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R Mandel

Publications and source records attributed to R Mandel.

At least 19 recordsLinked to original sources

Cell surface sulfhydryls are required for the cytotoxicity of diphtheria toxin but not of ricin in Chinese hamster ovary cells.

A previous study on cleavage of disulfide bonds in endocytosed model compounds had shown that an initial phase of cleavage was totally inhibited by membrane-impermeant sulfhydryl inhibitors and thus was mediated by cell surface sulfhydryls (Feener, E. P., Shen, W.-C., and Ryser, H. J.-P. (1990) J. Biol. Chem. 265, 18780-18785). This paper uses the same inhibitors (5,5'-dithiobis(2-nitrobenzoic acid) and p-chloromercuriphenylsulfonic acid) to examine the role of surface sulfhydryls in the cytotoxicity of diphtheria toxin (DT). Since the interchain disulfide of endocytosed DT must be cleaved prior to translocation of chain A from endosomes to cytoplasm, it was postulated that surface sulfhydryls might mediate the cleavage of that disulfide bond as well. Both sulfhydryl blockers did indeed markedly inhibit DT cytotoxicity. This effect was not due to inactivation of unbound DT, inhibition of receptor-mediated endocytosis, or impairment of acidification of endosomes. We conclude that cell surface sulfhydryls susceptible to blockage by 5,5'-dithiobis(2-nitro-benzoic acid) and p-chloromercuriphenylsulfonic acid are required for the cytotoxicity of DT and, most likely, for the reductive cleavage of DT's interchain disulfides. Ricin cytotoxicity was not decreased; this is consistent with the view that ricin reaches the cytoplasm from a late endocytic structure and with the finding that endocytosed disulfides are also cleaved in a cell fraction containing elements of the Golgi apparatus (Feener, E. P., Shen, W.-C., and Ryser, H. J.-P. (1990) J. Biol. Chem. 265, 18780-18785).

4-Chloromercuribenzenesulfonate

Isolation of variants of Chinese hamster ovary cells with abnormally low levels of GSH: decreased ability to cleave endocytosed disulfide bonds.

Mutants of Chinese hamster ovary cells were selected for resistance to a 3 hour exposure to 4 microgram/ml N-methyl-N'-nitro-N-nitrosoguanidine and tested for glutathione (GSH) levels. Six of eight clones that survived the initial treatment had reduced GSH levels ranging from 26 to 61% of wild-type values. These eight cell lines were tested for their susceptibility to a drug conjugate in which methotrexate (MTX) is disulfide-linked to poly(D-lysine) (MTX-SS-PDL) to test their capacity to cleave the endocytosed disulfide bond and release free MTX from this otherwise undegradable drug conjugate. We had shown that wild-type cells were killed by approximately 1 x 10(-7) M MTX given as free drug, as MTX-poly(L-lysine) or as MTX-SS-PDL, but were not affected by MTX-poly(D-lysine). All six lines with abnormally low levels of GSH were resistant to MTX-SS-PDL. The variants with the lowest levels of GSH (MNR-5 and MNR-10) were tested further and showed near-normal sensitivity to MTX and MTX poly(L-lysine). As expected, both lines were hypersensitive to melphalan. They were, however, normally sensitive to diphtheria toxin and ricin, indicating that some cleavage of the interchain disulfides in these protein toxins occurs even when cellular GSH is abnormally low. The lesser GSH requirement for toxin activation may be due to their extraordinary potency.

Animals

Tetrahydroaminoacridine improves the spatial acquisition deficit produced by nucleus basalis lesions in rats.

