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[In situ localization of mRNA with T-T dimerized DNA probes].

When a particular antigen is immunohistochemically localized at a given site, it is difficult to differentiate whether the antigen was produced at the site or immigrated to the site from elsewhere. If the antigen, e.g. hormone, is synthesized at the site, it indicates that the site is the effector cell and if the antigen is not synthesized at the site, it indicates that the site is the affector cell. Hence this differentiation is essential in order to establish physiological function of the antigen. One way to illustrate in situ synthesis of the antigen is to demonstrate the presence of messenger RNA (mRNA) which encodes the amino acid sequence of the antigen. To localize a particular mRNA at the lavel of cells, recently in situ hybridization techniques are utilized. As a non-radioactive marker for in situ hybridization. We introduced and utilize thymine-thymine dimers. When DNA is irradiated with ultraviolet light, thymine-thymine (T-T) dimer is formed between adjacent thymines. Since the T-T dimer is a well recognized antigen, after hybridization of T-T dimerized DNA with cellular mRNA, the sites of T-T dimer was recognized by routine immunohistochemistry. When the T-T dimerized probe is used, the resolution is high and intracellular sites of the target may be recognized both at the light and electron microscopic levels, and the sensitivity may be elevated by immunohistochemical and enzyme-histochemical procedural modifications.

Animals↗

Photoreactivation of ultraviolet radiation-induced pyrimidine dimers in neonatal BALB/c mouse skin.

The numbers of ultraviolet light (UV)-induced pyrimidine dimers in the DNA of neonatal BALB/c mouse skin were measured by assessing the sensitivity of the DNA to Micrococcus luteus UV endonuclease. Irradiation of neonatal BALB/c mice with FS40 sunlamps caused a dose-dependent induction of endonuclease-sensitive sites (pyrimidine dimers) in DNA extracted from back skin. Exposure of these UV-irradiated neonatal mice to photoreactivating (PR) light ("cool white" fluorescent lamp and incandescent lamp) caused a reduction in the number of pyrimidine dimers in the DNA, as revealed by a shift in low-molecular-weight DNA to high-molecular-weight DNA. In contrast, DNA profiles of the skin of either UV-irradiated mice or UV-irradiated mice kept in the dark for the same duration as those exposed to PR light did not show a loss of UV-induced endonuclease-sensitive sites. Furthermore, reversing the order of treatment, i.e., administering PR light first and then UV, did not produce a reduction in pyrimidine dimers. These results demonstrate that PR or UV-induced pyrimidine dimers occurs in neonatal BALB/c mouse skin. The optimal wavelength range for in vivo PR appears to be in the visible region of the spectrum (greater than 400 nm). Although dimer formation could be detected in both dermis and epidermis, PR occurred only in the dermis. Furthermore, the PR phenomenon could not be detected in the skin of adult mice from the same inbred strain.

Age Factors↗

Metabolic processing of cyclobutyl pyrimidine dimers and (6-4) photoproducts in UV-treated human cells. Evidence for distinct excision-repair pathways.

A new nuclease digestion assay was developed to elucidate the human excision-repair system operating on cyclobutyl pyrimidine dimers and (6-4) photoproducts. We analyzed lesions that accumulated in excised oligonucleotide fragments during incubation of UV-treated cultured fibroblasts. (6-4) photoproducts were removed intact, whereas excised cyclobutyl dimers often contained ruptured interpyrimidine phosphodiester bonds, raising the possibility that the intradimer backbone-cleavage reaction may help promote the bypass of unexcised dimers by the DNA replication or RNA transcription machinery. Cell strains representing eight different inherited forms of the cancer-prone skin disease xeroderma pigmentosum (XP) were generally found to exhibit characteristic abilities to excise the two classes of photolesions, ranging from total deficiency in groups A and G to normal proficiency in the variant. The capacity of any given XP group to act on one class of photoproducts in no way predicted its ability to act on the other. Finally, in those XP strains displaying significant levels of dimer removal, the ratio of intact-versus-modified dimers was normal, implying that rupture of the intradimer backbone linkage occurs independently of subsequent excision-repair reactions. Our data indicate that cyclobutyl dimers and (6-4) photoproducts are processed by distinct nucleotide-excision-repair pathways in human cells.

DNA↗

Heat-shock treatment selectively affects induction and repair of cyclobutane pyrimidine dimers in transcriptionally active genes in ultraviolet-irradiated human fibroblasts.

