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E Reiss

Publications and source records attributed to E Reiss.

At least 19 recordsLinked to original sources

Structural variability in the glucuronoxylomannan of Cryptococcus neoformans serotype A isolates determined by 13C NMR spectroscopy.

Cryptococcus neoformans, the etiologic agent of cryptococcal meningoencephalitis, produces glucuronoxylomannan (GXM) as the major capsule component. Purified GXMs obtained from eight serotype A isolates of C. neoformans were treated by ultrasonic irradiation and then O-deacetylated prior to their comprehensive chemical analysis by GLC, GLC-MS, and 13C NMR spectroscopy. The average xylose: mannose: glucuronic acid molar ratio of the eight isolates is 1.96 +/- 0.25: 3.00: 0.58 +/- 0.10. Methylation analyses and 13C NMR spectroscopy show a general structure for GXM that is comprised of a linear (1----3)-alpha-D-mannopyranan substituted with beta-D-GlcpA and with beta-D-Xylp at O-2. Variable quantities of unsubstituted (1----3)-alpha-D-Manp were observed between the eight isolates studied. In several isolates some of the (1----3)-alpha-D-Manp residues are disubstituted with beta-D-GlcpA at O-2 and with beta-D-Xylp at O-4; this type of substitution was not previously thought to occur in serotype A isolates. Heterogeneity, between isolates, in the disposition of the substituents along the mannopyranan backbone was revealed by 13C NMR spectroscopy. The eight isolates, and three isolates previously studied, were each assigned to one of four distinct groups based on the 13C NMR chemical shifts of the anomeric carbons. Six of the eleven isolates gave identical spectra (Group I). The six major anomeric resonances from Group I were assigned to specific glycosidic linkages present in GXM. The remaining five isolates gave more complex spectra that are indicative of additional linkages and comprise the remaining three groups. Three of these five isolates contain substantial amounts of linkages previously thought to be distinctive of serotypes B and C, i.e., Manp residues that are 4-O-glycosylated with beta-D-Xylp. Methylation analyses only predicted an average repeating unit, whereas 13C NMR spectroscopy demonstrated that GXM from each isolate may be categorized into four groups by the occurrence of distinct sequences of carbohydrate residues.

Carbohydrate Sequence

Characterization of the Syrian hamster c-Ha-ras gene and intron-D-exon transcript.

The coding sequences as well as 5'- and 3'-flanking sequences of the Syrian hamster c-Ha-ras gene were deduced from cDNA clones derived from embryo fibroblast cell lines. Sequences of introns B, C, and D were obtained from genomic DNA after amplification by the polymerase chain reaction. Sequence comparisons with rat, mouse, and human c-Ha-ras genes revealed a high degree of homology. One of 12 cDNA clones contained intron-D-exon (IDX) sequences due to alternative splicing that would encode a p19 Ha-ras gene product. Conservation between species suggests a functional role for the IDX, possibly as a negative control of p21 Ha-ras expression.

Amino Acid Sequence

Cell-wall glucans of Cryptococcus neoformans Cap 67.

Purified cell walls derived from Cryptococcus neofromans Cap 67, an acapsular mutant, consisted of 86% Glc and 7.3% GlcNAc. The integrity of the cell walls was disrupted in three successive extractions with 60% 4-methylmorpholine N-oxide (4-MMNO) at 120 degrees. Four 4-MMNO-soluble D-glucopyranans were isolated. Released within 0.5 h was water-insoluble Gi-1, followed by two water-soluble Gs fractions and water-insoluble Gi-2 over 17.5 h. A 4-MMNO-insoluble residue, containing 27% of GlcNAc, was also isolated. Gi-1 and Gi-2 were isolated as precipitates during dialysis of 4-MMNO extracts and were each reduced with NaBH4 to permit their investigation in alkaline solution. Gs-1 and Gs-2 were separated by ion-exchange chromatography of the water-soluble fractions. The structures of the D-glucopyranans were determined by 13C-n.m.r. spectroscopy and by g.l.c.-mass spectrometry of their per-O-methylated derivatives. Gi-1 was a (1----3)-alpha-D-glucopyranan (97%) with some (1----4)-D-glucosidic linkages (3%) and no chain-branching. Gs-1 and Gs-2 were (1----6)-beta-D-glucopyranans branched at O-3 (10-12%) with beta-D-Glcp-(1----3)-beta-D-Glcp side chains. Gs-2 may have approximately 2% more chain branching than Gs-1. Gi-2 was a D-glucopyranan with 80% of its structure like that of Gi-1, and 20% like that of Gs-1 and -2; the water-insolubility of Gi-2 suggests that these structures were covalently linked. Almost identical D-glucopyranans were obtained from aged cultures that had thickened walls (as observed by electron microscopy).

