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D Sheer

Publications and source records attributed to D Sheer.

At least 109 records · Page 6Linked to original sources

Localization of the gene encoding a type I protein phosphatase catalytic subunit to human chromosome band 11q13.

A cDNA encoding one isoform (PP1 alpha) of the catalytic subunit of human protein phosphatase 1 has been isolated and used to map the human PP1 alpha gene (PPP1A) to chromosome band 11q13 by analysis of somatic cell hybrids and in situ hybridization. Neoplasms that map to 11q13 are discussed in the light of the recent findings that PP1 alpha is a putative tumor suppressor and that it plays a key role in the control of mitosis.

Amino Acid Sequence↗

The polymorphic human DNA sequence D8S8 assigned to 8q13-21.1, close to the carbonic anhydrase gene cluster, by isotopic and nonisotopic in situ hybridization and by linkage analysis.

Restriction fragment length polymorphism at the D8S8 locus is explained by the occurrence of at least two alternative alleles at two separate TaqI sites; TaqI-A allele frequencies 0.73 and 0.27 and TaqI-B allele frequencies 0.94 and 0.06. The D8S8 locus has been assigned to 8q13-21.1, near to the carbonic anhydrase (CA) gene cluster, by in situ hybridization to metaphase chromosomes using both tritium and immunofluorescently labelled probes. Linkage analysis using the CEPH family DNA panel indicates a close genetic linkage between D8S8 and CA3, with a lod score of +7.80 at theta = 0.05 in males.

Alleles↗

Conditional immortalization of human thyroid epithelial cells: a tool for analysis of oncogene action.

To overcome the difficulty of assessing oncogene action in human epithelial cell types, such as thyroid, which have limited proliferative potential in culture, we have explored the use of temperature-sensitive (ts) mutants of simian virus 40 (SV40) early region to create conditionally immortalized epithelial cell lines. Normal primary cultures of human thyroid follicular cells were transfected with a plasmid containing the SV40 early region from mutant tsA58. Expanding epithelial colonies were observed after 2 to 3 months, all of which grew to greater than 200 population doublings without crisis. All showed tight temperature dependence for growth. After switch-up to the restrictive temperature (40.5 degrees C), no further increase in cell number was seen after 1 to 2 days. However, DNA synthesis declined much more slowly; the dissociation from cell division led to marked polyploidy. Viability was maintained for up to 2 weeks. Introduction of an inducible mutant ras gene into ts thyroid cells led, as expected, to morphological transformation at the permissive temperature when ras was induced. Interestingly, this was associated with a marked reduction in net growth rate. At the restrictive temperature, induction of mutant ras caused rapid cell death. These results demonstrate the utility of a ts SV40 mutant to permit the study of oncogene action in an otherwise nonproliferative target cell and reveal important differences in the interaction between ras and SV40 T in these epithelial cells compared with previously studied cell types.

Animals↗

Molecular cloning of alpha 5(IV) collagen and assignment of the gene to the region of the X chromosome containing the Alport syndrome locus.

Type IV collagen is a major structural component of basement membranes. Four constituent polypeptides have been described and characterized to different degrees. Whereas the primary structure of the alpha 1(IV) and alpha 2(IV) chains has been completely established, only short protein sequences have been reported for the recently recognized alpha 3(IV) and alpha 4(IV) subunits. We have isolated overlapping human cDNA clones whose derived amino acid sequence is highly homologous to the alpha 1(IV) and alpha 2(IV) chains. However, these clones code for neither alpha 3(IV) nor alpha 4(IV), and thus this new polypeptide has been designated the alpha 5 chain of type IV collagen. To determine whether the gene encoding the alpha 5(IV) chain is syntenic with the contiguously arranged alpha 1(IV) and alpha 2(IV) genes at 13q34, the alpha 5(IV) cloned DNA was hybridized to genomic DNA from somatic cell hybrids and to metaphase chromosomes. The results demonstrated that the alpha 5(IV) collagen gene is located on the long arm of the X chromosome. Since 14 collagen genes have previously been assigned to nine autosomes, these data represent the first mapping of a collagen gene to the X chromosome. Most important, the alpha 5(IV) gene has been sublocalized to bands Xq22----q23, which are in the same region known to contain the locus for the X-linked form of Alport syndrome. It is therefore possible that this severe dominantly inherited nephritis, manifested by splitting of the glomerular basement membrane, could be caused by mutations in the alpha 5(IV) collagen gene.