The effect of hyperthermia on induction and repair of UV-radiation-induced cyclobutane pyrimidine dimers was investigated in the genome overall and in transcriptionally active and inactive genes in confluent human fibroblasts. Hyperthermia treatment (30 min, 45 degrees C) of human fibroblasts resulted in an increase in the protein content of isolated nuclei (protein aggregation) similar to that observed for HeLa S3 cells. The faster rate of disaggregation of nuclear proteins and the higher survival rate of heated fibroblasts in comparison with those for HeLa cells provide further evidence for a possible role of protein aggregation in heat-induced cell killing. Determination of the frequencies of cyclobutane pyrimidine dimers in the genome overall and in restriction fragments of the active adenosine deaminase (ADA) gene and inactive 754 locus revealed that hyperthermia selectively inhibits the induction of cyclobutane pyrimidine dimers in transcriptionally active DNA. Removal of cyclobutane pyrimidine dimers from the ADA gene was strongly delayed during the first 8 h in 10 J/m2 UV-irradiated fibroblasts. Such inhibition of repair of cyclobutane pyrimidine dimers was not observed for the 754 gene, indicating that inhibition of repair by hyperthermia is generally not mediated by inactivation of repair enzymes. It is proposed that the inhibition of induction and repair of cyclobutane pyrimidine dimers in active genes by hyperthermia is related to the heat-induced aggregation of proteins with the nuclear matrix, proximal to which active genes are located. Our results are consistent with a functional compartmentalization of DNA repair at the nuclear matrix.

DNA Repair↗

Structural requirements for assembly of dimeric IgA probed by site-directed mutagenesis of J chain and a cysteine residue of the alpha-chain CH2 domain.

The structural features of J chain required for interaction with IgA in IgA dimer assembly were investigated by coexpression of wild-type and mutant forms of J chain with IgA1 in CHO cells. With wild-type J chain, a mixture of J chain-containing dimers and monomers was secreted. Substitution of Cys14 of J chain with Ser resulted in expression of only monomer IgA covalently associated with J chain. Similarly, mutation of Cys68 to Ser also resulted in expression predominantly of a monomer IgA-J chain species. These results suggest that Cys14 and Cys68 play critical roles in formation of J chain-containing IgA dimers, with each forming a disulfide bridge to an IgA monomer. Substitution of Asn48 with Ala, to prevent attachment of N-linked carbohydrate to J chain, also resulted in markedly reduced dimer assembly, suggesting a requirement for the sugar moiety in J chain function. We also mutated Cys311 on the C alpha2 domain of the IgA heavy chain to Ser. When coexpressed with wild-type J chain, this mutant was still capable of forming dimers, indicating that this residue was not involved in dimerization. Taken together, our results are consistent with an arrangement in which IgA monomers are linked end-to-end with J chain interposed.

Animals↗

Temporal synthesis of band 3 oligomers during terminal maturation of mouse erythroblasts. Dimers and tetramers exist in the membrane as preformed stable species.

Band 3, the anion transport protein of the erythrocyte membrane, exists in the membrane as a mixture of dimers (B3D) and tetramers (B3T). The dimers are not linked to the skeleton and constitute the free mobile band 3 fraction. The tetramers are linked to the skeleton by their interaction with ankyrin. In this report we have examined the temporal synthesis and assembly of band 3 oligomers into the plasma membrane during red cell maturation. The oligomeric state of newly synthesized band 3 in early and late erythroblasts was analyzed by size-exclusion high-pressure liquid chromatography of band 3 extracts derived by mild extraction of plasma membranes with the nonionic detergent C12E8 (octaethylene glycol n-dodecyl monoether). This analysis revealed that at the early erythroblast stage, the newly synthesized band 3 is present predominantly as tetramers, whereas at the late stages of erythroid maturation, it is present exclusively as dimers. To examine whether the dimers and tetramers exist in the membrane as preformed stable species or whether they are interconvertible, the fate of band 3 species synthesized during erythroblast maturation was examined by pulse-chase analysis. We showed that the newly synthesized band 3 dimers and tetramers are stable and that there is no interconversion between these species in erythroblast membranes. Pulse-chase analysis followed by cellular fractionation showed that, in early erythroblasts, the newly synthesized band 3 tetramers are initially present in the microsomal fraction and later incorporated stably into the plasma membrane fraction. In contrast, in late erythroblasts the newly synthesized band 3 dimers move rapidly to the plasma membrane fraction but then recycle between the plasma membrane and microsomal fractions. Fluorescence photobleaching recovery studies showed that significant fractions of B3T and B3D are laterally mobile in early and late erythroblast plasma membranes, respectively, suggesting that many B3T-ankyrin complexes are unattached to the membrane skeleton in early erythroblasts and that the membrane skeleton has yet to become tightly organized in late erythroblasts. We postulate that in early erythroblasts, band 3 tetramers are transported through microsomes and stably incorporated into the plasma membrane. However, when ankyrin synthesis is downregulated in late erythroblasts, it appears that B3D are rapidly transported to the plasma membrane but then recycled between the plasma membrane and microsomal compartments. These observations may suggest novel roles for membrane skeletal proteins in stabilizing integral membrane protein oligomers at the plasma membrane and in regulating the endocytosis of such proteins.

