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Biomedical subjects

M Saunders

Publications and source records attributed to M Saunders.

At least 91 records · Page 5Linked to original sources

All-trans and 9-cis retinoic acid induction of CRABPII transcription is mediated by RAR-RXR heterodimers bound to DR1 and DR2 repeated motifs.

Two cooperating retinoic acid response elements (RAREs) in the cellular retinoic acid-binding protein II (CRABPII) gene mediate differential transcriptional transactivation by retinoic acid receptors (RARs) and retinoid X receptors (RXRs) in P19 embryonal carcinoma cells. RARE1 and RARE2 are direct repeats (DR) of two motifs separated by 2 bp (DR2) and 1 bp (DR1), respectively, and bind RAR-RXR heterodimers more efficiently than homodimers. Using all-trans and 9-cis RA, which differentially activate RARs and RXRs, and RAR and RXR dominant-negative mutants, RAR-RXR heterodimers bound to RARE1 and RARE2 are shown to be responsible for CRABPII promoter transactivation, arguing against a unique DR spacing specifying recognition by RARs. Within heterodimers, RAR and RXR independently and differentially transactivate, depending on the specific RARE. Consistent with these results, 9-cis RA increases CRABPII mRNA levels more efficiently than all-trans RA. In contrast, all-trans and 9-cis RA have identical effects on induction of RAR beta 2 transcripts.

Base Sequence↗

Promoter context- and response element-dependent specificity of the transcriptional activation and modulating functions of retinoic acid receptors.

Using several naturally occurring and synthetic retinoic acid (RA)-responsive reporter genes, we show that the patterns of transcriptional activation by various retinoic acid receptor (RAR) and retinoid X receptor (RXR) forms vary according to the nature of the RA response element and the context of the stimulated promoter. We demonstrate the presence of autonomous, ligand-inducible, and promoter context-dependent transactivation functions (AF-2s) located in the C-terminal region of all RARs and RXRs. In addition, promoter context-specific modulating transactivation functions are associated with the N-terminal A and B regions of RARs and RXRs. We also show that these transactivation and modulating functions exhibit response-element specificity. The modulating functions display a marked specificity in their cooperation with the AF-2 transactivation functions, cooperation that depends on the receptor origin of the modulating and transactivation functions and the promoter context of the RA-responsive gene, thus accounting for the specific transactivation properties of RAR and RXR types.

Animals↗

Purification, cloning, and RXR identity of the HeLa cell factor with which RAR or TR heterodimerizes to bind target sequences efficiently.

We have purified and cloned a HeLa cell nuclear protein that strongly stimulates binding of retinoic acid and thyroid hormone receptors (RARs and TRs) to response elements. The purified protein is a human retinoid X receptor beta (hRXR beta). Three murine members of the RXR family (mRXR alpha, beta, and gamma) have also been cloned, and their interactions with RARs and TRs have been investigated. Under conditions where RAR, RXR, and TR bound poorly as homodimers to various response elements, strongly cooperative RAR-RXR and TR-RXR binding was observed. The binding efficiency was dependent on the sequence, relative orientation, and spacing of the repeated motifs of response elements. We show also that unstable RAR-RXR heterodimers were formed in solution, and that C-terminal sequences and the DNA-binding domains of both receptors were required for efficient formation of stable heterodimers on response elements. These findings suggest a convergence of the signaling pathways of some members of the nuclear receptor superfamily.

Amino Acid Sequence↗

Primary and secondary human in vitro T-cell responses to soluble antigens are mediated by subsets bearing different CD45 isoforms.

A culture system has been developed which consistently supports in vitro proliferative responses to conventional soluble antigens by human CD4+ T cells from non-immunized donors. T cells exposed to an antigen in primary cultures could be restimulated in vitro in an antigen-specific manner to give secondary responses with greater magnitudes and a more rapid onset than the initial reaction. To characterize further the responding T-cell population in primary compared with secondary reactions, T cells were depleted of CD45RA+ or CD45RO+ cells and stimulated with recall and non-recall antigens. It was found that the soluble non-recall antigen keyhole limpet haemocyanin did not stimulate CD45RO+ T cells, yet induced strong proliferative responses from CD45RA+ T cells. Conversely, it was confirmed that human CD45RO+ T cells respond to the recall antigen-purified protein derivative from Mycobacterium tuberculosis. Cell mixing experiments indicated that CD45RO+ T cells are unlikely to have any suppressive effect on the reactivity of CD45RA+ cells to non-recall antigens. These data provide new support for the hypothesis that CD45RA+ represents the naive and CD45RO+ the memory phenotype of human CD4+ T cells.