We administered tetrahydroaminoacridine (THA), a cholinesterase inhibitor, to rats with bilateral nucleus basalis magnocellularis lesions and measured their performance in a spatial learning task. The subjects, 34 male Fischer-344 rats, received bilateral excitotoxic NBM lesions; 10 other rats served as unlesioned controls. Two weeks later the animals were tested in a circular water maze for time and distance swum to find a submerged platform. We tested three different doses (5.0, 2.5, and 1.25 mg/kg) of daily subcutaneous THA against a lesioned control group receiving saline and a fifth group of untreated unlesioned controls. The saline-treated lesioned group showed a significant impairment of acquisition. The 1.25 mg/kg group performed significantly better than the lesioned controls with respect to latency. Analysis of swim speed data showed slowing in the 2.5 and 5.0 mg/kg groups. Analysis of the distance swum to find the platform, an untimed task that corrects for the difference in swim speeds, showed statistically significant improvement in all three treated groups. Additionally, spatial memory for the platform location was improved by two of the three doses of THA tested. Passive avoidance retention was not impaired by our lesion. All lesioned groups had comparable reductions of cortical choline acetyltransferase. Our data show significantly improved spatial learning with THA. These data provide an additional rationale for further clinical testing of THA and other centrally active cholinergic agents in diseases with cholinergic loss.

Acetylcholinesterase

Methotrexate-poly(lysine) as a selective agent for mutants of Chinese hamster ovary cells defective in endocytosis.

Methotrexate (MTX) covalently linked to poly(L-lysine) [poly(Lys)] enters cells by endocytosis, is degraded in lysosomes and, upon liberation of small molecular methotrexate, is cytocidal to Chinese hamster cells in culture. This drug conjugate was used to select mutants resistant to MTX-poly(Lys), which were examined for defects in endocytosis. Two mutants resistant to MYX-poly(Lys) and sensitive to free MTX, MPL 3-4 and MPL 2-5, internalized the conjugate in normal fashion, but had a decreased ability to degrade it to small molecular drug. The magnitude of this defect in the two mutants correlated with their level of resistance. In addition, both mutants were cross resistant to diphtheria toxin and modeccin and hypersensitive to ricin. While MPL 3-4 internalized MTX-poly(Lys) and inulin normally, it showed decreased endocytosis via the mannose-6-phosphate receptor and decreased uptake of 125I-alpha-2 macroglobulin. Acidification of subcellular fractions was measured using the partitioning of acridine orange. In MPL 3-4, the ATP-driven acidification of the endosome-containing cell fractions was slightly decreased (80% of controls), while acidification of the heavy lysosome-containing fraction was normal. Complementation analysis using hybrids of MPL 3-4 x MPL 2-5 indicated that the mutations occurred at the same gene, but were expressed with different severity. This genotype is identical to that of the End 2 mutants described by Roff et al. (1986). Thus, surprisingly, mutants with identical genotypes were isolated independently by totally different selection procedures.

Animals

Stable variant of LM fibroblast defective in fluid-phase but competent in receptor-mediated endocytosis.

The F-40 cell line, a stable variant of LM fibroblasts selected for its resistance to polyethylene glycol (PEG)-induced fusion (Roos and Davidson: Somatic Cell and Molecular Genetics 6:381-391, 1980), has a decreased capacity to internalize fluid-phase markers and nonspecifically surface-bound macromolecules. It is not defective in exocytosis since, after a short sucrose pulse, it releases the same fraction of ingested sucrose into the medium as does the parental line. F40 cells have a normal capacity to carry out receptor-mediated endocytosis, as tested with 125I-alpha-2 macroglobulin (alpha-2 MG) and 125I-transferrin (Tf), and to recycle Tf receptor to the cell surface. These data demonstrate that receptor-mediated and non-receptor mediated endocytosis are distinct processes that can be altered independently. Of the many membrane fusions occurring in the course of endocytosis, the only one that appears associated with the defect in cell fusion characteristic of F40 cells is the formation of primary endocytotic vesicles engaged in non-receptor-mediated internalizations.

Animals

Nucleus basalis and thalamic control of neocortical activity in the freely moving rat.