Animals↗

Activated granulocytes oxidize the endogenous stem cell inhibitory peptide pGlu-Glu-Asp-Cys-Lys (pEEDCK) to the stimulatory dimer: a redox-mediated mechanism for demand-induced hematopoietic regulation.

We have previously shown that the pentapeptide pGlu-Glu-Asp-Cys-Lys (pEEDCK), which is associated with mature leukocytes, maintains pluripotent hematopoietic stem cells (colony-forming units-spleen [CFU-S]) in a quiescent state under physiological conditions. It is also known that its oxidation product, the disulfide-bonded homodimer (pEEDCK)2, is a growth factor for CFU-S in vivo. In this paper we report on the combined actions of the monomer and dimer in inducing rapid changes in stem cell proliferation in vivo. A single injection of 20 microg/kg synthetic dimer into mice stimulated CFU-S proliferation (60% in S-phase after 9-11 hours) and population expansion. Stimulated CFU-S traversed one cell cycle, with an estimated S-phase time of 5.5 hours, and then become quiescent again. Proliferation of CFU-S in response to dimer showed no sensitivity to the inhibitory effects of monomeric pEEDCK, whereas CFU-S proliferation did display sensitivity to inhibition after injection of cytosine arabinoside or doxorubicin. Products of mature granulocytes undergoing an oxidative burst reaction rapidly oxidized monomeric pEEDCK to the dimer. The suppressive effect of endogenous pEEDCK monomer on stem cell proliferation was thus converted within minutes to a stimulatory signal (dimer). Because many in vivo situations (e.g., infection) requiring increased hematopoiesis involve granulocyte and macrophage activation, the formation of dimer from endogenous pEEDCK monomer may provide an almost instantaneous demand-induced emergency signal for increasing stem cell proliferation and blood cell production.

Animals↗

A latex D-dimer reliably excludes venous thromboembolism.

BACKGROUND: D-Dimer, a cross-linked fibrin degradation product, has a high sensitivity in patients with suspected venous thrombosis. Traditional latex D-dimer assays, however, have not been sufficiently sensitive to exclude venous thromboembolism. METHODS: To determine the clinical utility of a latex D-dimer assay (MDA D-Dimer; Organon Teknika Corporation, Durham, NC) in patients with suspected venous thromboembolism, we conducted a retrospective cohort study involving 595 unselected patients at 4 tertiary care hospitals. Patients had blood drawn for performance of the D-dimer assay and underwent objective testing for venous thromboembolism. Pretest probability was determined using validated models in 571 patients. Patients were classified as venous thromboembolism positive or negative according to results of objective tests and 3-month follow-up. The sensitivities, specificities, predictive values, and negative likelihood ratios of the assay were calculated for all patients and for subgroups of patients with known cancer or a low, moderate, or high pretest probability of venous thromboembolism. RESULTS: The prevalence of venous thromboembolism was 19.0% (113/595). Of those who had a pretest probability assessment, 35.9% had a low pretest probability, 49.7% a moderate pretest probability, and 14.4% a high pretest probability. Using a discriminant value of 0.50 microg fibrinogen equivalent units per milliliter, the assay showed an overall sensitivity of 96%, a negative predictive value of 98%, a specificity of 45%, and a negative likelihood ratio of 0.09. In patients with a low or moderate pretest probability, the sensitivity, negative predictive value, and negative likelihood ratio were 97%, 99%, and 0.07, respectively. CONCLUSIONS: The MDA D-Dimer assay is the first latex agglutination assay with sufficient sensitivity to be clinically useful in the exclusion of venous thromboembolism. A negative result has the potential to be used as the sole test to exclude venous thromboembolism in patients with a low or moderate pretest probability of disease.

