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[Evaluation of clinical usefulness of a rapid quantitative measurement of D dimer (cross-linked fibrin degradation products)].

In order to evaluate precisely the fibrinolytic states in clinical disorders, plasma levels of D dimer (cross-linked fibrin degradation products) were measured by a newly developed, rapid quantitative method based on the latex photometric immunoassay in patients with hematological malignancies, diabetes mellitus, collagen disease, liver disease, thrombotic disease and disseminated intravascular coagulation (DIC). Plasma levels of D dimer were elevated in a variety of diseases, especially in DIC. Patients with hematological malignancies, liver disease and thrombotic disease also had relatively high levels of D dimer. On the whole, D dimer values were positively correlated with plasmin-alpha 2-plasmin inhibitor complex and thrombin-antithrombin III complex. In addition, plasma D dimer was measured during fibrinolytic therapy with urokinase or tissue-type plasminogen activator; its elevation was detected in some patients. These findings indicate that accelerated fibrinolysis is frequently observed in a variety of diseases, and that a rapid quantitative measurement of D dimer would be valuable for the precise assessment of fibrinolysis in these disease states.

Disseminated Intravascular Coagulation↗

Protection from arabinofuranosylcytosine and n-mustard-induced myelotoxicity using hemoregulatory peptide pGlu-Glu-Asp-Cys-Lys monomer and dimer.

We have previously shown that the synthetic peptide pGlu-Glu-Asp-Cys-Lys (pEEDCK monomer) inhibits the cytostatic drug-induced proliferation of hematopoietic stem cells CFU-S. Keeping CFU-S quiescent by pEEDCK treatment renders them insensitive to cycle-specific cytostatic drugs and leads to reduced toxicity. Here we show that pEEDCK application during repeated (twice) administration of clinically relevant (nonlethal) 1-beta-D-arabinofuranosylcytosine (Ara-C) doses reduced the percentage of CFU-S in S-phase from 60%-70% to 25%-30% and led to a sustained stem cell number in the bone marrow (BM), whereas unprotected mice had lost about 75% of their CFU-S population. Owing to its cysteine content, the pEEDCK monomer is easily oxidized. The resulting dimer (pEEDCK)2 is a potent stimulator of hematopoiesis. As we show, it can be used for postchemotherapy acceleration of hematologic recovery, similar to the use of recombinant hematopoietic growth factors. A single injection of 30 micrograms/kg pEEDCK monomer to mice 2 hours before the second Ara-C injection retarded onset of neutropenia (by 2 to 3 days) and improved recovery after depression. The quantitative degree of neutropenia was not changed. Postchemotherapy (Ara-C administered twice, followed by N-mustard) infusion of the stimulatory (pEEDCK)2 dimer (1.4 micrograms/kg/d) produced a 4.6-fold increase of progenitor levels (6.7 CFU-GM/1,000 BM cells v 1.45 CFU-GM/1,000 in normal mice) 2 days after the end of the cytostatic treatment when CFU-GM were not detectable in unprotected mice. This increase was followed after several days by strongly elevated granulocyte counts, which remained high for approximately 1 week. Up to 75% of the peripheral leukocytes were mature polymorphonuclear leukocytes (PMN) during this phase. Ara-C (twice) and monomer treatment as above followed by dimer infusion resulted in the complete protection of hematopoiesis. Mice treated with the protective pEEDCK monomer plus stimulatory dimer did not develop the leukocyte depression noted in unprotected animals. The inhibitory monomer appears to keep the stem cell population numerically and qualitatively intact, thus providing optimum target cell conditions for the subsequent stimulator (dimer) treatment. Our results show that the hemoregulatory peptide monomer and dimer can be used for improving the hematologic status of mice treated with clinically relevant doses of cytostatic drugs (antimetabolite and alkylating, alone and in combination). Combining both peptides can prevent occurrence of neutropenia completely. Both peptides can be obtained easily by chemical synthesis and are also active on human cells. They are thus highly promising candidates for application as multilevel hemoprotectors in cancer chemotherapy.

Animals↗

Assignment of Sp alpha I/74 hereditary elliptocytosis to the alpha- or beta-chain of spectrin through in vitro dimer reconstitution.