Cell Wall

Activation of cellular oncogenes by chemical carcinogens in Syrian hamster embryo fibroblasts.

Carcinogen-induced point mutations resulting in activation of ras oncogenes have been demonstrated in various experimental systems such as skin carcinogenesis, mammary, and liver carcinogenesis. In many cases, the data support the conclusion that these point mutations are critical changes in the initiation of these tumors. The Syrian hamster embryo (SHE) cell transformation model system has been widely used to study the multistep process of chemically induced neoplastic transformation. Recent data suggest that activation of the Ha-ras gene via point mutation is one of the crucial events in the transformation of these cells. We have now cloned the c-Ha-ras proto-oncogene from SHE cDNA-libraries, and we have performed polymerase chain reaction and direct sequencing to analyze tumor cell lines induced by different chemical carcinogens for the presence of point mutations. No changes were detectable at codons 12, 13, 59, 61, and 117 or adjacent regions in tumor cell lines induced by diethylstilbestrol, asbestos, benzo(a)pyrene, trenbolone, or aflatoxin B1. Thus, it is not known whether point mutations in the Ha-ras proto-oncogene are essential for the acquisition of the neoplastic phenotype of SHE cells. Activation of other oncogenes or inactivation of tumor suppressor genes may be responsible for the neoplastic progression of these cells. However, in SHE cells neoplastically transformed by diethylstilbestrol or trenbolone, a significant elevation of the c-Ha-ras expression was observed. Enhanced expression of c-myc was detected in SHE cells transformed by benzo(a)pyrene or trenbolone.

Animals

Immunoelectronmicroscopic characterization of monoclonal antibodies (MAbs) against Cryptococcus neoformans.

Three monoclonal antibodies (MAbs) (BA4, BD1, CD6) reacted with Cryptococcus neoformans capsular glucuronoxylomannan (GXM) polysaccharide showing distinctive patterns against four serotypes as revealed by enzyme immunoassay (EIA), dot EIA, and immunofluorescence. Immunoelectron microscopy (IEM) was used to characterize binding sites for the MAbs on the C. neoformans capsule. All three MAbs bound to the capsule of serotype A strains 9104 and 9759. Differences in the intensity of binding to the two serotype A strains could not be explained by capsule diameter. The MAb BA-4 IgM bound well to 9759 (large capsule) and poorly to 9104 (small capsule), whereas MAb BD-1 (IgG-1) bound well to strain 9104 and poorly to strain 9759. Spurr's embedment inactivated the BA-4-binding epitopes in the C. neoformans 9759 capsule, but did not inactivate the ones that bound to BD-1. The epitopes recognized by BA-4 were different than the BD-1-binding determinants. The MAb CD-6 bound to a cytoplasmic precursor of capsular GXM. CD-6 (IgG) stained the capsule, cell wall, and cytoplasm of both C. neoformans tester strains. Competitive binding experiments were conducted. Single immunogold labelling showed that BD-1 inhibited the binding of BA-4, but not vice versa. The interaction between CD-6 and BA-4 resulted in a reciprocal inhibition. Double-labelling experiments showed reciprocal inhibition between BA-4 and each of the IgG MAbs. These MAbs are directed against capsular polysaccharide or its intracellular precursor. None of the MAbs stained C. neoformans cap 67, an acapsular mutant that does not contain GXM.

Antibodies, Fungal

Characterization of Cryptococcus neoformans capsular glucuronoxylomannan polysaccharide with monoclonal antibodies.

