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E Weiler

Publications and source records attributed to E Weiler.

At least 37 records · Page 2Linked to original sources

A map of VH genes located next to the DH region in the Igh locus of two congenic Igh-recombinant mouse strains.

A new congenic mouse strain (C57BL/6-Igh-Vb-Ca) with a recombinant chromosome 12 is described. It carries the Igh-1a allele, but shows the serological characteristics of C57BL/6 when analyzed for idiotype expression with respect to the antigens dextran and (4-hydroxy-5-iodo-3-nitrophenyl)acetyl (NIP). We analyzed liver DNA from one animal for restriction fragment length polymorphism by hybridization to probes detecting members of nine VH gene families and DH segments, and compared it to DNA from animals carrying the nonrecombinant haplotypes Igha and Ighb, respectively. The breakpoint of recombination maps to the region carrying members of VH gene families VGAM3.8, PC7183 and Q52. The CB8KN strain which according to the serological analysis carries a recombinant Igh locus (Igh-Va-Cb) on BALB/c background was also analyzed. In this strain the breakpoint of recombination again maps to the region carrying members of VH gene families VGAM3.8, PC7183 and Q52. Our results show that the VH genes of families PC7183 and Q52 are interspersed and map to the region next to the DH locus. At least one gene from the VGAM3.8 family also maps to this region in the Igha and the Ighb haplotype.

Animals↗

Regulation of B-cell expression as revealed in the congenic barrier: exerted by B cells, augmented by T cells, and directed toward memory as well as naive donor B lymphocytes.

Donor's memory cell expression is reduced in nonirradiated recipients as compared to irradiated ones. This "barrier" was studied in Igh-congenic BALB/c mice as transfer partners, making use of their allotypic markers, under two aspects: (I) Does the barrier apply to naive B-cells also, not only to memory cells? (II) Does a barrier exist in nude recipient mice also? (I) Naive donor B cells were subject to a barrier in nonirradiated recipients as well as memory cells. (II) Nude recipients showed a barrier toward naive donor cells like euthymic hosts, but toward memory cells this was less stringent. The allotypically marked donor B cells survived and were active in the nonirradiated host. In some situations they even dominated the host's response. The results favor a concept of the barrier as an "intrinsic" interlymphocytic control, exerted by B cells, augmented by T cells, best explained by Jerne's theory of idiotypic interactions.

Animals↗

Effects of lead and natriuretic hormone on kinetics of sodium-potassium-activated adenosine triphosphatase: possible relevance to hypertension.

Inhibition of vascular smooth muscle sodium-potassium-activated adenosine triphosphatase (Na-K-ATPase) has been postulated as a central mechanism in enhancing vascular contractility. In the present study, kinetics of inhibition of Na-K-ATPase by lead, ouabain, and natriuretic hormone (NH) was studied in a purified hog cerebral cortex enzyme preparation. Determination of I50 values for lead, ouabain, and NH revealed that NH is the most potent inhibitor of the enzyme system (0.8 x 10(-6) M ouabain equivalents). Kinetic analyses indicated that lead and NH exhibited different inhibitory mechanisms. The inhibition by lead was noncompetitive with respect to potassium and competitive with respect to sodium and MgATP. Natriuretic hormone was noncompetitive with respect to potassium, uncompetitive with respect to MgATP, and exhibited no inhibitory effect with respect to sodium. Synergism between lead and NH in the inhibition of Na-K-ATPase raises the possibility that lead may be a contributory factor in hypertension via this mechanism.

Animals↗

Isogeneic monoclonal antibodies against anti-alpha(1----3)dextran idiotypes. I. Isotypes, idiotope specificity and representation of idiotopes in antisera from mice of various genetic constitutions.