Partial digestion of spectrin dimers in vitro has allowed the definition of domains. For example, the portions of the dimers that are involved in spectrin self-association are represented by the alpha I and the beta I domains. The alpha I domain (80 Kd) is further cleaved into a minor 78 Kd fragment and, more substantially, into a 74 Kd fragment. The intensity of the latter, which we expressed as the 74:(80 + 78 + 74) ratio, or the 74:alpha I ratio, is variable depending on the experimental conditions, eg, in fine, on the conformation of the alpha I domain. A number of cases of hereditary elliptocytosis (HE) are associated with an increase of the 74:alpha I ratio, also referred to as the Sp alpha I/74 abnormality. Several lines of evidence have suggested that the causal mutations may lie in the alpha- or the beta-chain, a point of importance before one undertakes studies at the gene level. In order to address this question, we reconstituted spectrin dimers in vitro, combining alpha- and beta-chains of various origins, and then carried out partial digestion and assayed the Sp alpha I/74 abnormality. The patterns obtained with reconstituted dimers were nearly identical to those of native dimers. We applied the assay to three spectrin variants that cause Sp alpha I/74 HE: (1) a variant that we previously designated spectrin Nice and whose beta-chain lacks a 4 Kd fragment in its C-terminal region; and two distinct variants that we found in two unrelated white families and that we provisionally designated spectrin Lyon and spectrin Culoz. The Sp alpha I/74 abnormality appeared in all kinds of dimers that harbored the beta-chain of spectrin Nice, or the alpha-chain of spectrin Lyon or spectrin Culoz, respectively. Therefore, we confirmed that spectrin Nice is a (alpha I/74) beta-variant, and established that both spectrin Lyon and spectrin Culoz are (alpha I/74) alpha-variants. The present assay may be extended to any spectrin variant displaying the Sp alpha I/74 abnormality.

Adolescent↗

Dissociation of dimers of human hemoglobins A and F into monomers.

Dissociation of alpha beta and alpha gamma dimers of human hemoglobins (Hb) A and F into monomers was studied by alpha chain exchange (Shaeffer, J. R., McDonald, M. J., Turci, S. M., Dinda, D. M., and Bunn, H. F. (1984) J. Biol. Chem. 259, 14544-14547). Unlabeled carbonmonoxy-Hb A was incubated with trace amounts of preparatively purified, native, 3H-alpha subunits in 10 mM sodium phosphate, pH 7.0, at 25 degrees C. At appropriate times, free alpha monomers were separated from Hb A tetramers by anion exchange high performance liquid chromatography. Transfer of radioactivity from the alpha chain pool into Hb A was measured, yielding a first order dimer dissociation rate constant, k2 = (3.2 +/- 0.3) X 10(-3) h-1. The Arrhenius plot of k2 was linear between 7 and 37 degrees C, yielding an enthalpy of activation of 23 kcal/alpha beta dimer. As the chloride concentration was raised from 0 to 0.2 M, the dissociation rate increased 3-fold; with higher salt concentrations, however, the rate gradually returned to baseline. This rate was not altered by raising the pH from 6.5 to 7.2, but as pH was further raised to 8.4, kappa 2 increased about 3-fold. Hb F, which has an increased stability at alkaline pH, dissociated into alpha and gamma monomers 3 times more slowly than Hb A. Moreover, the dimer-monomer dissociation of Hb F was characterized by a significantly reduced pH dependence. These results demonstrate that both alpha beta and alpha gamma dimers of Hb A and Hb F dissociate reversibly into monomers under physiologic conditions. The differential pH dependence for dimer dissociation between Hb A and Hb F suggests that specific amino acid replacement at the alpha 1 gamma 1 interface confers increased resistance to alkaline denaturation.

Chlorides↗

Analysis of disulfide-linked homo- and hetero-peptide dimers with a strong cation-exchange sulfoethyl aspartamide column.