EEG and single-unit techniques have been used to study the EEG correlates of cellular firing in the neocortex, n. reticularis (RT) and "specific" thalamic nuclei, and the cholinergic forebrain area (nucleus basalis, NB). Neuronal firing was related to the ongoing behavior of the rat. In addition, using a 16-channel neocortical recording/mapping system, we studied the effects of ibotenic acid lesion of NB, RT, and other thalamic nuclei on the patterns and spatial distribution of neocortical electrical activity. The majority of neurons in neocortex, NB, and RT increased their firing rates during walking, as compared to during immobility, with concurrent decrease of delta power in the neocortical EEG. During immobility, high-voltage spindles (HVS; greater than 1 mV) were occasionally recorded from the neocortex. Depth profiles of HVS and slow delta waves were different in the neocortex. Neocortical cells decreased their discharge frequency during the positive portion of delta waves recorded in layers V and VI. All cells in the neocortex and specific thalamic nuclei fired rhythmically and phase-locked to the spike component of HVS. RT neurons showed an opposite phase relationship and fired mainly during the wave component of HVS. Half of the NB neurons also showed phasic modulation with HVS. Circumscribed lesion of RT and extensive damage of other thalamic regions, including the intralaminar nuclei, suppressed HVS but had no effect on the neocortical EEG correlates of behavior. In sharp contrast, damage to the NB resulted in a dramatic increase of slow delta waves on the side of the lesion, mimicking the effect of scopolamine administration. We suggest that the NB plays a key role in neocortical arousal by directly activating the neocortex and by suppressing the rhythm generation in the RT-thalamocortical circuitry. We further suggest that the NB system may serve as a structural basis for the concept of the generalized ascending activation of Moruzzi and Magoun (1949).

Animals

Marked synergism of dimethylnitrosamine carcinogenesis in rats exposed to cadmium.

The combined carcinogenic effect of cadmium and dimethylnitrosamine (DMN) was examined in male Wistar rats, to test whether the previously observed synergism in mutagenicity between cadmium and 2 N-nitroso compounds would be paralleled by a synergism in carcinogenicity. In experiment 1, 50 five-month old rats received 18 mg DMN/kg i.p. followed by cadmium i.m. in two injections totaling either 1.5 or 3.0 mg Cd2+/kg. In experiment 2, 30 weanling rats received five i.m. doses totaling 6 mg Cd2+/kg followed by 18 mg DMN/kg. After 52 weeks, the incidence of renal tubular neoplasms was significantly increased above additivity in both experiments (P = 0.0005 to 0.017). Experiment 1 also showed a synergistic increase in the incidence of neoplastic (P = 0.024) and preneoplastic (P less than 0.01) microscopic liver lesions, of tumors of organs other than liver and kidney (P less than 0.01), of malignant versus benign tumors (P = 0.038), and of multiple versus single tumors (P = 0.0019). In experiment 2, the incidence of DMN-induced hepatocellular adenomas was significantly lower than additivity, suggesting an antagonistic, protective effect of cadmium pretreatment. The overall incidence of tumors of any type was 17.5 versus 67.7% in control (one agent or none) versus test animals. Malignant tumors included carcinomas, sarcomas, and lymphomas, involving nine different sites. Cadmium appears to enhance the initiation of carcinogenesis induced by DMN. Both cadmium and nitrosamines are known environmental contaminants present in air, food, water supplies, and tobacco smoke.

Animals

Mechanisms of synergism in the mutagenicity of cadmium and N-methyl-N-nitrosourea in Salmonella typhimurium: the effect of pH.