Amino Acid Sequence↗

Transformation of an established mouse mammary epithelial cell line following transfection with a human transforming growth factor alpha cDNA.

To determine whether the enhanced expression of transforming growth factor alpha (TGF alpha) is sufficient to induce the neoplastic transformation of an immortalized population of mammary epithelial cells, we cotransfected NOG-8 cells, a cloned mouse mammary epithelial cell line, with a simian virus 40-human TGF alpha cDNA expression vector plasmid and a pSV2neo plasmid. After cotransfection, nine G418-resistant NOG-8 colonies were cloned and expanded. All clones were subsequently analyzed for TGF alpha mRNA expression by northern blot analysis, TGF alpha secretion, anchorage-dependent growth in serum-free medium, anchorage-independent growth in soft agar, and tumorigenicity in nude mice. Three TGF alpha-transfected NOG-8 clones expressed high levels of a specific TGF alpha mRNA, secreted elevated levels of TGF alpha into the culture medium (177-595 ng/10(8) cells/48 h), exhibited an enhanced growth rate, grew aggressively as colonies in soft agar, and formed undifferentiated, invasive carcinomas in nude mice. A neutralizing mouse monoclonal antibody generated against the low molecular weight human TGF alpha peptide was able to inhibit colony formation in soft agar by TGF alpha-transfected NOG-8 clones that produced high levels by TGF alpha. This inhibition suggested that TGF alpha acted through an external autocrine loop. NOG-8 cells and NOG-8 cells transfected with a pSV2neo plasmid alone secreted very low levels of TGF alpha, failed to grow as colonies in soft agar and did not form tumors in nude mice. These results demonstrate that overexpression of a human TGF alpha cDNA in immortalized, nontransformed mouse mammary epithelial cells can induce a transformed phenotype in vitro and can facilitate tumor formation in vivo.

Animals↗

The gene coding for the p68 calcium-binding protein is localised to bands q32-q34 of human chromosome 5, and to mouse chromosome 11.

The gene coding for human p68, a membrane-associated calcium-binding protein, has been assigned to chromosome 5, using a cDNA clone to probe genomic DNA from rodent-human somatic cell hybrids by Southern hybridisation. The gene was localised, by in situ hybridisation, to 5q32-34. The murine gene was assigned to chromosome 11, using a murine cDNA clone to probe genomic DNA from rodent-rodent somatic cell hybrids.

Animals↗

Deletion of c-ets1 and T3 gamma loci from the 11q- chromosome in the human monoblastic cell line U937.

The 11q- chromosome in the human monoblastic cell line U937 appears to be derived from an interstitial deletion in bands 11q21-23/24 or a translocation with an unknown chromosome. We show here by in situ hybridisation that this chromosome has lost the c-ets1 and T3 gamma loci. C-ets1 and T3 gamma sequences were not detected on any chromosomes besides the normal 11, indicating either that they were lost from the genome or that the chromosome to which they were translocated was not present in a high enough proportion of the cells to be detected by in situ hybridisation. No DNA rearrangements were found with three different restriction enzymes in the c-ets1, N-CAM, Thy-1 and c-sea genes detected by our probes. There was also no detectable rearrangement in the c-fms gene which was shown to be translocated from chromosome 5 to chromosome 1 in a subline of U937. The size of the c-fms and c-ets1 messages were normal. The possible significance of these findings is discussed.

Blotting, Southern↗

Multiple tandem 18-kb sequences clustered in the region of the acute promyelocytic leukemia breakpoint on chromosome 17.

This paper describes the cloning of an 18-kb sequence present in approximately 30 copies on chromosome 17. Most of these are clustered in the region of the breakpoint associated with acute promyelocytic leukemia (APL). These copies map both above and below the breakpoint, and pulsed field gel analysis indicates that the majority of these sequences lie within a region of approximately 2 megabases. The organization of these sequences appears to be that of large imperfect palindromes.