A strong cation-exchange sulfoethyl aspartamide column was used to analyze and purify disulfide-linked homo-/hetero-peptide dimers. Monomeric peptides elute from this column in a monotonic fashion according to their net nominal positive charge at pH 3.0. Disulfide-linked peptide dimers are expected to possess an increased net positive charge at pH 3.0 and therefore should elute later and be well resolved from their monomeric constituents. Five distinct synthetic peptides (7 to 14 residues in length) ranging in net nominal charge at pH 3.0 from +1 to +4, with cysteine located at the N-terminus, C-terminus, or at an internal position, were used to produce disulfide-linked homo/hetero-peptide dimers as follows: The peptide was first reacted with 5,5'-dithiobis (2-nitrobenzoic acid) to form the mixed-disulfide, peptide:2-nitro-5-thiobenzoic acid adduct which is easily monitored at 325 nm. Then, the second cysteine-containing peptide was added and the desired disulfide-linked homo-/hetero-peptide dimer was produced via a thiol-disulfide interchange reaction. The entire reaction mixture was subsequently chromatographed on the sulfoethyl aspartamide column to isolate the disulfide-bonded species and also, to identify other reaction products. In addition, the same reaction mixture was analyzed by standard C18 reverse-phase chromatography to compare the capabilities of these two distinct chromatographic modes to identify disulfide-linked homo-/hetero- peptide dimers. It is shown that each chromatographic system successfully resolved all five homo-peptide dimers from their respective monomer counterparts, with separation being slightly better on the sulfoethyl aspartamide column.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

The regulatory subunit monomer of cAMP-dependent protein kinase retains the salient kinetic properties of the native dimeric subunit.

Monomeric regulatory subunit (R) fragments of type II cAMP-dependent protein kinase were compared with the parent dimeric R. The monomeric fragments were generated by either endogenous proteolysis of rabbit muscle R or by trypsin treatment of bovine heart R in the holoenzyme form. During isolation of pure R from rabbit muscle, carboxyl-terminal fragments of Mr = 42,000 (42 K) and Mr = 37,000 by denaturing gels are generated by endogenous proteolysis. Although the autophosphorylation site is retained, the 42 K is not dimeric (as is its native 56 K precursor) but, in contrast to the monomeric 37 K product, actively reassociates with purified catalytic subunit (C). Several lines of evidence indicate a type II R origin of the 42 K. N-terminal sequence analysis of the 42 K shows some homology with known bovine RI, RII, and cGMP-dependent protein kinase sequences. Both cyclic nucleotide-binding sites (two/42 K or 37 K) and the site selectivity of cAMP analogs are retained in the monomeric fragments. When purified bovine heart holoenzyme, which contains a dimeric Mr = 56,000 R (denaturing gel analysis) and two C subunits, is treated with trypsin followed by separation procedures, the product is a fully recovered active enzyme with an unaltered ratio of cAMP binding to catalytic activity. From Mr considerations, the product is a dimer containing one intact C and a proteolyzed R of Mr = 48,000 on denaturing gels. This dimeric enzyme is not significantly different from the parent tetramer in cAMP concentration dependence (Hill constant = 1.63), [3H]cAMP dissociation behavior (both intrasubunit cAMP-binding sites are present), stimulation of [3H]cIMP binding by site-selective cAMP analogs, and synergism between two analogs in kinase activation. The data indicate that 1) proteolytic cleavage of the native R dimer can cause monomerization without appreciably affecting the inhibition of C and 2) essentially all of the cAMP binding cooperativity is an intrasubunit interaction.

Animals↗

Cystamine-enkephalin dimer. Syntheses and biological activities of enkephalin analogs containing cystamine and cysteamine.

A cystamine-enkephalin dimer, containing two molecules of [D-Ala2, Leu5] enkephalin cross-linked at the COOH-terminal leucine residue with cystamine, (NH2-CH2-CH2-S-)2, has been synthesized in order to examine directly the dimerization effect of an enkephalin molecule on the opiate receptor interactions. In a comparison of potencies against [3H]-[D-Ala2,D-Leu5] enkephalin (3H-DADLE) and [3H]-[D-Ala2,MePhe4,Gly-ol5] enkephalin (3H-DAGO) as delta and mu tracers, respectively, enkephalin dimer showed a very high affinity, especially for the delta opiate receptors. Dimer was almost threefold more potent than DADLE, which is one of the most utilized delta ligand to date. When the binding affinity of cystamine-dimer was compared with that of its reduced thiol-monomer, namely [D-Ala2,Leu5,cysteamine6] enkephalin, the increment in affinity was four to fivefold for both delta and mu receptors. The results strongly indicate that the dimeric enkephalin is more potent presumably due to the simultaneous interaction with the two binding sites of the opiate receptors.

Animals↗

Fibrinolytic response and fibrin fragment D-dimer levels in patients with deep vein thrombosis.

