requires a model assuming more lasting complexes. This seems to support the case of the temporary-stationary model suggested by one of us. Implications of this conclusion are treated in depth and further evidence is cited under Discussion.

Alcohol Dehydrogenase↗

The effect of amine structure on complexation with lasalocid in model membrane systems. I. Identification of charged complexes in lipid bilayer membranes.

The electrical properties of X-537A (lasalocid) doped lipid bilayer membranes were studied in the presence of a series of nine biogenic amines which contain beta-phenylethylamine as the basic structural unit. The ionophore antibiotic was found to form charged complexes within the membrane during the transport of some of the amines. The dependence of membrane conductance on the concentration of ionophore and amine was studied. The amines are divided into three classes according to the nature of the complexes formed: (1) charged complex involving two ionophores (phenylephrine, metanephrine, and amphetamine); (2) charged complex containing three ionophores (dopamine, norepinephrine and epinephrine); and (3) no charged species formed (p- and m-tyramine and beta-phenylethylamine).

Biogenic Amines↗

Unusual hyperporphyrin spectrum by bis(glutathione dimethyl ester)-hemin complex, a model of cytochrome P-450-thiolate complexes.

A bis(thiolato) complex of iron-porphyrin exhibiting a "split Soret band" with peaks at 374 and 466 nm, classified as a "hyperporphyrin (HP) spectrum", was prepared with Fe(III)protoporphyrin dimethyl ester (FePPIXDME), glutathione dimethyl ester (GSHDME) and tetrabutylammonium hydroxide in acetone solvent. The structure of the complex was characterized by comparing their electronic absorption and electron spin resonance (ESR) spectra with those of thiolate adducts of cytochrome P-450 and their chemical model complexes. Under the same conditions as those for the formation of the HP spectrum, the generation of the free superoxide anions was detectable by ESR spectrometry at 77K. On the basis of the results, the possible reaction mechanism generating the superoxide anions by the bis(GSHDME)-FePPIXDME complex was proposed.

Animals↗

Stable superoxide dismutase (SOD)-mimetic ternary human serum albumin-Cu(II)(3,5-diisopropylsalicylate)2/Cu(II)2(3,5-diisopropylsalicylate)4 complexes in tissue distribution of the binary complex.

Copper(II)2(3,5-diisopropylsalicylate)4 [Cu(II)2(3,5-DIPS)4] has been found to have antiinflammatory, antiulcer, anticancer, anticonvulsant, antimutagenic, antidiabetic, analgesic, and radiation protection and recovery activities. It has also been found to reduce ischemia-reperfusion injury. Because of these activities it was of interest to understand how this compound is transported in the body to affected tissues. Evidence supporting the suggested formation of ternary human serum albumin (HSA)-Cu(II)(3,5-DIPS)2 or Cu(II)2(3,5-DIPS)4 complexes was obtained using ultraviolet spectrophotometry, dialysis, and atomic absorption spectrophotometry or atomic emission spectroscopy. Superoxide dismutase (SOD)-mimetic activity was also determined using the xanthine/xanthine oxidase/cytochrome c system. Ultraviolet spectra of aqueous solution mixtures of Cu(II)2(3,5-DIPS)4 in equilibrium with 2Cu(II)(3,5-DIPS)2 and HSA as well as aqueous solutions of solid Cu(II)2(3,5-DIPS)4 obtained by stirring the solid with an aqueous solution of HSA showed no obvious change in absorbance to indicate ternary complex formation. However, comparison of ultraviolet spectra taken before and after dialysis supports the suggested bonding of Cu(II)(3,5-DIPS)2 or Cu(II)2(3,5-DIPS)4 to HSA. Comparison of copper concentrations before and after dialysis also supports the suggested bonding of Cu(II)(3,5-DIPS)2 or Cu(II)2(3,5-DIPS)4 to HSA. Based upon these data it is plausible that Cu(II)(3,5-DIPS)2 or Cu(II)2(3,5-DIPS)4 form stable ternary complexes with HSA. These stable ternary complexes were also found to have SOD-mimetic activity.

Copper↗

A new class of inhibitory cytochrome P-450 complexes formed during metabolism: a comparison with amphetamine and SKF 525-A type complexes.

During the metabolism of p-chloroaniline, sulfanilamide, 2-methylindoline, and dapsone, complexes with cytochrome P-450 are formed which absorb maximally at 448, 450, 451, and 452 nm, respectively. These complexes are similar to the complexes from amphetamines (456 nm) and SKF 525-A (452 nm) in the conditions for, and rate of their formation, and their inhibition of ethylmorphine N-demethylase activity. Similarly, the formation is mainly a property of phenobarbital-induced cytochrome P-450 and is inhibited by comparable concentrations of metyrapone and 2-O-iodophenoxymethylimidazole. Unlike the complexes from amphetamine and SKF 525-A, those formed from p-chloroaniline, sulfanilamide, 2-methylindoline, and dapsone are unstable in the presence of sodium dithionite.

