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M Valentine

Publications and source records attributed to M Valentine.

At least 37 records · Page 2Linked to original sources

Chromosomal localization and cDNA cloning of the human DBP and TEF genes.

We have isolated cDNA and genomic clones and determined the human chromosome positions of two genes encoding transcription factors expressed in the liver and the pituitary gland: albumin D-site-binding protein (DBP) and thyrotroph embryonic factor (TEF). Both proteins have been identified as members of the PAR (proline and acidic amino acid-rich) subfamily of bZIP transcription factors in the rat, but human homologues have not been characterized. Using a fluorescence in situ hybridization technique, the DBP locus was assigned to chromosome 19q13, and TEF to chromosome 22q13. Each assignment was confirmed by means of human chromosome segregation in somatic cell hybrids. Coding sequences of DBP and TEF, extending beyond the bZIP domain to the PAR region, were highly conserved in both human-human and interspecies comparisons. Conservation of the exon-intron boundaries of each bZIP domain encoding exon suggested derivation from a common ancestral gene. DBP and TEF mRNAs were expressed in all tissues and cell lines examined, including brain, lung, liver, spleen, and kidney. Knowledge of the human chromosome locations of these PAR proteins will facilitate studies to assess their involvement in carcinogenesis and other fundamental biological processes.

Amino Acid Sequence↗

Alterations in the PITSLRE protein kinase gene complex on chromosome 1p36 in childhood neuroblastoma.

p58cdc2L1, a protein kinase implicated in apoptotic signaling, is one of eight separate kinases encoded by three tandemly duplicated and linked genes, which we have termed PITSLRE A, B and C. One allele of this complex on chromosome 1 was either deleted or translocated in each of 18 neuroblastoma cell lines with cytogenetically apparent 1p alterations. A protein encoded by this locus, PITSLRE gamma 1, was absent in three of the lines and a smaller, apparently truncated, PITSLRE polypeptide was found in another line. These findings identify a novel gene complex on chromosome 1 that encodes a protein kinase subfamily. We suggest that the PITSLRE locus may harbour one or more tumour suppressor genes affected by chromosome 1p36 modifications in neuroblastoma.

Alleles↗

Integrated health and education input in the development of educational resources about asthma for schools.

The development of educational packages on health-related topics has become common in school curricula. This paper describes an integrated health and education input in the development of an educational package about asthma for Year 8 high school students. Ownership and educational relevance of the package (ensuring its appropriateness for inclusion within the Personal Development/Health/Physical Education curriculum) was achieved by collaboration between teachers with an understanding of the principles of curriculum design and health professionals with content knowledge about asthma. The model used for the production of the package about asthma could be extended to other health topics.

Adolescent↗

Preservation of functioning human thyroid "organoids" in the severe combined immunodeficient mouse. III. Thyrotropin independence of thyroid follicle formation.

The severe combined immunodeficient (scid) mouse allows the in vivo reconstitution of thyroid follicles from thyroid monolayer cells when transplanted sc within an extracellular basement membrane matrix. After 2-3 weeks, these human thyroid organoids show an active microfollicular histology and secrete human thyroglobulin into the murine serum in response to the administration of recombinant human TSH. Furthermore, such organoids survive for more than 3 months in this functional state. To assess whether thyroid follicular reconstitution was TSH dependent, we examined organoid follicular reconstruction in T3-induced hyperthyroid scid mice, in which endogenous murine TSH was presumed to be totally suppressed. By providing water with 12 micrograms/ml T3, we increased the murine serum T3 levels from a mean of 1.9 nmol/liter in controls to greater than 12.0 nmol/liter. After 3 weeks, thyroid cells derived from normal human thyroid monolayers were suspended in an extracellular basement membrane matrix, and the suspension was transplanted sc into scid mice (with or without T3-induced hyperthyroidism) and allowed to reconstitute. Histological examination 4 weeks later showed a similar degree of thyroid follicle formation in mice treated with or without T3, indicating that the hyperthyroid state had caused no interference with thyroid follicle reconstitution. This was further confirmed by transmission electron microscopy, which demonstrated normal human thyroid follicle cell polarity in the organoids of both euthyroid and hyperthyroid mice. In addition, using an extracellular basement membrane preparation with reduced growth factor (epidermal growth factor, insulin-like growth factor-I, and platelet-derived growth factor) levels also allowed normal thyroid follicle formation in T3-fed mice. These data demonstrate that in vivo thyroid follicle formation is TSH independent and that extrathyroidal epidermal growth factor, insulin-like growth factor-I, and platelet-derived growth factor may be relatively unimportant. The factors and molecular mechanisms leading to follicular reorganization of adult human thyroid cells remain to be determined, but are likely to depend largely on intrathyroidal growth factor secretion and cell-cell interaction.