Antigens↗

Retinoic acid receptor gamma: specific immunodetection and phosphorylation.

Synthetic peptides corresponding to cDNA-deduced amino acid sequences unique to the human and mouse retinoic acid receptor gamma 1 (hRAR-gamma 1 and mRAR-gamma 1, respectively) were used to generate anti-RAR-gamma 1 antibodies. Four mAbs were selected, which were directed against peptides found in region A1 (Ab1 gamma (A1)), region F (Ab2 gamma (mF) and Ab4 gamma (hF)) and region D2 (Ab5 gamma (D2)). These antibodies specifically immunoprecipitated and recognized by Western blotting RAR-gamma 1 proteins in COS-1 cells transfected with expression vectors containing the RAR-gamma 1 cDNAs. They all reacted with both human and mouse RAR-gamma 1 proteins, except Ab4 gamma (hF) that was specific for hRAR-gamma 1. Rabbit polyclonal antibodies, directed against a peptide from the mRAR-gamma 1 F region were also obtained (RP gamma (mF)) and found to be specific for mouse RAR-gamma 1 protein. Furthermore, in gel retardation/shift assays the antibodies specifically retarded the migration of complexes obtained with a RA response element (RARE). Antibodies raised against regions D2 and F also recognized the RAR-gamma 2 isoform which differs from RAR-gamma 1 only in the A region. On the other hand, antibodies directed against the A1 region of RAR-gamma 1 (Ab1 gamma (A1)) only reacted with the RAR-gamma 1 protein. The antibodies characterized here allowed us to detect the presence of mRAR-gamma 1 and gamma 2 isoforms in mouse embryos and F9 embryonal carcinoma cells nuclear extracts. They were also used to demonstrate that the mRAR-gamma 1 protein can be phosphorylated and that the phosphorylation occurs mainly in the NH2-terminal A/B region.

Alkaline Phosphatase↗

5,5-Dimethylthiazolidine-4-carboxylic acid (DTC) as a proline analog with restricted conformation.

Spectroscopic evidence is presented for the lack of intramolecular hydrogen bonding in a simple peptide derivative of 5,5-dimethylthiazolidine-4-carboxylic acid (Dtc). The infrared spectrum of Boc-Pro-Ile-OMe 1 in nonpolar solvents displays two N-H stretching bands at 3419 and 3330 cm-1 in CCl4 and one at 3417 and 3328 cm-1 in CHCl3. The low frequency band at 3328-3330 cm-1 may be assigned to conformations with an intramolecular hydrogen bond between the Ile N-H and Boc C = O. The band at 3417-3419 cm-1 is the normal Ile N-H stretch. In the polar solvent CH3CN only one NH stretching band at 3365 cm-1 is observed. The IR spectrum of Boc-Dtc-Ile-OMe 2, on the other hand, displays one N-H stretching band at 3423 cm-1 in CCl4 and one at 3418 cm-1 in CHCl3. The IR spectrum of 2 does not display the N-H stretching band that would arise from intramolecular hydrogen bonding between the Boc C = O and Ile N-H. The lack of intramolecular hydrogen bonding for Boc-Dtc-Ile-OMe 2 was evident also in the NMR spectra in nonpolar solvents. The 1H-NMR spectrum of the Pro dipeptide 1 in 50% CDCl3/C6D6 at 20 degrees displayed two Ile-NH signals at 6.58 and 7.74 ppm. The latter signal corresponds to the intramolecularly hydrogen bonded Ile-NH in the trans-Boc isomer of 1 (60% of the total population), while the former signal corresponds to the nonhydrogen bonded Ile-NH in the cis-Boc isomer.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Who gets radiotherapy?