An enzyme-linked immunosorbent assay for fragment D-dimer was developed with the use of two monoclonal antibodies directed against specific non-overlapping antigenic determinants, present in fragment D-dimer of crosslinked fibrin but not in fragment D of non crosslinked fibrin or of fibrinogen. The lower limit of sensitivity of the assay when applied to human plasma, is 25 ng/ml. Concentration of fragment D-dimer in plasma from healthy individuals was 177 +/- 83 ng/ml (mean +/- SD). In plasma of 11 out of 12 patients with phlebographically confirmed acute deep vein thrombosis, fragment D-dimer levels were significantly increased. Fragment D-dimer was not increased in 9 out of 10 patients with recurrent idiopathic deep vein thrombosis during clinically silent episodes. Total t-PA antigen and free t-PA antigen concentrations were measured using previously developed ELISAs. Nine of the 12 patients with acute deep vein thrombosis showed a significant increase of total t-PA antigen (from 8.6 +/- 6.9 ng/ml to 21 +/- 16 ng/ml) after venous occlusion but in 3 of these free t-PA remained undetectable. Five of the 10 patients with recurrent deep vein thrombosis responded to venous occlusion with a significant increase of total t-PA antigen (from 6.7 +/- 3.2 ng/ml to 14 +/- 7.9 ng/ml) but, in all patients, free t-PA antigen remained undetectable. It is concluded that the combined assays of total and free t-PA antigen and of fragment D-dimer may be useful for the evaluation of the dynamics of the fibrinolytic system in physiological and pathological conditions.

Aged↗

Native mitochondrial creatine kinase forms octameric structures. I. Isolation of two interconvertible mitochondrial creatine kinase forms, dimeric and octameric mitochondrial creatine kinase: characterization, localization, and structure-function relationships.

The mitochondrial isoform of creatine kinase (Mi-CK, EC 2.7.3.2) purified to homogeneity from chicken cardiac muscle by the mild and efficient technique described in this article was greater than or equal to 99.5% pure and consisted of greater than or equal to 95% of a distinct, octameric Mi-CK protein species, with a Mr of 364,000 +/- 30,000 and an apparent subunit Mr of 42,000. The remaining 5% were dimeric Mi-CK with an apparent Mr of 86,000 +/- 8,000. Octamerization was not due to covalent linkages or intermolecular disulfide bonding. Upon dilution into buffers of low ionic strength and alkaline pH, octameric Mi-CK slowly dissociated in a time-dependent manner (weeks-months) into dimeric Mi-CK. However, the time scale of dimerization was reduced to minutes by the addition to diluted Mi-CK octamers of a mixture of Mg2+, ADP, creatine and nitrate known to induce a transition-state analogue complex (Milner-White, E.J., and Watts, D. C. (1971) Biochem. J. 122, 727-740). The conversion was fully reversible, and octamers were reformed by simple concentrations of Mi-CK dimer solutions to greater than or equal to 1 mg/ml at near neutral pH and physiological salt concentrations in the absence of adenine nucleotide. After separation of the two Mi-CK species by gel filtration, electron microscopic analysis revealed uniform square-shaped particles with a central negative-stain-filled cavity in the octamer fractions and "banana-shaped" structures in the dimer fractions. Mi-CK was localized inside the mitochondria by immunogold labeling with polyclonal antibodies. A dynamic model of the octamer-dimer equilibrium of Mi-CK and the preferential association of the octameric Mi-CK form with the inner mitochondrial membrane is discussed in the context of regulation of Mi-CK activity, mitochondrial respiration, and the CP shuttle.

Animals↗

DNA Polymerase III holoenzyme of Escherichia coli. IV. The holoenzyme is an asymmetric dimer with twin active sites.

Pol III, a subassembly of Escherichia coli DNA polymerase III holoenzyme lacking only the auxiliary beta subunit, was purified to homogeneity by an improved procedure. This assembly consists of nine different polypeptides, likely in a 1:1 stoichiometry: a catalytic core (pol III) of alpha (132 kDa), epsilon (27 kDa), and theta (10 kDa), and six auxiliary subunits: tau (71 kDa), gamma (52 kDa), delta (35 kDa), delta' (33 kDa), chi (15 kDa), and psi (12 kDa). The assembly behaves on gel filtration as a particle of about 800 kDa, indicating a content of two each of the subunits. A new procedure for purifying the core yielded a novel dimeric form which may provide the foundation for the dimeric nature of the more complex pol III and holoenzyme forms. Pol III readily dissociates into several subassemblies including pol III', likely a dimeric core with two tau subunits. The holoenzyme, purified by a similar procedure with ATP and Mg2+ present throughout, retained the beta subunit (37 kDa) as well as all the subunits present in pol III; the mass of the holoenzyme was estimated to be 900 kDa. The isolated initiation complex of holoenzyme with a primed template DNA and the elongation complex (formed in the presence of three deoxynucleoside triphosphates) had the same composition and stoichiometry as observed for pol III with two beta dimers in addition. An initiation complex assembled from a mixture of monomeric pol III core, gamma 2 delta delta' chi psi complex (gamma complex), beta, and tau retained the core, one beta dimer, and two tau subunits but was deficient in the gamma complex. When tau was omitted from the assembly mixture, the initiation complex contained one or two gamma complexes instead of the tau subunit. Based on these data, pol III holoenzyme is judged to be an asymmetric dimeric particle with twin pol III core active sites and two different sets of auxiliary units designed to achieve essentially concurrent replication of both leading and lagging strand templates.