Animals↗

Diagnostic use of recombinant human thyrotropin in patients with thyroid carcinoma (phase I/II study).

Current diagnostic studies [radioiodine uptake and serum thyroglobulin (Tg) levels] for residual or metastatic thyroid tissue in patients with differentiated thyroid carcinoma require a hypothyroid status necessary for adequate endogenous TSH stimulation. However, almost all patients have symptoms of clinical hypothyroidism during this period. As shown in the present study, recombinant human TSH (rhTSH) allows stimulation of 131I uptake and Tg release from residual thyroid tissue in euthyroid patients. To assess safety, dosage, and preliminary efficacy, comparison was made of the stimulation of 131I uptake and Tg release after rhTSH administration and after T3 withdrawal in 19 patients after a recent thyroidectomy for differentiated thyroid carcinoma. Various doses (10-40 U) of rhTSH were injected im for 1-3 days in patients receiving suppressive doses of T3. Twenty-four hours after the last dose of rhTSH, 1-2 mCi 131I were administered, followed by a neck and whole body scan 48 h later. After discontinuing T3 for a median period of 19 days (range, 15-28), endogenous serum TSH levels were markedly elevated, and the patients were given a second dose of 131I and rescanned 48 h later. The injections of rhTSH were tolerated well. No major adverse effects were reported; nausea was reported in 3 (16%) and vomiting in 1 of the patients treated with high doses. The quality of life, as measured by two psychometric scales, was far better during rhTSH treatment than after T3 withdrawal. The peak levels of serum TSH (mean +/- SD) after a single dose of 10, 20, or 30 U were 127 +/- 19, 309 +/- 156, and 510 +/- 156 mU/L, respectively, and occurred 2-8 h after injection. Twenty-four hours after the injection, TSH levels decreased to 83 +/- 31, 173 +/- 73, and 463 +/- 148 mU/L in these treatment groups, respectively. The quality of the thyroid scans and the number of sites of abnormal 131I uptake were similar after rhTSH treatment and in the hypothyroid scans in 12 (63%) patients. Two additional sites of uptake in the chest and one in the thyroid bed, not visible on the hypothyroid scans, were identified in 3 (16%) patients after rhTSH. In 1 patient a focus of uptake was better visualized after rhTSH than after withdrawal. In 3 (16%) other patients, 1 lesion in the chest and 2 in the neck were seen only after T3 withdrawal.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Engraftment of human lymphocytes and thyroid tissue into scid and rag2-deficient mice: absent progression of lymphocytic infiltration.

To study human autoimmune thyroid disease in an animal model we have investigated the in vivo survival of human thyroid tissues and functionality of human lymphocytes in severe combined immunodeficient (scid) mice and recombination-activating gene (rag2) knockout mice. We found successful engraftment of human thyroid tissues in both scid and rag2-deficient mice. However, when peripheral blood mononuclear cells were transplanted ip, human immunoglobulin production was poor in rag2-deficient mice compared to that in scid mice (mean human immunoglobulin G levels at 6 weeks, 0.2 +/- 0.2 microgram/mL in two of eight rag2-deficient mice compared to 20.8 +/- 7.0 micrograms/mL in seven of nine scid mice; P < 0.05). We, therefore, only pursued the further use of scid mice and transplanted them with thyroid tissue from patients with either Graves' disease (four patients) or Hashimoto's thyroiditis (one patient). At the functional level, we observed transiently increased thyroid hormone levels (T4 peaking at 5.4 +/- 0.2 microgram/dL compared to a normal level of 2.6 +/- 0.2 microgram/dL); human autoantibodies to human thyroglobulin, human thyroid peroxidase, and the human TSH receptor were also detected in thyroid-transplanted mice. In contrast to recent reports, histological examination of the thyroid explants showed no increase in the lymphocytic infiltrate compared to the original donor tissue, nor was there any thyroid follicular destruction observed. In fact, many of the transplants demonstrated a marked diminution in the infiltrates over time, with an absence of HLA-DR antigen expression by both T-cells and thyrocytes. Cotransplanted allogeneic thyroid tissues were unremarkable in terms of lymphocytic infiltrates and showed intact morphology. Taken together, these data point to a relative degree of T-cell inactivity within the thyroid explants from the scid mouse. Hence, a factor(s) present in the patient with autoimmune thyroid disease that activates their thyroid-specific T-cells may be absent in this murine model as presently constructed.