Amphetamines↗

On the biomechanics of human shoulder complex--I. Kinematics for determination of the shoulder complex sinus.

Effectiveness of the multi-segmented total-human-body models to predict realistically live human response depends heavily on the proper biomechanical description and simulation of the major articulating joints of the body. In these models, the most difficult and the least successful modelling of a joint has been the shoulder complex because of the lack of appropriate biomechanical data as well as the anatomical complexity of the region. This paper in Part I presents various aspects of a research program to collect three-dimensional kinematic data for the shoulder complex. A sonic digitizing technique which utilizes an overdeterminate number of sonic emitters on the moving body segment was used for the kinematics analysis. The numerical results are presented for three male subjects for their voluntary shoulder complex sinuses. The results are given in a locally-defined joint axis system as well as in the torso-fixed coordinate system in the form of globographic representation.

Biomechanical Phenomena↗

On the biomechanics of human shoulder complex--II. Passive resistive properties beyond the shoulder complex sinus.

In multi-segmented total-human-body models the most difficult and the least successful modeling of a major articulating joint has been the shoulder complex because of the lack of appropriate biomechanical data as well as the anatomical complexity of the region. In this paper, quantitative results on the three-dimensional passive resistive properties beyond the voluntary shoulder complex sinus are presented by applying the methodology developed in part I. Constant-restoring-force(moment) contours are established for the shoulder complex and the numerical results are presented for the three subjects tested. In addition, functional expansions are presented for the voluntary and restoring force(moment) contours using spherical coordinates.

Biomechanical Phenomena↗

Production of monoclonal antibodies against inactivated alpha 1-antitrypsin. Cross-reactivity with complexed alpha 1-antitrypsin and application in an assay to determine inactivated and complexed alpha 1-antitrypsin in biological fluids.

15 different monoclonal antibodies (mcAbs) have been raised against the cleaved (inactive) form of the serpin alpha 1-antitrypsin (AT). In initial experiments these mcAbs were analysed for their ability to bind the native and the cleaved form of this inhibitor: eight of the 15 mcAbs appeared to react predominantly with cleaved AT. Additional experiments with mixtures of purified native AT, AT complexed to neutrophilic elastase and inactivated AT revealed that all mAbs that preferentially reacted with inactivated AT also bound to complexed AT. Using two of the mcAbs against inactivated AT a quantitative and sensitive sandwich-type radioimmunoassay was developed to determine levels of proteolytically inactivated AT in biological fluids. With this assay increased levels of inactivated AT were found in synovial fluid from patients with rheumatoid arthritis corresponding to about 2.4% (range 0.3-11%) of total AT. Approximately 10% of this inactivated AT appeared to consist of AT complexed to neutrophil elastase. The mcAbs described here further illustrate the structural resemblance between the complexed and cleaved forms of AT. In addition, these mcAbs appear to be useful tools for the study of AT in human disease.

Animals↗

Refined crystal structures of subtilisin novo in complex with wild-type and two mutant eglins. Comparison with other serine proteinase inhibitor complexes.

The crystal structures of the complexes formed between subtilisin Novo and three inhibitors, eglin c, Arg45-eglin c and Lys53-eglin c have been determined using molecular replacement and difference Fourier techniques and refined at 2.4 A, 2.1 A, and 2.4 A resolution, respectively. The mutants Arg45-eglin c and Lys53-eglin c were constructed by site-directed mutagenesis in order to investigate the inhibitory specificity and stability of eglin c. Arg45-eglin became a potent trypsin inhibitor, in contrast to native eglin, which is an elastase inhibitor. This specificity change was rationalized by comparing the structures of Arg45-eglin and basic pancreatic trypsin inhibitor and their interactions with trypsin. The residue Arg53, which participates in a complex network of hydrogen bonds formed between the core and the binding loop of eglin c, was replaced with the shorter basic amino acid lysine in the mutant Lys53-eglin. Two hydrogen bonds with Thr44, located in the binding loop, can no longer be formed but are partially restored by a water molecule bound in the vicinity of Lys53. Eglin c in complexes with both subtilisin Novo and subtilisin Carlsberg was crystallized in two different space groups. Comparison of the complexes showed a rigid body rotation for the eglin c core of 11.5 degrees with respect to the enzyme, probably caused by different intermolecular contacts in both crystal forms.

Amino Acid Sequence↗

Reevaluation of the presence of the major antigen Ca++ complex in Bernard-Soulier syndrome platelets. Elastase degradation of the complex in Bernard-Soulier syndrome platelet preparations.

