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S Sheng

Publications and source records attributed to S Sheng.

52 records · Page 3Linked to original sources

Maspin. A tumor suppressing serpin.

Maspin, a serpin found in mammary epithelial cells, has been shown to have tumor suppressor activity. The gene is expressed in normal human mammary epithelial cells but down-regulated in invasive breast carcinomas. Similar patterns of expression at the RNA and protein levels are seen by Northern analysis with cells grown in culture and by immunostaining of tissues. Biological assays of invasion by tumor cells through Matrigel membranes and of motility have shown that recombinant maspin inhibits both processes, and that its inhibitory action is totally lost by a single cleavage at the reaction center. Tumor transfectants expressing maspin are inhibited in growth and metastasis in nude mice. Maspin is located in the cell membrane and extracellular matrix, and does not behave as a classical inhibitory serpin against any known target protease. Its mode of action is presently unknown.

Amino Acid Sequence↗

Maspin acts at the cell membrane to inhibit invasion and motility of mammary and prostatic cancer cells.

Maspin, a novel serine protease inhibitor (serpin), inhibits tumor invasion and metastasis of mammary carcinoma. We show here that recombinant maspin protein blocks the motility of these carcinoma cells in culture over 12 h, as demonstrated by time-lapse video microscopy. Lamellopodia are withdrawn but ruffling continues. Both exogenous recombinant maspin and maspin expressed by tumor transfectants exhibit inhibitory effects on cell motility and cell invasion as shown in modified Boyden chamber assays. In addition, three prostatic cancer cell lines treated with recombinant maspin exhibited similar inhibition of both invasion and motility, suggesting a similar mode of maspin action in these two glandular epithelial cancers. When mammary carcinoma cells were treated with recombinant maspin, the protein was shown by immunostaining to bind specifically to the cell surface, suggesting that maspin activity is membrane associated. When pretreated with antimaspin antibody, maspin loses its inhibitory effects on both invasion and motility. However, when maspin is added to these cells preceding antibody treatment, the activity of maspin is no longer inhibited by subsequent addition of the antibody. It is concluded therefore that the inhibition of invasion and motility by maspin is initially localized to the cell surface.

Antineoplastic Agents↗

Maspin: a tumor suppressing serpin.

Maspin, a serpin found in mammary epithelial cells, has been shown to have tumor suppressor activity. The gene is expressed in normal human mammary epithelial cells but down-regulated in invasive breast carcinomas. Similar patterns of expression at the RNA and protein levels are seen by Northern analysis with cells grown in culture and by immunostaining of tissues. Biological assays of invasion by tumor cells through matrigel membranes and of motility have shown that recombinant maspin inhibits both processes, and that its inhibitory action is totally lost by a single cleavage at the reaction center. Tumor transfectants expressing maspin are inhibited in growth and invasion in nude mice. Maspin is located in the cell membrane and extracellular matrix, and does not behave as a classical inhibitory serpin against any known target protease. Its mode of action is presently unknown.

Amino Acid Sequence↗

Imaging biological structures with the cryo atomic force microscope.

It has long been recognized that one of the major limitations in biological atomic force microscopy (AFM) is the softness of most biological samples, which are easily deformed or damaged by the AFM tip, because of the high pressure in the contact area, especially from the very sharp tips required for high resolution. Another is the molecular motion present at room temperature due to thermal fluctuation. Using an AFM operated in liquid nitrogen vapor (cryo-AFM), we demonstrate that cryo-AFM can be applied to a large variety of biological samples, from immunoglobulins to DNA to cell surfaces. The resolution achieved with cryo-AFM is much improved when compared with AFM at room temperature with similar specimens, and is comparable to that of cryo-electron microscopy on randomly oriented macromolecules. We will also discuss the technical problems that remain to be solved for achieving even higher resolution with cryo-AFM and other possible applications of this novel technique.

Animals↗

Chaperonins GroEL and GroES: views from atomic force microscopy.

The Escherichia coli chaperonins, GroEL and GroES, as well as their complexes in the presence of a nonhydrolyzable nucleotide AMP-PNP, have been imaged with the atomic force microscope (AFM). We demonstrate that both GroEL and GroES that have been adsorbed to a mica surface can be resolved directly by the AFM in aqueous solution at room temperature. However, with glutaraldehyde fixation of already adsorbed molecules, the resolution of both GroEL and GroES was further improved, as all seven subunits were well resolved without any image processing. We also found that chemical fixation was necessary for the contact mode AFM to image GroEL/ES complexes, and in the AFM images. GroEL with GroES bound can be clearly distinguished from those without. The GroEL/ES complex was about 5 nm higher than GroEL alone, indicating a 2 nm upward movement of the apical domains of GroEL. Using a slightly larger probe force, unfixed GroEL could be dissected: the upper heptamer was removed to expose the contact surface of the two heptamers. These results clearly demonstrate the usefulness of cross-linking agents for the determination of molecular structures with the AFM. They also pave the way for using the AFM to study the structural basis for the function of GroE system and other molecular chaperones.