Female↗

Use of a clinical decision rule in combination with D-dimer concentration in diagnostic workup of patients with suspected pulmonary embolism: a prospective management study.

BACKGROUND: We designed a diagnostic strategy, based on clinical probability and D-dimer concentration, to select patients who were unlikely to have pulmonary embolism (PE), before further diagnostic workup was performed. The utility and safety of this strategy were evaluated in a prospective management study. METHODS: Consecutive patients with suspected PE had D-dimer testing and clinical probability assessment with a clinical decision rule. Patients with a low probability and a normal D-dimer concentration (<500 ng/mL) were considered not to have PE, and further diagnostic testing and anticoagulant therapy were withheld. In patients with a low probability and elevated D-dimer level or with a moderate or high probability, bilateral compression ultrasonography of the legs was performed. If deep venous thrombosis was detected, venous thromboembolism was diagnosed. If compression ultrasonography was normal, pulmonary angiography was performed. All patients were followed up for 3 months. RESULTS: Of the 234 consecutive patients, 26% had the combination of a low probability and normal D-dimer level. During the follow-up period, none of these patients died and 3 patients had recurrent complaints of PE. In these 3 patients, PE was excluded by objective testing. The 3-month thromboembolic risk was therefore 0% (95% confidence interval, 0%-6%). The prevalence of PE in the entire population was 22%. CONCLUSIONS: The combination of a low clinical probability and a normal D-dimer concentration appears to be a safe method to exclude PE, with a high clinical utility, and is readily accepted by clinicians.

Adult↗

Second-trimester dimeric inhibin-A in Down's syndrome screening.

Initial studies of immunoreactive inhibin using a commercial assay have shown levels to be increased in three second-trimester series of maternal samples from Down's syndrome-affected pregnancies. This assay detected non-specifically all forms of circulating inhibin, dimeric and free alpha subunits, whether fully or partially processed. More recently, a new specific assay for dimeric inhibin-A has shown elevated results in both a first-trimester and a second-trimester series of cases. In order to assess the value of dimeric inhibin-A as a potential marker in the second trimester, we have analysed 157 Down's syndrome cases and used 367 unaffected cases across the gestational range 14-20 weeks to establish control medians and population parameters. In our series, the median MOM in Down's cases was 1.77, significantly higher than in the controls. At a 5 per cent false-positive rate, dimeric inhibin-A alone identified 37 per cent of cases. When used in conjunction with maternal age and other marker combinations, mathematical modelling showed detection rates rising from 48 per cent (inhibin-A plus age) to 61 per cent (inhibin-A, free beta hCG, age) and 68 per cent (inhibin-A, AFP, free beta hCG, age). Our data suggest that dimeric inhibin-A may have greater potential earlier in gestation when median levels at 14-16 weeks are 1.92 compared with 1.46 at 17-23 weeks. Dimeric inhibin-A may be a valuable addition to screening protocols, particularly in early gestations.

Biomarkers↗

Electrospray mass spectrometric characterization of a corticosteroid dimer.

18-Hydroxy-11-deoxycorticosterone forms a non-polar dimer under acidic conditions. The dimer was purified by high performance liquid chromatography and further analysed by electrospray mass spectrometry. The purified dimer has a molecular weight of 656 Da with two free ketone groups and no free hydroxyl functions. The mass spectrometric data suggest a 20,21,20',21'-anhydro dimer structure for the dimer. Microbore high performance liquid chromatography/electrospray mass spectrometry of rat adrenal extracts indicated that both 18-OH-B and 18-OH-DOC were present, although no 18-OH-DOC dimer was detected.

Adrenal Cortex Hormones↗

D-dimer and CA 125 levels in patients with ovarian cancer during antineoplastic therapy. Prognostic significance for the success of anti-cancer treatment.

In patients with ovarian cancer before they receive chemotherapy, the level of fibrin degradation products (D-dimer), is correlated with the tumor load. In this study, the evolution of D-dimer was compared in patients receiving antineoplastic therapy with the evolution of the disease. The patients could be classified into three groups. In Group 1 (nine patients), both plasma CA 125 (a tumor-associated antigen) and D-dimer remained elevated; the prognosis was always poor. In Group 2 (eight patients), CA 125 and D-dimer decreased simultaneously, complete remission was observed in two patients, and significant residual tumor was observed in the others. In Group 3 (nine patients), despite an important decrease in CA 125, D-dimer remained elevated during therapy. In this group, complete remission was observed in six patients, and three others showed a large decrease in their tumor load. The combination of a decrease in CA 125 levels with a continuous enhanced level of D-dimer during chemotherapy identified a subgroup of patients with a favorable prognosis.