Crossed immunoelectrophoresis of human platelet membranes reveals a major antigen GPIIb-GPIIIa-Ca++ complex which is absent to decreased in Glanzmann's thrombasthenia. In our initial report, we also noted its absence in two patients with Bernard-Soulier syndrome associated with the presence of two neoantigens, and postulated that this may be due to endogenous proteolysis. It now appears that this observation is due to exogenous proteolysis from granulocyte-elastase contamination in the platelet membrane preparation. Purified elastase is capable of degrading the major antigen-Ca++ complex, particularly in its dissociated form, to the pattern initially reported for Bernard-Soulier platelets. Of particular interest is the observation that the elastase-degraded dissociated complex can be reassociated in the presence of Ca++. This indicates that the elastase-sensitive antigenic determinants recognized by the rabbit anti-human platelet membrane antibody are not required for the bonds which reassociate the complex.

Blood Coagulation Disorders↗

Complexes of hydroxamates. V: Equilibrium and kinetics of the formation of the binary and ternary complexes involved in the nickel(II)-histidinehydroxamic acid-pyridoxal system.

Equilibrium-based computer models utilizing SUPERQUAD program were made to determine the formation constants of the binary complexes of Ni(II) with histidine-hydroxamic acid (HX) from pH-metric titration data at 25 degrees C and I = 0.15 M NaCl. The species were monomeric in the pH range 3.0-8.0. The mechanism of their complex formation was determined using the stopped flow technique under the same experimental conditions of the equilibrium study. It has been concluded that Ni2+ and NiOH- were the active species in the complex formation reactions. Moreover, the reaction of HX with pyridoxal (PL) was studied in the absence of metal-ions by polarographic and spectrophotometric techniques at pH greater than or equal to 5.0. No rates were observed by using the stopped-flow methods. The formation constants for the binary system (HX-PL) and the ternary system (Ni(II)-HX-PL) were also determined by the same program applied on data obtained from pH metric titration at 25 degrees C and I = 0.15 M NaCl. Ternary complex formation involving PL and the species of the Ni(II)-HX system was also investigated kinetically in the pH range of 6.5-10.5. Several rate steps have been observed which have been interpreted qualitatively in terms of sequence of processes involving the condensation of aldehydic form of PL with amino moiety of HX. A comparison with other pertinent systems is also discussed.

Computer Simulation↗

Solid and solution behavior of sulphonylurea complexes with ions of IIA group metals. Molecular modeling of K[Zn(ClCH4SO2NCONHC3H7)3] and action of zinc-sulphonylurea complexes as hypoglycemic agents.

Complexes of Zn2+ with deprotonated suphonylurea as ligands have been synthesized and characterized. Deprotonated sulphonylurea act as bidentate ligands using one nitrogen and one oxygen atom (the ureido oxygen) to bind Zn2+ forming K[Zn(suphonylurea)3]. Using the MMX89 program, a model for K[Zn(ClC6H4SO2NCONHC3H7)3] compound is proposed. Conductometric and potentiometric studies in methanol, for d10 metal-sulphonylurea complexes, demonstrated that zinc, cadmium and silver complexes are 1:1 electrolytes and are protonated in the range 4.2-5.6 pH. UV-Vis study shows no interaction between metal and protonated sulphonylureas in methanol solutions. At 7.34 pH the form of Zn complexes which act as a hypoglycemic agent is [ZnL3]-. Test for hypoglycemic activity reduced glycemia to a statistically significant degree compared to the corresponding free ligands.

Animals↗

Complexation studies on inositol-phosphates: IV. Ca(II) complexes of myo-inositol 1,4,5-trisphosphate.

The stability constants of the complexes formed between Ca2+ and the myo-inositol 1,4,5-triphosphate (Ins(1,4,5)P3) were determined by potentiometric titration in two different media and temperature conditions (medium 1: I = 0.1 M But4NBr, 25 degrees C; medium 2: I = 0.2 M KCl, 37 degrees C). Mainly because of the presence of potassium the results obtained in these media show large differences in both the nature and the stability of the complexes. In medium 1, MH2L and M2L species are formed along with the ML and MHL species which also exist in medium 2. In addition, the stability of the latter species decreases by more than one log unit in going from medium 1 to medium 2. In an attempt to assess the biological significance of the metal binding to Ins(1,4,5)P3, the results were compared to the Ca2+-ATP complexes that form in the same media conditions. Taking into account the relative stability of the complexes of both systems, it is likely that the action or metabolism of Ins(1,4,5)P3 may be influenced by coordination of either alkali or alkali-earth cations.

Calcium↗

Synthesis and characterization of metal(II)-8-quinolinsulfonamidato (sa-) complexes (M = Co, Ni, Cu, and Zn). Crystal structure of [Zn(sa)2(NH3)]NH3 complex. Carbonic anhydrase inhibitory properties.