Binding Sites↗

Fragment D-dimer levels: an objective marker of vaso-occlusive crisis and other complications of sickle cell disease.

Although abnormalities in coagulation tests have been reported during vaso-occlusive crises in patients with sickle cell disease, objective, readily performed laboratory tests that document the occurrence of this complication have not been available. We examined the relationship between fibrin D-dimer levels and the occurrence of complications in patients with sickle cell disease, using a commercially available latex bead agglutination assay. The patients were either asymptomatic, hospitalized for vaso-occlusive crisis, or had other complications of sickle cell disease including leg ulcers, chronic cholecystitis, aseptic necrosis, joint pain and infection. Fifty-seven percent of 187 samples on 96 patients had elevated levels of fibrin D-dimer. Ninety percent of 75 samples from asymptomatic patients were negative for fibrin D-dimer (less than 1 microgram/ml) but 97% of 29 samples from patients with vaso-occlusive crisis and 85% of 83 samples from patients with other complications of sickle cell disease were positive. In serial studies, worsening or amelioration in clinical complications were reflected in increasing or decreasing levels of fibrin D-dimer, respectively. The molecular species of fibrin identified by the latex agglutination test was shown to be fragment D-dimer by successive immunoprecipitation and protein blot analysis. We conclude that the complications of sickle cell disease, including vaso-occlusive crisis, result in the production of fibrin D-dimer, and its detection may be used as a marker for the presence of the complication.

Anemia, Sickle Cell↗

Role of secretory component, a secreted glycoprotein, in the specific uptake of IgA dimer by epithelial cells.

The binding of secretory component (SC) to epithelial cells and its role in the specific uptake of immunoglobulin A (IgA) dimer has been studied in rabbit mammary gland and liver. SC, Mr approximately 80,000, secreted by epithelial cells of the mammary gland was found associated with the cell surface of mammary cells in intact tissue. Dispersed mammary cells and plasma membrane-enriched fractions obtained from mammary glands of midpregnant rabbits bound 125I-labeled SC in a saturable time- and temperature-dependent process. The association rate followed a second order reversible reaction (k+1 approximately equal to 2.7 x 10(6) M-1 min-1 at 4 degrees C) and equilibrium was reached in about 4 h at 4 degrees C. The dissociation rate for membranes was first order (k-1 approximately equal to 1.7 x 10(-2) min-1 at 4 degrees C), whereas displacement from cells was incomplete. The apparent affinity constant was similar for membranes and cells (Ka approximately equal to 5 x 10(8) M-1) with one class of binding sites. The number of binding sites varied from one animal to another (260 to 7,000 sites/mammary cell) in relation to endogenous occupancy by SC, which was assessed by immunocytochemistry and complement-mediated cytotoxicity. Rabbit liver and heart membranes did not bind SC, and serum proteins present in rabbit milk failed to interact with mammary cells or membranes. Mammary membranes or cells and liver membranes bound 125I-labeled IgA dimer in a saturable, reversible time- and temperature-dependent process. Association and dissociation rate constants at 4 degrees C (k+1 approximately equal to 5 x 10(6) M-1 min-1 and k-1 approximately equal to 5 x 10(-3) min-1, respectively) and the apparent affinity constant (Ka approximately equal to 10(9) M-1) were similar for liver and mammary membranes; these parameters differed, however, from those reported for free SC-IgA dimer interaction. The binding capacity of membranes for IgA dimer was directly related to the amount of free SC bound to membranes. Interaction of IgA dimer with mammary or liver membranes or cells was abrogated by excess of free SC and was prevented by preincubation of membranes or cells with Fab antibody fragments directed against SC. These data indicate that the first step in the translocation process of polymeric immunoglobulins across epithelia consists of binding of SC to the surface of epithelial cells which in turn acts as a receptor for the specific uptake of IgA dimer.