Antigens, Tumor-Associated, Carbohydrate↗

Effects of structural factors on the pi-dimerization and/or disproportionation of the cation radical of extended TTF containing thiophene-based pi-conjugated spacers.

The electrochemical and chemical oxidation of extended TTF 4 and 5 are analysed by cyclic voltammetry, Visible/NIR and ESR spectroscopies, and the X-ray structures of the new salts 5 x BF(4)(CH(2)Cl(2)) and 4 x ClO(4)(THF)(1/2) are presented. The effects of structural factors on the pi-dimerization or the disproportionation reaction of the cation radical are shown. The oxidation of compound 4 presents the successive formation of stable cation radical and dication species both in dichloromethane (DCM) and in a CH(3)CN/THF mixture. In contrast, for compound 5, the stability of the oxidation states strongly depends on the nature of the solvent. In DCM, the oxidation of 5 proceeds by two close one-electron transfers while in CH(3)CN/THF the dication is directly formed via a two-electron process. The X-ray structures of the two salts reveal the formation of pi-dimers of cation radical. While the dimer (5(2))(2+) is due mainly to pi-pi interactions between the conjugating spacer, the multiplication of the sulfur atoms in compound 4 contributes to stabilize the dimer by the combined effects of S-S and pi-pi interactions. Visible/NIR and ESR experiments confirm the higher tendency of 4(+)(.) to dimerize with the occurrence of dimer and monomer in solution, while for 5(+)(.) only the monomer is detected in DCM. On the other hand, by dissolution of 5 x BF(4)(CH(2)Cl(2)) in CH(3)CN, only the neutral and the dicationic states of compounds 5 are observed owing to the disproportionation reaction.

Journal Article↗

Deprotonation and dimerization of maleimide in the triplet state: a laser flash photolysis study with optical and conductometric detection.

The photochemistry of maleimide in aqueous solution is governed by the coexistence of up to three different triplet states, the keto triplet (lambda(max)=250, 330 nm, lambda(min)=290 nm, pK(a)=4.4+/-0.1, tau=5 micros), the deprotonated or enolate triplet (lambda(max)=360, 260 nm, lambda(min)=320 nm, shoulder at 370-380 nm) and a dimer triplet. This biradical is formed by the addition of the keto triplet to the double bond of a ground state maleimide in competition with electron transfer, (k( (3)MI+MI)=2.6 x 10(9) dm(3) mol(-1) s(-1)). Its spectrum is identical to that of the maleimide H-adduct radical (lambda(max)=370-380 (broad), 255 nm (narrow), lambda(min)=290 nm) and its lifetime is 110 ns. While protolysis is confined to maleimide and aqueous solutions, the dimer triplet is also found in acetonitrile. Dimer triplet formation is also observed with N-ethylmaleimide. Time-resolved conductometry and buffer experiments were used to characterise excited state protolysis. Multi-wavelength "global analysis" of the time profiles allowed the separation of the transient spectra and study of the kinetics of the monomer and dimer triplets. The cyclobutane dimer yield (determined by GC) is independent of maleimide concentration. This indicates that the dimer triplet does not contribute significantly to the initiation of free-radical polymerisation. Time-dependent Hartree-Fock calculations agree with the experimental data and further confirm the proposed mechanisms.

Journal Article↗

Determinants of ELISA D-dimer sensitivity for unstable angina pectoris as defined by coronary catheterization.

Unstable angina pectoris is associated with elevated D-dimer levels. However, the operating characteristics (sensitivity, specificity, positive and negative predictive value) of the D-dimer assay for the diagnosis of coronary artery disease (CAD) are unknown. Using a prospective, observational design, we collected blood from 54 patients with unstable angina pectoris at admission and assayed for ELISA D-dimer levels. The sensitivity, specificity, and negative and positive prediction values for angiographically determined coronary artery disease were calculated at multiple discriminate levels. All patients underwent coronary catheterization. A statistically significant correlation was noted between ELISA D-dimer levels and age, male sex, hypertension, use of beta-blocker, fibrinogen levels and catheterization findings. No correlation was noted between ELISA D-dimer levels and degree of the coronary artery disease. Best results were provided at a discriminate level of 270 ng/ml, with sensitivity 70%, negative predictive value 72%, and overall accuracy 67%. All discriminate levels, however, provided values too low for diagnosis. In conclusion, ELISA D-dimer assay is a non-sensitive, non-specific test for coronary artery disease as defined by coronary catheterization. However, the assay adds information regarding the severity of disease in patients presenting with acute coronary syndrome.