Mice were immunized with Cryptococcus neoformans serotype A capsular glucuronoxylomannan (GXM) conjugated to bovine serum albumin-adipic dihydrazide. Two splenocyte fusions yielded two monoclonal antibodies (MAbs) that were highly reactive in dot enzyme immunoassay, immunofluorescence, and sandwich enzyme immunoassay. The first MAb, BD-1 [immunoglobulin G1 (kappa) [IgG1(kappa)]], was GXM-A and GXM-D specific, whereas the second MAb, BA-4 (IgM), reacted with GXM-A and GXM-B. A third MAb, CD-6 [IgG1(kappa)], originated from mice immunized with O-deacetylated GXM-C-bovine serum albumin and reacted with GXMs of all four serotypes. Two of the MAbs (CD-6 and BD-1) were further characterized with chemically modified GXMs. Removal of glucuronosyl residues completely inhibited the binding of both MAbs, implicating (1----2)-beta-glucuronic acid as a key component of the epitope. Removal of (1----2)-beta-xylosyl residues decreased reactivity to an intermediate extent. O deacetylation led to a measurable decrease but had the least inhibitory effect of the three GXM derivatives tested. The combining site for these two MAbs appears to be a complex antigenic determinant involving more than one glycosidic residue.

Antibodies, Fungal

Genetic differences between type I and type II Candida stellatoidea.

Genetic similarities and differences between type I and type II Candida stellatoidea were studied. The electrophoretic karyotype, mitochondrial DNA (mtDNA) restriction patterns, and midrepeat sequence of nuclear DNA in type I C. stellatoidea were clearly distinguishable from those of a reference culture of Candida albicans. The karyotype and the major bands of the midrepeat sequence of type II C. stellatoidea were indistinguishable from those of the reference C. albicans. The mtDNA restriction patterns of four type I isolates were homogeneous regardless of the endonucleases and probes used. The mtDNA restriction patterns of type II C. stellatoidea varied from strain to strain. Some of them were identical to that of C. albicans, while others were the same as that of type I C. stellatoidea. Immunofluorescence with C. albicans serotype A-specific monoclonal antibody indicated that the four isolates of type I C. stellatoidea were serotype B (non-A), whereas all three type II isolates studied were serotype A. Taken together, these results support the hypothesis that the isolates of C. stellatoidea type II studied are sucrose-negative mutants of serotype A C. albicans. Since C. stellatoidea type I differs from C. albicans in several major genetic characteristics, it cannot be viewed as a simple mutant derived from C. albicans. Hybrids produced by protoplast fusion of type I and type II cells were capable of assimilating sucrose, indicating that the sucrose-negative phenotypes of the parents are due to different mutations.

Candida

Structure determination of Cryptococcus neoformans serotype A-variant glucuronoxylomannan by 13C-n.m.r. spectroscopy.

A series of polysaccharides was derived by physical and chemical methods from an antigenic, O-acetyl-containing, glucuronoxylomannan (GXM), isolated from the growth medium of Cryptococcus neoformans (CDC B2550) serotype A-variant having composition ratios of Man:Xyl:GlcA:OAc = 10:4:3:6. 13C-N.m.r. spectra of derivatives provided new structural evidence for GXM. Treatment of GXM with Li in ethylenediamine gave a xylomannan (XM, with Man:Xyl = 5:2). Smith degradation of XM gave a mannan (M). Ultrasonic treatment of GXM gave GXM-sonicated (GXMS). Treatment of GXM with 3-(3-dimethylaminopropyl)-1-ethylcarbodiimide.HCl and then with NaBH4 gave reduced GXMS (RGXMS), or with aq. trifluoroacetic acid gave partially acid-hydrolyzed GXMS. Periodate oxidation of GXM and NaBH4 reduction of the product gave a polyalcohol-mannan (PM). Treatment of GXMS, RGXMS, and PM with NH4OH at pH 11 gave the respective O-deacetylated analogs. Comparison among the 13C-n.m.r. spectra of GXM, the various derivatives, and reference monosaccharides allowed the following conclusions: M is (1----3)-alpha-D-mannopyranan; XM consists of the M backbone with 91% of the Xyl on nonadjacent Man residues as 2-O-beta-D-Xylp substituents and with 9% as 4-O-D-Xylp substituents on other Man residues. GXM consists of the XM structure, but with non-D-xylosylated Man residues substituted with 2-O-beta-D-GlcpA substituents and with 6-O-acetyl groups distributed approximately equally on Man residues that have other substituents and those that have none. The molecular mechanics program MM2 was used to estimate the relative energies of anomeric orientations of the typical glycosidic linkage in M. The results suggest that 6'-OH----O-2 H-bonding is significant in the minimal-energy orientation of M, with phi = -36 degrees and psi = 51 degrees, and that two other glycosidic orientations may be important in the 2-O- or 6-O-substituted derivatives of M.