A new sulfonamide, 8-quinolinsulfonamide(Hsa), has been prepared and examined as a chelating agent towards metal(II) ions. The spectroscopic properties of the M(II) sulfonamidato complexes has been studied. The inhibitory properties of the ligand and the synthesised complexes were tested. The crystal structure of the [Zn(sa)2(NH3)].NH3 complex was determined by single-crystal X-ray diffraction. Crystal data of the zinc(II) complex: a = 16.217(4)A, b = 8.041(1)A, c = 15.606(4)A, beta = 95.75(1) degrees, Z = 4, and V = 2024.6(7)A3. The refinement of the structure based on 6047 reflections attained to R = 0.049 and Rw = 0.052. The zinc(II) ion is surrounded by four N atoms of two sulfonamidato ligands and one N atom of an ammonia molecule in an trigonal bipyramid arrangement.

Carbonic Anhydrase Inhibitors↗

Light-scattering studies of the alpha-ketoglutarate dehydrogenase complex from escherichia coli. I. Characterization of the self-association of the complex.

The self-association of Escherichia coli alpha-ketoglutarate dehydrogenase complex (KGDC) purified by a column Chromatographic technique, was characterized by light-scattering photometry. The complex adopts a solution conformation somewhat larger than that observed in the electron microscope. The evidence suggests a nonideal indefinite self-association model for KGDC in KCl, phosphate buffer. The KGDC monomer has a molecular charge of about -3 x 10(2) at neutral pH. The self-association is promoted by increasing KCl concentrations, pH (in the range from 6.3 to 7.4) and temperature (from 20 to 30 degrees C). The effects of pH changes suggest a release of protons during the self-association and a minor 'preferential' interaction of phosphate ions. For the association of one monomer to the aggregate at neutral pH and 25 degrees C. DeltaG degrees = -7.8 kcal mol(-1). DeltaH degrees = 24 kcal mol(-1) and DeltaS degrees = 1.1 x 10(2) cal mol(-1) K(-1). These data indicate that hydrophobic interactions drive the association. Thermodynamically, the self-association of KGDC is a complex phenomenon and may serve to stabilize the enzyme complex in solution.

Journal Article↗

Analytical applications of retinoid-cyclodextrin inclusion complexes. 1. Characterization of a retinal-beta-cyclodextrin complex.

In studies in these laboratories on the supramolecular chemistry of the retinoids, it has been recently confirmed that inclusion of these substances within the cavity of cyclodextrins protects their excited states, thus improving their photochemical stability. In the present paper, the isolation is described of a crystalline stable complex between retinal and beta-cyclodextrin, which has been characterized by means of several techniques including atomic force microscopy (AFM). The complex shows distinct spectroscopic differences from both retinal and beta-cyclodextrin. Thus, it absorbs at lambda(max) = 380 nm in water whereas retinal is insoluble; it shows room-temperature luminescence, which retinal does not; finally, it give 1H-NMR and 13C-NMR spectra in d6-DMSO with clear differences in chemical shifts with respect to those of beta-cyclodextrin. Besides these studies in solution, the behaviour of the complex in the solid state has been compared with that of physical mixtures of retinal and beta-cyclodextrin. IR spectroscopy shows clear differences, particularly a shift in the retinal carbonyl absorption (1644-1672 cm-1). AFM studies reveal the existence of aggregates; X-ray diffractometry also supports the formation of a cyclodextrin-retinal complex.

Cyclodextrins↗

Interfacial activity of copper(II) complexes with chelating ligands and individual hydrophobic extractants in model extraction systems I. Study of equilibrium interfacial tension at the hydrocarbon/water interface for systems with copper(II) complexes with chelating ligands and individual hydrophobic extractants.

The equilibrium interfacial tensions at the hydrocarbon/water interfaces, as measured at 20 degrees C for copper(II) complexes with the chelating ligands beta-diketone (1-phenyl-1,3-decanedione), 2-hydroxy-5-t-nonylacetophenone oxime, 2-hydroxy-5-t-octylacetophenone and 2-hydroxy-5-t-octylbenzophenone oxime, as well as for individual extractants, are discussed. The interfacial tension and surface excess isotherms were determined and interpreted. The experimentally obtained curves were successfully matched with the Szyszkowski and Frumkin equations. It was found that the tendencies of interfacial tension to be lower at the hydrocarbon/water interfaces for copper(II) complexes and individual chelating ligands are similar. However, the effectiveness and efficiency of adsorption for chelating extractants and copper(II) complexes are quite different, irrespective of the type of hydrocarbon used as the organic diluent. On the other hand, the type of organic phase affects the interfacial activity of the investigated compounds. Moreover, it was shown that the way of preparing the measurement systems with the copper(II) complex influences the results of its interfacial activity.

Journal Article↗