Cadmium enhances the mutagenic effect of N-methyl-N-nitrosourea (MNU) in a synergistic manner in Salmonella typhimurium. In the range of doses that yield synergistic effects, it is by itself highly cytotoxic and only weakly mutagenic. A decrease in pH from 7 to 6 markedly decreases cadmium toxicity, causing a 4-fold increase in the surviving fraction. The same shift in pH markedly increases the dose-dependent mutagenesis of MNU, whether MNU is acting alone or in combination with cadmium and increases the synergism at lower doses of cadmium. Thus, the synergism appears to depend on the mutagenicity of MNU and not on the cytotoxicity of Cd. The combined mutagenic effect of Cd and MNU is comparable in tester strain TA1535 and TA100, which contains the error-prone (SOS) repair-enhancing pKM101 plasmid. Thus the synergistic effect of cadmium is not enhanced by the induction of SOS processing. The hydrolysis of MNU is higher at pH 7 than at pH 6 but cadmium has no effect on the rate of MNU hydrolysis at either pH, and therefore does not influence the concentration of the active electrophile of MNU. Cadmium does not enhance the mutagenesis of ethylnitrosourea, the ethylating analogue of MNU, indicating that the synergism is specific for methylated DNA lesions. These data suggest that cadmium acts either directly by modifying the nature or indirectly by inhibiting the repair of methylation damage.

Cadmium

Mutagenicity of cadmium in Salmonella typhimurium and its synergism with two nitrosamines.

Cadmium chloride (CdCl2) at concentrations of 0.5 mM was significantly mutagenic in Salmonella typhimurium tester strains and reverted histidine auxotrophy due either to missense (TA1975 and TA1535) or to frameshift (TA1537) mutations. It also induced forward mutations to 8-azaguanine resistance in each strain, but failed to increase mutation frequencies in strain TA100. More importantly, CdCl2 increased the mutagenicity of two common nitrosamines in synergistic fashion, at a level up to 30-fold greater than expected from simple additivity. The mutation frequency induced by N-methyl-N'-nitro-N-nitrosoguanidine was increased about 10-fold in the presence of 0.5 mM CdCl2. This synergism was seen both in the induction of 8-azaguanine resistance and the reversion of histidine auxotrophy and was observed in the repair-proficient strain TA1975 as well as its repair-defective (uvrB-) derived strain TA1535. The synergism was dependent upon Cd concentration and was much reduced at 0.25 mM CdCl2. The strongest synergism was observed in the reversion of histidine auxotrophy in TA1975 by 180 microM methylnitrosourea and 0.5 mM CdCl2. In contrast to mutagenicity, there was no evidence for synergism in the toxicity of CdCl2. These data suggest that cadmium might interfere with the repair of both spontaneous and nitrosamine-induced mutations. They also raise the possibility that cadmium and nitrosamines may have synergistic effects as environmental carcinogens.

Cadmium

Decreased expression of human class II antigens on monocytes from patients with acquired immune deficiency syndrome. Increased expression with interferon-gamma.

The expression of HLA-DR (a class II histocompatibility antigen) on monocytes isolated from the peripheral blood of normal individuals and patients with acquired immune deficiency syndrome (AIDS) was investigated by the use of dual fluorescent staining and cytofluorometry. In animal models the absence of class II positive monocytes is linked to a failure of T cells to respond to antigens. We now report that patients with AIDS have a paucity of HLA-DR+ monocytes. The percentage of HLA-DR+ monocytes among eight normal individuals ranged from 49.3 to 95.0%+, and only one individual had less than 50% HLA-DR+ monocytes. HLA-DR expression on monocytes from homosexual male patients with lymphadenopathy was similar to that of normal subjects (range, 58.0 to 97.4%+). In contrast, seven of nine patients with AIDS had less than 50% HLA-DR+ monocytes (range, 13.4 to 78.8%+). The in vitro incubation of monocytes from AIDS patients with cloned human interferon-gamma resulted in an increase of the expression of HLA-DR to near normal levels.

Acquired Immunodeficiency Syndrome

DNA-protein interactions in nucleosomes and in chromatin. Structural studies of chromatin stabilized by ultraviolet-light induced crosslinking.