Animals↗

The self-association of human apolipoprotein A-IV. Evidence for an in vivo circulating dimeric form.

We have investigated the self-association properties of human apolipoprotein A-IV using several complementary physical techniques. Sedimentation equilibrium analysis demonstrated that human apolipoprotein A-IV formed oligomeric species in aqueous solution at physiologic pH. Computer analysis established that the best model of self-association is a monomer-dimer-tetramer scheme, with an unusually large monomer-dimer association constant of 2.9 X 10(5) liters/mol. Fluorescence spectroscopy and electrophoretic analysis demonstrated that the rate of monomer-oligomer interconversion is sufficiently slow that a stable population of dimeric protein exists in solution, even at low total protein concentrations, and that the extent of dimerization is minimally influenced by pH. Moreover, these techniques established that the dissociation of oligomeric forms and the unfolding of the monomeric form are discrete and sequential events. In experiments where apolipoprotein A-IV was incubated with human high density lipoproteins, fractionated by gradient gel electrophoresis, and localized by immunoblotting, dimer formation occurred, but very little binding to lipoproteins was observed. Immunoblots of human serum fractionated on acrylamide gradient gels and isopycnic density gradients demonstrated an apolipoprotein A-IV band of size and density consistent with a circulating dimeric form, unassociated with lipid. We conclude that human apolipoprotein A-IV undergoes high affinity self-association in aqueous solutions, and that such self-association likely occurs in vivo. Self-association may thus be important in determining the biologic behavior of human apolipoprotein A-IV by influencing both the kinetics and distribution of its association with plasma lipoproteins.

Apolipoproteins A↗

Dimerization of human complement proteins C3 and C4 in dilute lauryl sulfate buffer after reaction with methylamine.

In the presence of methylamine and dilute lauryl sulfate (pH 8.0), the human C3 and C4 complement proteins dimerize almost completely. Under these conditions, the related complement protein C5 does not show any tendency to form dimers. This is shown by x-ray and neutron scattering at 9 degrees C and 0.15 M ionic strength. The radii of gyration of the C3 and C4 dimers are very similar, 7.7 and 7.4 nm, and the cross-sectional radii of gyration are the same, 3.4 nm. The scattering curves of the C3 and C4 dimers as well as their Fourier transforms, the p(r)-curves, can be explained by scattering from a model consisting of an elongated elliptic cylinder with semiaxes 6.5 and 2.1 nm and length of 23 nm. This elongated elliptic cylinder model is consistent with the elliptic cylinder model of C4 (Osterberg, R., Eggertsen, G., Lundwall, A., and Sjöquist, J. (1984) Int. J. Biol. Macromol. 6, 195-198) provided that the protein molecules dimerize via their cross-sectional surfaces. Also, the model is consistent with the model of the related protein, alpha 2-macroglobulin, where the four subunits are supposed to form pairwise dimers of an elliptic cylindrical form (Osterberg, R., and Malmensten, B. (1984) Eur. J. Biochem. 143, 541-544).

Buffers↗

Translocation of dimeric IgA through neoplastic colon cells in vitro.

We studied the translocation of dimeric IgA across epithelium, using neoplastic human colon cells in culture as a source of epithelial cells, and immunoelectronmicroscopy with peroxidase-labeled antigens and antibodies. The cells had some of the ultrastructural characteristics of normal, mature epithelial cells, i.e., polarity, desmosomal junctions, and secretory component on their basal and lateral plasma membranes. Horseradish peroxidase-labeled dimeric IgA, exposed to the cells at 0 degrees C, bound selectively to secretory component on the cell surfaces. At 37 degrees C, the bound dimeric IgA was taken into the cells by endocytosis and transported apically through the cytoplasm in vesicles. After 30 min, IgA was discharged across the apical surface. Neither colchicine (10(-4) M) nor cytochalasin B (10(-5) M) interfered with binding or endocytosis of dimeric IgA, but colchicine inhibited intracellular transport of the IgA-containing vesicles. These experiments demonstrated that dimeric IgA can be transported through living intestinal epithelial cells in vitro. The transport includes 1) specific binding of IgA dimers to secretory component on plasma membranes, 2) endocytosis of IgA in vesicles, 3) transcytoplasmic transport of the IgA-containing vesicles by a process involving microtubules, and 4) discharge of IgA at the apical surfaces.