Eight isogeneic anti-idiotypic hybridomas were raised against BALB/c myeloma protein MOPC 104E and one against J558. Both myelomas react specifically with the alpha(1----3) glucosidic linkage of dextran B1355 fraction S (Dex). Six anti-MOPC 104E proteins were IgG1, one was IgG2b and one IgM. The anti-J558 protein was IgG1. Competitive interactions of the anti-idiotopes and antigen with anti-Dex proteins were measured. Dex itself was effective, but also an alpha(1----3) glucosidic heptasaccharide (N7-CHO). In order to assess the anti-idiotope specificity of hybridoma proteins, three anti-Dex molecules were used: MOPC 104E, J558 and hybridoma protein Hdex14. These differed from each other in VH amino acid positions 54-55, or 100-101, respectively. By their serological reaction pattern our anti-idiotope proteins could be divided into 3 groups: cross-reactive, partially cross-reactive and strictly specific for the immunogen. The latter ones were in the majority, and were called "private", in contrast to the cross-reactive "public" anti-idiotopes. The serological pattern was followed, in general, by the mouse-to-mouse distribution of idiotopes in physiological anti-Dex sera. Public idiotopes were closely correlated in their expression with anti-Dex activity. "Private" idiotopes showed no correlation, and displayed a characteristically high degree of fluctuation from mouse to mouse. Among the different mouse strains that were compared with respect to idiotope expression in anti-Dex sera, two stand out: C57BL-Igha, which carries chromosome 12 of BALB/c, (as selected through allotype) on the C57BL/6 genome, and BALB-Ighb, dex+, a recombinant in chromosome 12 linking the dex+ trait from BALB/c to the CH allotype from C57BL/6. The latter strain expressed significantly more of the private idiotopes than the former. This observation is discussed in terms of the position effect of classical genetics and network concepts.

Amino Acid Sequence↗

Isogeneic monoclonal antibodies against anti-alpha(1----3)dextran idiotypes. II. Neonatally induced idiotope-specific suppression: a comparative analysis.

From a panel of isogeneic monoclonal anti-idiotope antibodies several were used as agents in neonatal idiotope suppression. They differed from one another in isotype, and in idiotope specificity, as described in the preceding report (Eur. J. Immunol. 1987. 17: 255). In their effects they were compared with respect to the following variables: minimum dose required for suppression; duration of suppression, and its relationship to the dose applied neonatally; half-life of anti-idiotope in the immune system of the young mice; specificity of suppression as achieved by a given anti-idiotope: in how far does it affect idiotopes defined by alternate anti-idiotopes? The following results were obtained: the minimum effective dose varied widely between anti-idiotopes. One, belonging to the IgM class, was completely ineffective; others varied from approximately 10 micrograms/mouse, required for complete suppression, to approximately 100 micrograms/mouse. The dose-response characteristic was independent of whether the state of suppression was tested (by immunization against alpha(1----3)dextran) 26 days or 70 days after neonatal anti-idiotope treatment. We take this as an indication that the anti-idiotope effect occurs during an early postnatal period. There appeared to be a relationship between the rate of decay of anti-idiotope in the system and the dose required for complete suppression: the faster the decay, the more is needed initially. The persistence of effective molecules in the animals appears to depend on their isotype (as has been noted by others before): IgM decays fastest, and was ineffective in our experiments; IgG1 stays longest, and the smallest dose was required for suppression. IgG2b was intermediate. The specificity of neonatal suppression was clearly correlated with the serological specificity of the anti-idiotope monoclonal antibodies, as well as with the representation of the corresponding idiotopes in physiological anti-dextran sera, as described in the preceding report: private anti-idiotopes suppressed their counterpart idiotopes only, while the public anti-idiotope suppressed all other idiotopes in concert.

Aging↗

Monoclonal anti-allotype antibody towards BALB/c IgM. Analysis of specificity and site of a V-C crossover in recombinant strain BALB-Igh-Va/Igh-Cb.

Polyclonal IgM obtained by fractionation of a BALB/c serum pool was used as the immunogen for C57BL/6 mice. Draining lymph nodes from selected animals donated cells for fusion with myeloma Sp-2/0. Fifteen hybridomas were productive, and one (RS-3.1) was cloned and the affinity-purified product analyzed for its reactivity pattern by MOPC 104E-enzyme-linked immunosorbent assay inhibition. Among five BALB/c myelomas only TEPC 183 (IgM) was active, not those belonging to other Ig classes. Among normal sera from 8 mouse strains only those of BALB/c, DBA/2J and CBA/J showed inhibition. The recombinant strain BALB-Igh-Va/Igh-Cb did not react, which shows that its C mu stems from parental strain C57BL/6, and that therefore the recombination event had occurred 5' of this gene.