Cryptococcus

Serological, electrophoretic, and biological properties of Cryptococcus neoformans antigens.

We compared a cryptococcal culture filtrate antigen referred to as CneF with chemically defined cryptococcal antigen fractions isolated by Cherniak and co-workers by using double immunodiffusion gels, polyacrylamide gel electrophoresis, immunoblots, and footpad reactivity of immunized mice. The three previously described components of cryptococcal culture filtrates are a high-molecular-weight glucuronoxylo-mannan (GXM), which is the major constituent, a galactoxylomannan (GaIXM), and a mannoprotein (MP). In this study we demonstrated that CneF contained components which were serologically and electrophoretically similar to the three previously described cryptococcal culture filtrate fractions. The MP fraction elicited significantly stronger delayed-type hypersensitivity responses than did the GXM or GaIXM fraction when used in mice immunized either with the CneF in complete Freund adjuvant or whole heat-killed Cryptococcus neoformans yeast cells. These findings were confirmed when the footpads of immunized mice were challenged with GaIXM and MP preparations from a culture filtrate of a C. neoformans acapsular mutant that does not produce GXM. Thus, we concluded that the MP was the primary component recognized by the anticryptococcal cell-mediated immune response in mice.

Antibodies, Fungal

Enhanced binding of capsular polysaccharides of Cryptococcus neoformans to polystyrene microtitration plates for enzyme-linked immunosorbent assay.

A sensitive enzyme-linked immunosorbent assay (ELISA) to measure antibodies against capsular polysaccharide was developed, based on the enhanced binding of polysaccharide to polystyrene microtitration plates. The wells of the microtitration plate were primed with an adipic acid dihydrazide derivative of bovine serum albumin (AH-BSA) (100 micrograms/mL, 0.01 M NaPO4-0.14 M NaCl, pH 7.2 (PBS]. Capsular polysaccharide, the glucuronoxylomannan of Cryptococcus neoformans serotype A, was oxidized with NaIO4 for 5 min; the reaction was then quenched with ethylene glycol. The partially oxidized polysaccharide was dialyzed vs. PBS, and its concentration was adjusted to 50 micrograms/mL with PBS. This solution (100 microL/well) was covalently bound to the AH-BSA primed microtitration plates through formation of a Schiff base between the hydrazide group on the AH-BSA and the aldehyde groups on the polysaccharide. Antimouse IgG-alkaline phosphatase conjugate was used in an indirect ELISA to measure captured murine monoclonal antibodies directed against glucuronoxylomannan. Mean absorbances, after 15 min, were 0.13 in negative control wells, and greater than 0.7 in test wells. No intermediate steps were required to block nonspecific binding of antibody.

Antibodies

Establishment of primary cell cultures from human and canine parathyroid gland explants.