Angina, Unstable↗

Role of ELISA D-dimer test in patients with unstable angina pectoris presenting at the emergency department with a normal electrocardiogram.

Patients with unstable angina pectoris and acute myocardial infarction have higher than normal D-dimer levels. The aim of the study was to determine the value of the D-dimer test in patients with unstable angina pectoris and a normal electrocardiogram on presentation at the emergency department. The study sample included 81 patients who met these criteria. Blood samples collected at admission were subjected to ELISA D-dimer. Findings were correlated with coronary risk factors, use of cardiac medications, blood levels of acute phase reactants (fibrinogen and C-reactive protein), cardiac enzymes levels, length of hospital stay, and catheterization findings. ELISA D-dimer levels were statistically significantly correlated with cardiac risk factors, namely male sex, older age, smoking, and hypertension (r = 0.25, P = 0.02; r = 0.43, P = 0.0001; r = 0.26, P = 0.03; r = 0.35, P = 0.002, respectively), in addition to use of cardiac medications (beta blockers, aspirin, nitrates), levels of acute phase reactants, length of stay, and catheterization findings. On multivariate analysis, only D-dimer level, age, and sex were predictors of length of stay (P = 0.018). The study suggests that D-dimer levels at admission to the emergency department may serve as an additional tool to predict the magnitude of unstable angina pectoris in patients with a normal electrocardiogram.

Aged↗

Fibrinogen/fibrin degradation products and D-dimer in clinical practice: interpretation of discrepant results.

In clinical practice, occasionally some patients show dissociated values of fibrinogen/fibrin degradation products (FDP) and D-dimer (cross-linked fibrin degradation products). In an attempt to assess the frequency, clinical backgrounds, and hemostatic states of these cases, FDP and D-dimer were simultaneously measured together with other hemostatic parameters in 371 samples from patients with various diseases. As a whole, FDP were elevated in parallel with the progress of activation of blood coagulation and fibrinolysis. However, in patients with elevated FDP and/or D-dimer, 11.5% of samples showed relatively lower D-dimer values than those expected from FDP levels, and these were regarded as an apparently dissociated group. In the dissociated group, activation of coagulation and fibrinolysis occurred to a lesser extent than others. Analysis of these samples suggested that the possible reasons for the dissociation between FDP and D-dimer values were accelerated fibrinogenolysis with or without secondary fibrinolysis, accelerated fibrinogenolysis by non-plasmic proteinases, elevated soluble fibrin, and possibly false-positive FDP levels due to unclottable fibrinogen remaining in the serum samples. In practice, simultaneous measurements of FDP and D-dimer are useful for more accurate estimation of hyperfibrinolytic states.

Disease↗

Antigen-independent binding of IgG dimers to C 1 q as studied by sedimentation equilibrium, complement fixation and electron microscopy.

Rabbit anti-SII pneumococcal polysaccharide IgG antibody was cross-linked by dithiobis (succinimidyl propionate). The IgG dimers were visualized by electronmicroscopy and resembled two Y-shaped structures connected in random orientations. The three arms of the Y's were of equal length. The six globular domains of the IgG protomers could be seen, but the Fab arms and Fc stems could not be distinguished from each other. Electron microscopy revealed that the dimers were bound to the globular heads of C 1 q. From the dependence of thee weight average molecular weight on dimer concentration, and equilibrium constant of about 10(6) M(-1) was derived for the binding of dimers to C 1 q. The number of IgG dimers which could be accommodated at a single C 1 q molecule was derived to be three. The data do not allow a clear distinction between noncooperative and cooperative binding. The binding equilibrium was independent of whether the IgG dimers were liganded with an SII nonasaccharide hapten or not. The results are at variance with an allosteric mechanism of the action of antigen in C1 activation. They lend support to the association hypothesis of complement activation. The data suggest that clusters of about six IgG molecules, connected by a multivalent antigen or arranged at the cell surface, are recognized by C 1 q with a binding constant of about 10(10) M(-1).

Animals↗