Animals↗

Pattern of Na-K-ATPase inhibitors in plasma and urine of hypertensive patients: a preliminary report.

The pattern of endogenous Na-K-ATPase inhibitors in plasma and urine from patients with essential hypertension and normal controls was established by sequential Amicon ultrafiltration through membranes with molecular weight cut-offs of 50 K daltons, 30 K daltons and 1 K daltons, followed by C18 Sep-Pak cartridge separation of the 1 K filtrate. Significantly increased Na-K-ATPase inhibitory activity in the hypertensive population was found in a high molecular weight (30-50 K daltons) urine fraction, one low molecular weight (less than 1 K daltons) urine fraction and two low molecular weight plasma fractions. Preliminary evidence is presented to suggest that large molecular weight plasma fractions may contain a "masked" Na-K-ATPase inhibitor, in either carrier or precursor form.

Blood Proteins↗

Studies on ouabain-like endogenous natriuretic factors in human urine. Inhibition of Na-K-ATPase and 3H-ouabain binding.

An endogenous inhibitor of sodium transport and of the Na-K-ATPase enzyme was previously detected in the small molecular weight postsalt fraction SIV of serum from saline-loaded rats after gel filtration on Sephadex G-25. In addition, a natriuretic factor present in this fraction of urine from salt-loaded subjects was found to bind to a specific digoxin antibody. Therefore, in the present study the small molecular weight natriuretic and digoxin antibody-binding activities present in the urine of salt-loaded healthy volunteers were purified by reverse-phase chromatography and by immunoprecipitation with the digoxin antibody and were studied for their in vitro effects on Na-K-ATPase derived from hog cerebral cortex. Na-K-ATPase inhibitory activities were found to roughly parallel the natriuretic activities at the various stages of purification. After reverse-phase chromatography, the material of fraction SIV which was bound to the digoxin antibody revealed the highest specific natriuretic activity of 3.95 +/- 0.29 mumol/min X mg injected material and showed strongest inhibition of the enzyme with I50 at a concentration of 0.08 microgram/ml, as compared with 2.4 micrograms/ml of the original postsalt urine fraction SIV. Fraction SIV revealed a noncompetitive inhibition of the enzyme with respect to potassium, but also significantly inhibited 3H-ouabain binding to the enzyme. Thus, the natriuretic substance(s) present in the urine of salt-loaded healthy subjects exhibit a potent inhibitory effect on the Na-K-ATPase enzyme which is similar, but not identical to that of ouabain.

Adult↗

Unidirectional IgG allotype- and isotype-specific suppressor cells in congeneic mice.

By the use of allotypic markers on immunoglobulin molecules of isotypes IgG1 and IgG2a, in transfers of spleen cells between Igh haplotype congeneic partner strains BALB/c (Igha) and CB20 (=BALB/c-Ighb), the expression of donor and recipient lymphocytes could be followed differentially. BALB/c donor's allotype a was produced in nonirradiated CB20 recipients for months. By contrast, CB20 donor's allotype b disappeared in nonirradiated BALB/c recipients shortly after transfer. These BALB/c recipients of CB20 spleen cells ("CB20-primed") developed lymphocytes which were able to suppress the autochthoneous allotype b production of CB20 irradiated or CB20 nu/nu or neonatal F1 (BALB/c female X CB20 male) recipients immediately after transfer. Titers decreased with a half life of about 4 days, resembling that of immunoglobulin molecules. The suppression was restricted to the IgG2a isotype of allotype b. Neither the other isotype IgG1 of allotype b, nor, in the reciprocal transfer experiment, IgG1 or IgG2a of allotype a was affected. Analogous transfers between Igh congeneic partners on a C57B1/6 genomic background revealed the same susceptibility of allotype b-producing cells from C57B1/6 donors toward suppression by C57B1/6-Igha mice as recipients. Allotype suppression, induced by cell transfer, is thus unidirectional in that Igha haplotype mice react against allotype b but not vice versa, and it is isotype-specific, only directed against IgG2a, and not IgG1.