Crosslinking induced by ultraviolet light irradiation at 254 nm has been utilized to investigate the structure of chromatin and isolated nucleosomes. The results presented here imply that the four core histones, as well as histone H1, have reactive groups within a bond length of the DNA bases. In nucleosomes depleted of H1, all of the core histones react similarly with the DNA and form crosslinks. In chromatin, the rate of crosslinking of all histones to DNA is essentially similar. Comparison of mononucleosomes, dinucleosomes and whole chromatin shows that the rate of crosslinking increases significantly with increasing number of connected nucleosomes. These differences in the rate of crosslinking are interpreted in terms of interactions between neighbouring nucleosomes on the chromatin fiber, which are absent in an isolated mononucleosome.

Animals

Chromatic models. Interactions between DNA and polypeptides containing L-lysine L-valine: circular dichroism and thermal denaturation studies.

The interaction of calf thymus DNA with statistical copolymers of L-lysine and L-valine [poly(L-Lys100f-Lvalf)] and block copolymers [poly(L-Lys)100f-poly(L-Val)f] were investigated as a function of ionic strength using circular dichroism (CD) spectroscopy. It was found that valine suppresses the ability of the copolymer-DNA complexes to yield a psi-type CD spectra as found for poly(L-Lys)-DNA [Jordan, C.F., Lerman, L.S., and Venable, J.N. (1972), Nature (london), New Biol. 236, 67] and lowers the ionic strength at which CD distortion occurs. Thermal denaturation, simultaneously monitoring 280-nm ellipticity, [theta]280, and hyperchromicity, h280, was carried out on annealed complexes of poly(L-Lys)-DNA, poly(L-Lys84.5-L-Val15.5)-DNA, poly(L-Lys)87.2-poly(L-Val)12.8-DNA, and directly mixed complexes of poly(L-Lys)-DNA, IN 2.5 X 10(-4) MEDTA, pH 7.0 solution. The CD denaturation of uncomplexed DNA at several ionic strengths was also determined to examine pre-melting. Despite the inability of both statistical and block copolymers of L-Lys and L-Val to form psi-type complexes with DNA, they bind as well to DNA as does poly(L-Lys) and give rise to a thermal denaturation pattern showing bound peaks between 90 and 100 degrees C, seen clearly with CD denaturation. The thermal denaturation of mixed and annealed complexes of poly(L-Lys)-DNA shows similar patterns in hyperchromicity changes as a function of temperature but very different CD melts. From the CD melt of annealed poly(L-Lys)-DNA, it appears that aggregation and long-range order of the complex are significant in low salt (2.5 X 10(-4) MEDTA) as well as in 1.0 M NaCl. These studies further illustrate the importance of the nature of nonionic interactions (hydrophobic) between polypeptides and DNA in determining the behavior of their complexes, such as causing condensation into higher order asymmetric structures. In light of these observations, the possible significance to the CD melting of chromatin and the validity of identification of C-form DNA by CD spectroscopy are discussed.

Chromatin

Chromatin and nucleosome structure.

Chromatin nucleosomes (mononucleosomes through pentanucleosomes) have been isolated by staphylococcal nuclease digestion of calf thymus nuclei. The peak value ellipticity is the same for all oligomers, 1900 deg cm2, mol-1 at 280-nm, 23 degrees C. The dh280/dT vs T show a progressive increase in Tm of the main thermal band (73.5 degrees C, monomer; 79 degrees C, pentamer). Very small amounts of free DNA can be observed in the melting profiles, and shoulders at 60 degrees C and 93 degrees C appear and increase in magnitude as the particle size increases. The magnitude of the change, delta[theta]280, increases with oligomer size. This pattern could result from an initial unfolding of an asymmetric assembly of nucleosomes (polynucleosome superhelix) in addition to the denaturation of the internal nucleosome structure, and a subsequent or simultaneous denaturation of the double strand DNA. The extent of this unfolding appears to depend upon the size of the oligomer and therefore implies interactions between asymmetrically assembled neighboring nucleosomes.

Animals