Animals↗

Graves' disease thyroid tissue transplants in scid mice: persistent selectivity in hTcR Va gene family use.

We have analyzed the human T-cell receptor (hTcR) V alpha gene repertoire in thyroid tissue transplants of a patient with hyperthyroid Graves' disease. Blocks of thyroid tissue were transplanted subcutaneously into 10 mice with severe immunodeficiency (scid) and 4 weeks later 5 of the mice were injected intraperitoneally with autologous peripheral blood mononuclear cells (PBMC) (10(7) cells per mouse). After a further 3 weeks, mice were sacrificed and total cellular RNA and cDNA prepared from each of the explants. We used specific olingonucleotides in polymerase chain reactions (PCR) to amplify 18 different human hTcR V alpha gene families and the identity of the PCR fragments was confirmed by Southern blot analysis. Different samples of the donor thyroid tissue consistently expressed 9-10 of the 18 hTcR V alpha gene families screened (V alpha 1-7, 11, 12 & 15). A more marked bias in hTcR V gene family use was seen in each of the explants with a mean of only 2.8 V alpha gene families detected. After 7 weeks of transplantation, the thyroid explants largely reflected some of the same genes seen in the hTcR V gene repertoire of the donor tissue with particularly pronounced expression of V alpha 2 and V alpha 3 gene families. The transplantation of PBMC into the scid mice showed evidence for their accumulation within the transplanted thyroid tissues as judged by the appearance of additional hTcR V gene families expressed in these samples although the specificity of such accumulation remains unclear.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Coamplification of the CDK4 gene with MDM2 and GLI in human sarcomas.

The 34-kilodalton cyclin-dependent kinase, p34cdk4, is a major catalytic subunit of mammalian D-type cyclins, which act during the G1 phase of the cell cycle to enforce the decision of cells to enter S phase. A murine complementary DNA clone was used to clone the cognate human CDK4 gene, which was localized to human chromosome 12, band q13, by fluorescence in situ hybridization. Because this chromosomal band contains the GLI and MDM2 genes, which are frequently amplified in human sarcomas, we analyzed CDK4 copy number and expression in a panel of sarcoma cell lines. An osteosarcoma cell line, OsACL, manifested a 25-fold increased copy number of CDK4, amplified concordantly with both GLI and MDM2, whereas a rhabdomyosarcoma cell line, SJRH30, was found to have an amplicon that included CDK4 and GLI but not MDM2. CDK4 mRNA and protein were overexpressed in both cell lines, and nucleotide sequencing analysis indicated that the gene had not sustained mutations. These observations provide the first evidence for amplification of a gene encoding a cell division cycle protein kinase, complement recent data indicating that genes encoding D-type cyclins are targets of chromosomal rearrangement and gene amplification in tumor cells, and suggest that CDK4 amplification might contribute to oncogenesis.

Base Sequence↗

Protein kinases in divergent eukaryotes: identification of protein kinase activities regulated during trypanosome development.

The role of protein kinases in organisms that diverged early in the eukaryotic lineage is relatively unexplored. In this study, we determined that primitive parasitic protozoa possess multiple protein-serine kinases and inferred the presence of protein-tyrosine kinases through sensitive immunoblotting techniques. To further explore the role of protein kinases in parasite development, we examined the activity of eight renaturable protein kinases during the life cycle of the protozoan parasite Trypanosoma brucei. The activities of six protein-serine/threonine kinases were regulated during development, with several distinct patterns of regulation. In addition, an 89-kDa protein kinase was detected in dividing cells but not in nondividing cells. Our data indicate that even the most primitive eukaryotes possess a large complement of protein kinases, including protein-tyrosine kinases as well as protein-serine/threonine kinases. The data further suggest that protein kinases may play a pivotal role in regulation of proliferation and differentiation in protozoa.

Animals↗

Alveolar rhabdomyosarcoma with the t(2;13): cytogenetic findings and clinicopathologic correlations.