Animals↗

Olfactory deprivation enhances normal spine loss in the olfactory bulb of developing ferrets.

Ferrets show a sensitive phase in their postnatal development during which they can become imprinted to food odors. At the same time the number of granule cell spines in the olfactory bulb reaches a maximum, declining significantly thereafter. In ferrets, exposed continuously to saturated levels of geraniol odor in the cage environment, the normal decline in spine number (occurring between day 60 and 90) is significantly enhanced. No such effects were observed during earlier ontogenetic phases. This late postnatal phase is further associated with a marked and significant decrease in total brain weight. The significance of these events to olfactory imprinting and plasticity in the developing brain is discussed.

Acyclic Monoterpenes↗

Thymus-independent induction of idiotype suppression in newborn mice by syngeneic anti-idiotype antisera.

BALB/c and BALB/c nu/nu mice were shown to express to a variable extent in their response against dextran B1355S (Dex), an idiotype which is present on the Dex-reactive BALB/c myeloma protein MOPC 104E. Injection of minute amounts of syngeneic anti-MOPC 104E idiotype antisera into neonatal euthymic or athymic BALB/c mice suppressed this idiotype in the Dex-specific response of the adult animals. When spleen cells from suppressed BALB/c mice were transferred into irradiated BALB Ighb mice the state of suppression persisted. Data are discussed with respect to possible mechanisms regulating expression of this idiotype.

Animals↗

Nude mice are nonpermissive towards the anti-dextran response of congenic cells.

Nude mice bearing allotype Ighb on a BALB/c genetic background (= CB nu/nu) are nonresponders to alpha (1----3)dextran (Dex), in contrast to BALB/c or BALB/c nu/nu. Although CB nu/nu mice accept transplants of congenic BALB/c, or BALB nu/nu lymphocytes, as shown by the expression of donor allotype Igha, they are not permissive for a primary anti-Dex response by the grafted cells. BALB/c or BALB nu/nu cells, however, give a strong anti-Dex response when grafted onto irradiated CB nu/nu or CB 23 (Ighb) euthymic mice. A thymus-independent, radiation-sensitive suppressor cell population is postulated, which specifically hinders the anti-Dex response, and which is exhibited by strains bearing that portion of chromosome 12 which codes for CH allotype Ighb, not containing the germ-line anti-Dex V/D genes. The suppressive action of Ighb lymphocytes could be demonstrated directly in staggered co-transfer experiments.

Animals↗

Further characterization of the endogenous natriuretic and digoxin-like immunoreacting activities in human urine: effects of changes in sodium intake.

In the present study natriuretic activity and digoxin-like immunoreacting activity (DLIA) were determined in small molecular weight (MW) fractions of urine from healthy subjects during low (35 mmol/day) and high (greater than 400 mmol/day) sodium intake by bioassay and by a radioimmunoassay for digoxin, respectively. After gel filtration of urine on a Sephadex G-25 column the natriuretic activity appeared in the post-salt fraction SIV, whereas DLIA was present in small amounts in the salt fraction SIII and, with consistently higher activity, in the post-salt fraction SIV. Natriuretic activity significantly increased and DLIA decreased in fraction SIV with high sodium intake, but total urinary excretion of DLIA remained unaltered during changes in sodium intake. In addition, anion-exchange and reverse-phase chromatography revealed that DLIA is not specifically related to the natriuretic activity but also reflects unspecific binding of various urine constituents to this digoxin antibody. Although the antibody binds a natriuretic material, this radioimmunoassay is thus unsuitable to determine the endogenous natriuretic activity in urine fractions. Whereas they elute differently on reverse-phase chromatography, amino acid analyses revealed that both the natriuretic factor directly purified from the post-salt fraction SIV and the natriuretic material bound to the digoxin antibody have in common four amino acids at similar molar ratios. The physicochemical properties as evidenced by chromatographic and electrophoretic studies as well as enzymatic inactivation suggest that the low MW natriuretic factor(s) in human urine may be associated with a small peptide(s) of weak acidic nature.