Animals↗

Characterisation of human thyroid epithelial cells immortalised in vitro by simian virus 40 DNA transfection.

Human primary thyroid follicular epithelial cells were transfected with a plasmid containing an origin-defective SV40 genome (SVori-) to produce several immortal cell lines. Two of the 10 cell lines analysed expressed specific features of thyroid epithelial function (iodide-trapping and thyroglobulin production). These two lines were characterised in detail and found to be growth factor-independent, capable of anchorage-independent growth at low frequency but non-tumorigenic in nude mice. These differentiated, These differentiated, partially transformed cell lines were shown to be suitable for gene transfer at high frequency using simple coprecipitation techniques.

Adult↗

CpG island clones from a deletion encompassing the gene for adenomatous polyposis coli.

Adenomatous polyposis coli (APC), a dominantly inherited disorder, has been mapped to chromosome 5q15-q21 by family linkage studies. Cells from patients with deletions in this region, in one case associated with polyposis in a family, have been used to construct human hamster hybrid cell lines that retain either the normal or deleted chromosome 5. These lines have been used to identify markers from the region of the polyposis gene obtained by cloning the ends of 0.5- to 2-megabase BssHII fragments purified by pulsed-field gel electrophoresis. Three markers are described that map within the deletions and must therefore be close to the APC gene.

Adenoma↗

Assignment of the gene encoding the beta-subunit of the human fibronectin receptor (beta-FNR) to chromosome 10p11.2.

A cDNA corresponding to the beta-subunit of the human fibronectin receptor (beta-FNR) was used as a probe in Southern blot analysis of mouse/human somatic cell hybrid DNAs and in in situ hybridization to metaphase chromosomes. The beta-FNR cDNA detects sequences present on human chromosome 10 as well as recognizing homologous sequences in the genome of the mouse parent of the somatic cell hybrids. In situ hybridization refined the localization of human sequences reacting with the beta-FNR cDNA to 10p11.2. The A-1A5 monoclonal antibody which recognizes the beta-subunit of the fibronectin receptor on the cell surface was used to confirm that the sequences present on chromosome 10 correspond to those required for expression of beta-FNR.

Animals↗

Assignment of the gene coding for the alpha-subunit of prolyl 4-hydroxylase to human chromosome region 10q21.3-23.1.

Prolyl 4-hydroxylase, an alpha 2 beta 2 tetramer, catalyzes the formation of 4-hydroxyproline in collagens by the hydroxylation of proline residues in peptide linkages and plays a crucial role in the synthesis of these proteins. The gene for the beta-subunit of prolyl 4-hydroxylase has recently been mapped to the long arm of human chromosome 17, at band 17q25. We report here chromosomal localization of the gene for the catalytically and regulatorily important alpha-subunit of human prolyl 4-hydroxylase. Analysis of 24 rodent x human cell hybrids by Southern blotting with cDNA probes for the human alpha-subunit indicated complete cosegregation of the gene for the alpha-subunit with human chromosome 10. A cell hybrid containing only part of chromosome 10 mapped the gene to 10q11----qter. In situ hybridization mapped the gene to 10q21.3-23.1. The gene for the alpha-subunit is thus not physically linked to that for the beta-subunit of the enzyme.

Animals↗

The human LFA-3 gene is located at the same chromosome band as the gene for its receptor CD2.

Lymphocyte function-associated antigen 3 (LFA-3) is a widely distributed cell surface glycoprotein that has been assigned a role in cell-cell adhesion on the basis of its capacity to bind to the T-lymphocyte CD2 antigen. The amino acid sequences of the extracellular domains of these two antigens, predicted from their cDNA sequences, show significant similarities, and both are members of the immunoglobulin supergene family. In this communication, a probe prepared from LFA-3 cDNA has been used in Southern blot analyses of somatic cell hybrids and in in situ hybridization to assign the LFA-3 gene to the human chromosome band 1p13. This is the same location previously assigned to CD2. Thus the LFA-3 and CD2 genes have probably arisen by duplication of a common evolutionary precursor. These genes therefore represent a further instance in which related members of the immunoglobulin superfamily are located in adjacent regions of the genome.

Animals↗

Biochemical and genetic analysis of the OKa blood group antigen.