Adenylyl Imidodiphosphate↗

Evidence for a transient interresidue hydrogen bond in sucrose in aqueous solution obtained by rotating-frame exchange NMR spectroscopy under supercooled conditions.

We have used the hydroxyl protons of sucrose dissolved in supercooled water as NMR probes for the detection of intramolecular hydrogen bonds. Neither the measured OH temperature shift coefficients, 3JHCOH scalar couplings, isotope-induced 13C chemical shifts (delta delta COH/COD), nor OH exchange rates allowed us to single out any hydroxyl group in sucrose with characteristics indicative of involvement in strong hydrogen bonding. However, two-dimensional rotating-frame exchange (ROESY) spectroscopy revealed a direct exchange between the glucosyl OH2 and fructosyl OH1 protons. We conclude that an O2g::H::O1f interresidue hydrogen bond transiently exists in sucrose in aqueous solution. ROESY of sugars in supercooled water is proposed as a novel method to detect this type of weak hydrogen bonding.

Carbohydrate Conformation↗

Production, purification, and characterization of recombinant maspin proteins.

Maspin, a novel mammary serine protease inhibitor, was shown to have tumor suppressing activity (Zou, Z., Anisowicz, A., Hendrix, M. J. C., Thor, A., Neveu, M., Sheng, S., Rafidi, K., Seftor, E., and Sager, R. (1994) Science 263, 526-529). In this paper, we report the production of recombinant glutathione S-transferase-maspin fusion protein, expressed in the bacterium Escherichia coli, and recombinant maspin, expressed in the insect Spodoptera frugiperda cells. The fusion protein was purified by glutathione affinity chromatography. Maspin expressed in insect cells was purified by a combination of Bio-Rad AG1-2X anion exchange chromatography and heparin affinity chromatography. The recombinant maspin from insect cells was cleaved at the putative reactive center, as confirmed by protein sequencing. Both recombinant proteins demonstrated strong inhibitory effects on the invasion by two breast tumor cell lines across reconstituted basement membranes and such inhibitory effect was abolished in the presence of the polyclonal antibody made against the reactive center region of maspin. The trypsin-cleaved recombinant maspin did not inhibit invasion, indicating that the inhibitory activity requires the intact putative reactive center. This paper provides evidence that recombinant maspin protein itself inhibits invasion, and supports the role of maspin as a tumor suppressor.

Amino Acid Sequence↗

Maspin, a serpin with tumor-suppressing activity in human mammary epithelial cells.

A gene encoding a protein related to the serpin family of protease inhibitors was identified as a candidate tumor suppressor gene that may play a role in human breast cancer. The gene product, called maspin, is expressed in normal mammary epithelial cells but not in most mammary carcinoma cell lines. Transfection of MDA-MB-435 mammary carcinoma cells with the maspin gene did not alter the cells' growth properties in vitro, but reduced the cells' ability to induce tumors and metastasize in nude mice and to invade through a basement membrane matrix in vitro. Analysis of human breast cancer specimens revealed that loss of maspin expression occurred most frequently in advanced cancers. These results support the hypothesis that maspin functions as a tumor suppressor.

Amino Acid Sequence↗

Glutamine inhibits the ammonia-dependent activities of two Cys-1 mutants of human asparagine synthetase through the formation of an abortive complex.

Cys-1 mutants of recombinant human asparagine synthetase were constructed and their ability to catalyze the glutamine-dependent nitrogen transfer reaction required for asparagine biosynthesis was determined. In agreement with previous work, altering Cys-1 to either Ala or Ser eliminated the glutamine-dependent activity while only minimally affecting the kinetic properties of the ammonia-dependent reaction. A lack of glutaminase activity in these mutants also allowed examination of glutamine binding in studies of the ability of glutamine to inhibit the ammonia-dependent production of asparagine. In both mutants, analysis of the observed kinetics indicated that glutamine inhibited ammonia-dependent asparagine synthesis through the formation of an abortive complex. This unanticipated observation suggests that the commonly accepted mechanism for nitrogen transfer from the primary amide of glutamine to aspartic acid in asparagine synthetase may have to be re-examined. A novel mechanistic proposal which is consistent with the formation of an abortive complex in the two Cys-1 mutants is presented.

Ammonia↗

Purification and characterization of Saccharomyces cerevisiae DNA damage-responsive protein 48 (DDRP 48).