Adult↗

Observations on the "cascade" of Na-K-ATPase inhibitory and digoxin-like immunoreactive material in human urine: possible relevance to essential hypertension.

Previous investigations have demonstrated an increased amount of a sodium pump inhibitor (N.H.) in plasma from humans with essential hypertension and from animals with various forms of experimental hypertension. The present study has employed Sephadex column and C18 reverse phase separation of urines from patients with essential hypertension and normal controls to distinguish "high", "intermediate" and "low" molecular weight forms of N.H., measured through properties of Na-K-ATPase inhibition and digoxin-like immunoreactivity. The major difference between hypertensive and normotensive urines was a highly significant increase in the "intermediate" molecular weight form of N.H., as measured by Na-K-ATPase inhibition. In contrast, digoxin-like immunoreactivity was significantly decreased in urine from hypertensive patients. The results are compatible with an hypothesis that the defect in some forms of essential hypertension may be partial inhibition of enzymatic conversion of intermediate to final form of N.H., with the increased sodium pump inhibition primarily related to the precursor.

Chromatography, Gel↗

Digoxin-like natriuretic activity in the urine of salt loaded healthy subjects.

In previous studies we have demonstrated a natriuretic factor of small molecular weight (less than 1,000 Daltons) in the serum and urine of salt loaded subjects. This factor isolated from salt loaded animals inhibits the Na-K-ATPase enzyme system. In addition, the natriuretic material isolated from plasma of salt-loaded dogs was shown to bind to specific digoxin antibodies. It was therefore suggested that a digitalis-like endogenous natriuretic factor (endoxin) is released in response to saline loading. In the present study we therefore investigated the presence of such an endogenous natriuretic digitalis-like activity in the urine of healthy volunteers during high salt intake. Using Sephadex G-25 for chromatographic separation of urine a material elutes as a single peak in the natriuretic post-salt fraction IV which is specifically bound to digoxin antiserum complex. Mean peak activity amounted to 1.55 +/- 0.48 ng/ml digoxin equivalents. We further purified the natriuretic material by immunoprecipitation with the digoxin antiserum complex. This purification procedure resulted in a more than 10-fold increase in specific natriuretic activity from 2.7 +/- 0.4 to 30.4 +/- 5.8 muEq Na+ x min-1 x mg-1. Thus the digitalis-like natriuretic activity previously observed in the plasma of saline loaded dogs is also present in the urine of healthy subjects during high dietary salt intake. Immunoprecipitation may offer a meaningful tool for further isolation and identification of the natriuretic hormone(s).

Adult↗

Immune response against the T-independent antigen alpha (1 leads to 3) dextran. I. Demonstration of an unexpected IgG response of athymic and germ-free-raised euthymic BALB/c mice.

The primary antibody response in BALB/c mice to the T-independent bacterial antigen dextran B1355S [alpha(1 leads to 3)dextran] (Dex) was studied by means of isoelectric focusing, hemagglutination and immunodiffusion techniques. In response to a single immunization with 10 micrograms Dex all mice produce specific IgM antibodies. In addition, about 30% of conventionally raised BALB/c and BALB/c nu/ + mice, but 95% of germ-free (GF)-raised normal BALB/c and 100% of athymic BALB/c nu/nu mice produce specific IgG class anti-Dex antibodies. These antibodies include all IgG subclasses, carry predominantly the lambda light chain and the cross-reactive J558 idiotype and are specific for the alpha(1 leads to 3)glucosidic linkage. As compared to athymic and GF-raised mice, conventionally raised mice exhibit only a weak IgG response. The pronounced IgG production of GF-raised mice was not altered when adult mice were removed from their GF environment and housed under conventional conditions for several weeks prior to immunization with Dex. Reconstitution with isolated splenic T cells from conventionally raised, unprimed BALB/c mice reduces the remarkable capacity of BALB/c nu/nu mice to produce IgG anti-Dex antibodies. These findings suggest that the reduced capacity of conventionally raised BALB/c mice to mount an IgG response to the T-independent antigen Dex is due to a T cell-mediated suppressive mechanism which is neonatally induced by contact with environmental, i.e. bacterial, antigens.

Animals↗