Primary parathyroid cell cultures were established from 22 canine and 20 human parathyroid glands explanted into Connaught Medical Research Laboratory-1415 (CMRL-1415) medium containing fetal calf serum (FCS). Initiation of cellular outgrowth and the rate of cellular propagation through the first subcultures were evaluated in various media. These included Roswell Park Memorial Institute-1640 (RPMI-1640), minimal essential medium (MEM), medium-199 (M-199) and Coon's modified Ham's F-12 (F12) and CMRL-1415 media. Only CMRL-1415 medium supplemented with FCS invariably supported the vigorous rate of cellular growth as determined by the number of cells in cultures, their viability, parathyroid hormone (PTH) levels in the growth media and the number of proliferating cells. Propagation of parathyroid cells in vitro was limited to five passages. Cessation of cell division was always coincidental with the emergence of numerous, non-dividing binucleated cells. These experiments demonstrate that primary parathyroid cell cultures from canine and human parathyroid gland explants can be readily established in CMRL-1415 medium containing FCS.

Animals

DNA patterns in parathyroid disease predict postoperative parathyroid hormone secretion.

Flow cytometric analysis of the nuclear deoxyribonucleic acid (DNA) content of parathyroid glands excised from patients with hypercalcemic hyperparathyroidism has identified three distinct DNA patterns. The most frequent pattern showed a high percentage of cells with tetraploid DNA, which indicated an increase in the G2 and M phase of the cell cycle. Thirty-four patients were found to have abnormal tetraploid DNA content. One patient had a normal diploid pattern, and seven were found to have an aneuploid DNA population in their excised parathyroid glands. This unexpected finding of aneuploid DNA appears to be an unique feature of these endocrine glands because they have no histologic or clinical characteristics of malignant change. All patients have remained normocalcemic and clinically well after excision of only grossly enlarged glands. Postoperative parathyroid hormone (PTH) levels were correlated in 17 patients with DNA analyses of biopsy specimens from 30 normal-sized glands which were left in situ. Seven patients with elevated PTH postoperatively had high tetraploid or aneuploid DNA in all 13 glands from which biopsy specimens had high tetraploid or aneuploid DNA in all 13 glands from which biopsy specimens had been taken. In 10 patients with normal PTH levels, six had normal diploid patterns, whereas four had high tetraploid DNA in their gland biopsy specimens. DNA content present in biopsy specimens of normal-sized, in situ glands was predictive (p less than 0.042) of parathyroid gland secretory activity. These findings suggest that the stimulus for parathyroid gland hyperfunction often affects more than a single enlarged gland and persists after clinical cure, as shown by a more rapid cell turnover in some remaining glands and continued hypersecretion of hormone.

DNA

An electrophoretic karyotype for Candida albicans reveals large chromosomes in multiples.

Using field-inversion gel electrophoresis we defined an electrophoretic karyotype for the yeast, Candida albicans. The karyotype is distinct from other species of Candida and is species specific. A total of five distinct chromosomal mobility groups were observed, at least four of which are composed of a minimum of two fragments each. From the apparent sizes of these fragments relative to the large chromosomes of the morphologically related yeast Saccharomyces cerevisiae, together with the known genome size of this organism, we conclude that the karyotype is the result of the migration of intact chromosomes.

Candida

Ultrastructure of acapsular mutant Cryptococcus neoformans cap 67 and monosaccharide composition of cell extracts.

Acapsular mutant Cryptococcus neoformans cap 67 was grown in Pine's citrate broth medium for 3 days and the cells then transferred to a nitrogen-free medium for 6 days. The cells were subjected to a four stage extraction with buffered Triton-X100, cold dilute alkaline borohydride, hot dilute acetic acid, and a second alkaline extraction. Galactoxylomannan antigens were recovered from the culture supernates of both 3 day-old and 9 day-old yeast cells. The alkaline extracts contained water-soluble galactoxylomannan and a water-insoluble glucan. Dilute acid treatment released a minor amount of carbohydrate from the cells. The second alkaline extraction yielded increased amounts of glucan and galactoxylomannan from the 9 day-old cells. Soluble non-dialyzable cell extracts were antigenically identical in immunodiffusion with the culture supernate antigens. After the extraction sequence, all of the galactose, xylose, and mannose were removed from the cells. The walls retained their shape after extraction but their layers were loosened. Cells resuspended in nitrogen-free medium for six days developed thickened walls with alternating electron-dense and electron-lucent layers. The major constituent of the thickened 9 day-old cell walls was glucose, only 5% glucosamine was detected.

Antigens, Fungal