This study investigated the use of radiotherapy for patients perceived to be unsuitable for curative therapy. Patients were grouped according to whether their cancer was considered curable or incurable and whether they received radical or palliative schedules of radiotherapy. The latter group was further evaluated to clarify current practice, to examine the problems in establishing guidelines for treatment and as a basis for prospective audit. Results confirmed that therapy guidelines within the unit were in line with national practice. Changes in standard therapy were proposed in view of resource limitations and recent results from other surveys. A second audit in 1989, together with a formal costing exercise, showed a reduction in the median number of fractions per course in both patient groups. This study suggests that palliative radiotherapy was used selectively for patients likely to receive significant benefit, and that consensus management was practised, and influenced, by informal internal audit. Results highlighted decision-making problems in the management of advanced non-metastasised cancer; confirmed doubts about the advisability of establishing rigid guidelines in palliative therapy; and clarified some of the difficulties in conducting meaningful cost-benefit analyses in this area.

Cancer Care Facilities↗

The structure of a primitive kinetochore.

The isolation of yeast centromeres has provided the opportunity to describe the molecular structure of chromosome attachments to the mitotic spindle. Nucleolytic probes of chromatin structure and construction of conditional mutants in centromere function have been used to study the regulation and assembly of centromeres throughout the cell cycle in Saccharomyces cerevisiae.

Base Sequence↗

Cis- and trans-acting factors affecting the structure of yeast centromeres.

The isolation of yeast centromeres has provided the opportunity to describe the molecular structure of chromosome attachments to the mitotic spindle. Nucleolytic probes of chromatin structure and analysis of genetically altered centromeres have been used to determine the primary sequence and positional requirements for assembly of this chromosomal domain into a functional unit. Structural analysis of the centromere in wild-type and mutant strains provides the first indication of specific proteins associated with centromere DNA in vivo.

Centromere↗

Chromatin structure of altered yeast centromeres.

We have investigated the chromatin structure of wild-type and mutationally altered centromere sequences in the yeast Saccharomyces cerevisiae by using an indirect end-labeling mapping strategy. Wild-type centromere DNA from chromosome III (CEN3) exhibits a nuclease-resistant chromatin structure 220-250 base pairs long, centered around the conserved centromere DNA element (CDE) III. A point mutation in CDE III that changes a central cytidine to a thymidine and completely disrupts centromere function has lost the chromatin conformation typically associated with the wild-type centromere. A second conserved DNA element, CDE I, is spatially separated from CDE III by 78-86 A + T-rich base pairs, which is termed CDE II. The sequence and spatial requirements for CDE II are less stringent; alterations in CDE II length and sequence can be tolerated to a limited extent. Nuclease-resistant cores are altered in dimension in two CDE II CEN3 mutations. Two CDE I deletion mutations that retain partial centromere function also show nuclease-resistant regions of reduced size and intensity. The results from a number of such altered centromeres indicate a correlation between the presence of a protected core and centromere function.

Base Sequence↗

Specific antibody containing cells in the porcine respiratory tract following intraperitoneal and intratracheal immunisation.

Pigs were immunised intraperitoneally with ovalbumin in Freund's complete adjuvant and subsequently challenged intratracheally with ovalbumin. The results show that the group receiving two intratracheal challenges had a significantly greater antiovalbumin-containing cell response in the lamina propria of the respiratory tract. With intraperitoneal immunisation or intratracheal challenge alone the response was negligible. The immunoglobulin isotype of the anti-ovalbumin containing cells was predominantly IgG. There was also a substantial antibody containing cell response in the lung which was also IgG. These findings are discussed in relation to immunity within the porcine respiratory tract.

Animals↗

Transforming growth factor alpha inhibits secretion of gastric acid.

Transforming growth factor alpha (TGF-alpha), a protein secreted by transformed cells and related to epidermal growth factor (EGF), was tested for its effects on gastric acid secretion. Guinea pig gastric mucosae were mounted in Ussing chambers and the rate of acid release was monitored by the pH-stat method. When administered prior to the secretagogue, TGF-alpha prevented the histamine-induced increase in the rate of acid secretion. Similarly, TGF-alpha caused a decrease in the rate of acid release in tissues that had already been stimulated with histamine. These data show that TGF-alpha inhibits gastric acid secretion in a manner similar to EGF and that the two growth factors share at least one physiological action unrelated to their mitogenic properties.

Animals↗