Binding Sites, Antibody↗

[Spatial organization of the histone dimer H2A-H2B in solutions of different ionic strengths].

The spatial organization of histone dimer H2A-H2B in a solution of 0.1-1.0 M NaCl is characterized by the inclusion of 38% of radicals in the composition of alpha-helical segments, fluorescence quantum yield of 0.085 +/- 0.003, long-wave shift of absorbtion (lambda max = = 278.4 +/- 0.5 nm) and fluorescence spectra (lambda max = 304.4 +/- 0.3 nm) as compared to respective spectra of free tyrosine. The changing of position lambda max of tyrosine fluorescence of histones during denaturation has been shown. The degree of alpha-helicity of histone dimer H2A-H2B, fluorescence quantum yield and the number of tyrosyls perturbed by ethylene glycol do not change within the range of 0.1-1.0 M NaCl pH 7.6. At the same time dimer denaturation takes place at greater urea concentrations as the ionic strength of the medium increases. The quenching of tyrosine fluorescence of histone dimer H2A-H2B was performed using ions I-, Cs+ and acrylamide. It has been shown that, at a concentration of NaCl 0.5 M, dimer compactization takes place, as well as the screening of some part of tyrosyls for the quenching effect of Cs+. Our experiments made it possible to identify three zones in the composition of histone dimer H2A-H2B and determine the number (ni) and fluorescence quantum yields (qi) of tyrosyls included in the following specific zones:zone I--n1 = 2, q1 = 0.136, zone II--n2 = 3, q2 = 0.08, zone III--n3 = 3, q3 = 0.055.

Animals↗

Spectrin tetramer-dimer equilibrium in hereditary elliptocytosis.

The proportion of spectrin tetramers and dimers in 4 degrees C low ionic strength extracts of red cell membranes of 9 subjects with 4 different variants of hereditary elliptocytosis (HE) and 2 subjects with hereditary spherocytosis (HS) was determined by nondenaturing gel electrophoresis. Such extracts reflect the native oligomeric state of spectrin in the red cell membrane. In two hemolytic HE variants (an unclassified adult with increased thermal sensitivity of red cells and an infant also showing increased thermal sensitivity of red cells), the proportion of dimers was increased, whereas the remaining subjects had values within the control range. Conversion of spectrin tetramers to dimers under isotonic conditions at 37 degrees C, or spectrin dimers to tetramers at 30 degrees C, resulted in a high proportion of dimers in the above two HE variants, as well as in a third variant with probable mild HE and sporadic hemolysis. The mother of the infant with elliptocytosis and increased thermal sensitivity of red cells, although hematologically normal, had an increased proportion of dimers in 4 degrees C low ionic strength extracts of her red cell membranes. These findings reflect an underlying primary or secondary abnormality of spectrin in these subjects that affects the association state of spectrin in the red cell membrane. Their exact relationship to the pathogenesis of the elliptical shape of the red cell, or to the presence of hemolysis, is at present unclear.

Adult↗

Influence of metal ions on prothrombin self-association. Demonstration of dimer formation by intermolecular cross-linking with dithiobis(succinimidylpropionate).

Interaction of certain metal ions with prothrombin and prothrombin fragment 1 has been shown to result in conformational change(s). Self-association of prothrombin and prothrombin fragment 1 in the presence of divalent cations has been reported. The present study has made use of a covalent cross-linking reagent, dithiobis(succinimidylpropionate), to study the self-association of prothrombin in the presence of divalent cations. In the presence of certain divalent cations, prothrombin dimer is the product of such cross-linking. Optimal dimerization of bovine prothrombin requires preincubation with calcium ions prior to the addition of cross-linking reagent. Calcium ions are also required for dimerization after this preincubation period. A similar time dependence is not seen with human prothrombin. The dimerization of bovine prothrombin is also supported by strontium and gadolinium to an extent comparable to that of calcium and to a lesser extent by barium or manganese. Magnesium ions do not support dimerization. The results suggest that certain divalent cations either induce or stabilize a conformation of prothrombin which can self-associate to form dimers. The results further suggest that divalent cations are also necessary for the actual cross-linking process subsequent to this conformational change.

Amino Acid Sequence↗