The monoclonal antibody TRA-1-85 recognizes a cell surface antigen which is expressed by all human cell types tested, including red blood cells (RBCs), but not by mouse cells. All the human RBCs tested were TRA-1-85 positive except those with the rare phenotype Ok(a-). Oka is a blood group antigen of very high frequency and only three unrelated Ok(a-) people are known. The red cells of all three propositi were negative with the TRA-1-85 antibody. To confirm the relationship between the TRA-1-85 antibody and anti-Oka, the immune antibody found in the serum of Ok(a-) individuals, Western blot analysis was used: the TRA-1-85 antibody and anti-Oka gave identical but complex patterns of reactivity in Western blot analysis of human cell lysates or membranes. This suggests that the anti-Oka and TRA-1-85 antibodies recognize the same cell-surface determinant and implies that Oka is not restricted in its expression to the surface of RBCs but is expressed on white blood cells (WBCs) of Ok(a+) individuals and all human cell lines tested to date. WBCs from one of the Ok(a-) propositi were tested and found to be negative with the TRA-1-85 antibody. Finally, the species specificity of the TRA-1-85 antibody has been exploited by the use of somatic cell hybrids and DNA transfection techniques to examine the genetic control of the Oka antigen defined by the TRA-1-85 antibody. We report that the determinant is controlled by a single gene OK present on human chromosome 19.

Animals↗

Karyotypic analysis of the human monoblastic cell line U937.

Karyotypes of three sublines of the human cell line U937 showed considerable variation, but all contained four consistent marker chromosomes (i.e., 3q-, 11q-, 16p+, and 17p- chromosomes). The 11q- chromosome appeared to be derived from either an interstitial deletion in bands 11q21-23 or from a translocation with an unidentified chromosome. The presence of this chromosome was of particular interest because rearrangements of chromosome #11 at band 11q23 are often associated with malignancies of the monocytic lineage. The possible significance of these findings is discussed.

Chromosome Aberrations↗

Characterization of a continuous cell line in culture established from a Krukenberg tumour of the ovary arising from a primary gastric adenocarcinoma.

A unique cell line has been established in culture from a biopsy taken from a Krukenberg tumour of the ovary arising from a primary gastric adenocarcinoma. This continuous cell line, designated KS-1, displayed epithelial-type morphological characteristics and approx. 1% of the cells had eccentric nuclei featuring the signet ring-like cells observed in the original tumour: these proved positive for neutral and acidic mucopolysaccharides. KS-1 cells have been maintained in suspension culture and had a population doubling time in logarithmic growth of approx. 28 h. They readily formed colonies in soft agar or agarose with efficiencies of 10-15%, but failed to produce tumours on inoculation into nude mice. KS-1 cells had a modal chromosome number of 60-65, with a range of 48-77%. Ten to 30 double minutes were present in most cells and several clonal marker chromosomes were identified. The effects of a 24 h in vitro exposure of KS-1 cells to a range of concentrations of 5-fluorouracil, adriamycin, mitomycin C or cisplatin have been quantitated by clonogenic assay and these values have been compared with those reported using a range of other human tumour cell lines, under comparable experimental conditions.

Adenocarcinoma↗

Construction of a genetic map of human chromosome 17 by use of chromosome-mediated gene transfer.

We used somatic-cell hybrids, containing as their only human genetic contribution part or all of chromosome 17, as donors for chromosome-mediated gene transfer. A total of 54 independent transfectant clones were isolated and analyzed by use of probes or isoenzymes for greater than 20 loci located on chromosome 17. By combining the data from this chromosome-mediated gene transfer transfectant panel, conventional somatic-cell hybrids containing well-defined breaks on chromosome 17, and in situ hybridization, we propose the following order for these loci: pter-(TP53-RNP2-D17S1)-(MYH2-MYH1)-D17Z 1-CRYB1-(ERBA1-GCSF-NGL)-acute promyelocytic leukemia breakpoint-RNU2-HOX2-(NGFR-COLIAI-MPO)-GAA-UM PH-GHC-TK1-GALK-qter. Using chromosome-mediated gene transfer, we have also regionally localized the random probes D17S6 to D17S19 on chromosome 17.

Animals↗