A yeast protein was purified from wild type Saccharomyces cerevisiae (S. cerevisiae) to near homogeneity using an ethanolamine affinity chromatography procedure. The N-terminal amino acid sequencing and the amino acid composition analyses identified this protein as the product of the second open reading frame of S. cerevisiae DNA Damage-responsive gene 48 (DDR48) (Treger, J.M., and McEntee, K. (1990) Mol. Cell. Biol. 10, 3174-3184) The first methionine residue encoded by the translation starting codon was not present in the mature protein which is designated as DDRP 48. DDRP 48 was found to be a negatively charged and highly hydrophilic glycoprotein. The glycosidase cleavage analyses suggested that DDRP 48 was mainly N-link-glycosylated. The apparent molecular mass of DDRP 48 was estimated to be approximately 65 kilodaltons. DDRP 48 was found able to hydrolyze ATP and GTP yielding PPi. The Km values for ATP and GTP are 0.29 mM and 0.58 mM, respectively. The Western blot analysis demonstrated that DDRP 48 was expressed to various concentrations in different S. cerevisiae strains. Increased DDRP 48 abundance was observed after yeast cells carrying the wild type RAD 52 gene were exposed to either ethylmethane sulfonate or heat shock treatments. After similar DNA-damaging treatments, however, no significant inductions of DDRP 48 were found in a rad 52 mutant strain. These observations are consistent with the predictions resulting from previous studies on transcriptional regulation of the DDR 48 gene (Maga, J.A., McClanahan, T.A., and McEntee, K. (1986) Mol. & Gen. Genet. 205, 276-284; McClanahan, T., and McEntee, K. (1986) Mol. Cell. Biol. 6, 90-96).

Amino Acid Sequence↗

A specific quantitative colorimetric assay for L-asparagine.

When an aqueous L-asparagine solution was mixed with a dilute ethanolic ninhydrin solution and incubated at temperatures lower than 37 degrees C, the resulting mixture exhibited an ultraviolet (uv)-visible absorption spectrum with the maximum absorption at 340-350 nm. In contrast, the mixtures of several other amino acids with ninhydrin yielded Ruhemann purple (S. Ruhemann, 1910, J. Chem. Soc. 97, 1438-1449, 1910; S. Ruhemann, 1910, J. Chem. Soc. 97, 2025-2031) and the corresponding uv-visible spectra had absorption maxima at 405 and 570 nm. The effects of several factors including the reaction temperature, the ninhydrin concentration, and pH on the asparagine-ninhydrin reaction were investigated to optimize the specificity and sensitivity. As a result, a simple and specific colorimetric asparagine assay was developed. Using the assay protocol, the absorption of the asparagine-ninhydrin mixtures at 340 nm had a linear relationship with the asparagine concentration in the range of 50 microM to 50 mM, even in the presence of a high background of other amino acids. The application of this assay could be easily extended to more complex enzymatic reaction systems. When the enzyme activities of L-asparagine synthetases from different species and commercial L-asparaginase were measured with both the ninhydrin colorimetric procedure and the HPLC amino acid analysis, comparable results were obtained. While the chemistry of this novel asparagine-ninhydrin reaction is not fully understood, the colorimetric asparagine assay reported herein is of great practical value because it is specific, sensitive, simple, and extremely inexpensive.

Asparaginase↗

High-level expression of human asparagine synthetase and production of monoclonal antibodies for enzyme purification.

In order to obtain large quantities of extremely pure human asparagine synthetase for detailed kinetic and structural studies, its gene was cloned into a 2mu plasmid (pBS24.1GAS) suitable for replication in a Saccharomyces cerevisiae cir0 strain (AB116). In this construct, the transcription of the asparagine synthetase gene is regulated by the alcohol dehydrogenase II/glyceraldehyde-3-phosphate dehydrogenase promoter, which is subject to glucose repression. The expression of the enzyme was allowed to take place in yeast minimal medium containing D-galactose as the only sugar nutrient. Eleven monoclonal antibodies to recombinant human asparagine synthetase were produced and one of them was selected to make immunoaffinity resins. After single-step immunoaffinity chromatography, more than 1.2 mg of homogeneous enzyme was obtained from the total cell extract from a 100-ml yeast culture. The yield of pure enzyme was over 100-fold higher than that of a previously reported yeast expression system. SDS-PAGE analysis showed the enzyme to be extremely pure and isoelectric focusing gel electrophoresis showed that the enzyme has an isoelectric point of 7.5. Immunoaffinity-purified recombinant human asparagine synthetase demonstrated both glutamine-dependent and ammonia-dependent asparagine synthetase activities, as well as glutaminase activity.

Antibodies, Monoclonal↗

Visual functions and trace element metabolism in tobacco-toxic optic neuropathy.

Visual functions and nutrition metabolic characteristics were studied in 8 subjects (16 eyes) with tobacco-toxic optic neuropathy (TTON). Their visual functions tested by psychophysical and electrophysiologic methods showed that 1: 1. central vision diminished in 16 eyes, 2. dyschromatopsias were found in 14 tested eyes, 3. bilateral symmetrical central or cecocentral scotomas were the visual field characteristics in all cases, 4. PVEP were severe abnormal in 3 spatial frequencies in all cases and 56.3% of 15' checkboard PVEP showed flat responses, which indicated the impairment of optic nerve dominated by the central field. However, the preserved visual responses could be obtained by FVEP test in 14 tested eyes even though their visual acuity were between the range of 0.02-0.2 and flat PVEP responses. The II and III wave latencies of primary stage were more prolonged than those of control group (P < 0.01), which further indicated the preferential demyelination corresponding to the papillomacular bundles, 5. ERG showed slightly attenuated amplitudes in 5 of 8 tested eyes, which indicated the secondary and mild retinal lesion. On the other hand, TTON occurred on a background of long-term, heavy smoking, drinking, emaciation and malnutrition bodies with low serum zinc level.

Adult↗