We describe here the clinical and pathologic features associated with a specific translocation, t(2;13), in alveolar rhabdomyosarcoma. Tumor specimens from 14 patients with a t(2;13)-positive alveolar rhabdomyosarcoma were studied for cytogenetic-clinicopathologic correlations. Three patients had occult primary tumors; nine patients had primary tumors of the trunk (mediastinal, pelvic, or rectal). The presence of the t(2;13) was ascertained from examination of tumor involved bone marrow in ten patients who had widespread metastatic disease at the time of diagnosis. Marrow involvement was so extensive in three cases that they were initially diagnosed as acute leukemia. Response to therapy was poor, with only five patients achieving a complete response. Twelve patients have died of their disease at a median survival time of 6 months from diagnosis and one is living with recurrent disease; only one patient survives free of disease.

Adolescent↗

The retinoblastoma protein binds to a family of E2F transcription factors.

E2F is a transcription factor that helps regulate the expression of a number of genes that are important in cell proliferation. Recently, several laboratories have isolated a cDNA clone that encodes an E2F-like protein, known as E2F-1. Subsequent characterization of this protein showed that it had the properties of E2F, but it was difficult to account for all of the suggested E2F activities through the function of this one protein. Using low-stringency hybridization, we have isolated cDNA clones that encode two additional E2F-like proteins, called E2F-2 and E2F-3. The chromosomal locations of the genes for E2F-2 and E2F-3 were mapped to 1p36 and 6q22, respectfully, confirming their independence from E2F-1. However, the E2F-2 and E2F-3 proteins are closely related to E2F-1. Both E2F-2 and E2F-3 bound to wild-type but not mutant E2F recognition sites, and they bound specifically to the retinoblastoma protein in vivo. Finally, E2F-2 and E2F-3 were able to activate transcription of E2F-responsive genes in a manner that was dependent upon the presence of at least one functional E2F binding site. These observations suggest that the E2F activities described previously result from the combined action of a family of proteins.

Amino Acid Sequence↗

Preservation of functioning human thyroid organoids in the scid mouse: 1. System characterization.

We have characterized a system for preserving reconstituted human thyroid follicles in vivo by transplanting human thyrocytes into mice with severe combined immunodeficiency (scid mice). Human thyroid organoids were constructed from thyroid monolayer cells derived from both normal and abnormal thyroid tissue, and embedded within a basement membrane preparation which was then transferred sc to scid mice. As early as 4 weeks, and as late as 3 months post transplantation, histological examination of human thyroid organoids demonstrated widespread neofollicle formation and colloid accumulation which stained positive for human thyroglobulin (hTg). Although there were no changes in murine serum T4 levels; the transplanted thyroid epithelial cells secreted hTg into the scid mouse circulation (with an average level of 29 micrograms/L). In addition, hTg release was stimulated in vivo by ip administration of recombinant human TSH (0.1-1.0 IU/mouse) achieving greater than 20-fold increases in scid mouse serum hTg levels. In situ immunohistochemistry showed that thyroid organoids derived from patients with Graves' disease retained scattered lymphocytes in peripolesis with the thyroid epithelial cells; those lymphocytes were identified as human T cells of the memory (CD45RO +), rather than naive, type. These data demonstrate that functioning human thyroid organoids establish in scid mice and remain responsive to TSH stimulation. The system offers a unique opportunity to examine human thyroid-lymphocyte interaction within the confines of a predictable animal model.

Animals↗

Genomic organization, chromosomal localization, and independent expression of human cyclin D genes.

Murine cDNA clones for three cyclin D genes that are normally expressed during the G1 phase of the cell cycle were used to clone the cognate human genes. Bacteriophage and cosmid clones encompassing five independent genomic loci were partially sequenced and chromosomally assigned by an analysis of somatic cell hybrids containing different human chromosomes and by fluorescence in situ hybridization to metaphase spreads from normal peripheral blood lymphocytes. The human cyclin D1 gene (approved gene symbol, CCND1) was assigned to chromosome band 11q13, cyclin D2 (CCND2) to chromosome band 12p13, and cyclin D3 (CCND3) to chromosome band 6p21. Pseudogenes containing sequences related to cyclin D2 and cyclin D3 mapped to chromosome bands 11q13 and 6p21, respectively. Partial nucleotide sequence analysis of exons within each gene revealed that the authentic human cyclin D genes are more related to their mouse counterparts than to each other. These genes are ubiquitously transcribed in human tumor cell lines derived from different cell lineages, but are independently and, in many cases, redundantly expressed. The complex patterns of expression of individual cyclin D genes and their evolutionary conservation across species suggest that each family member may play a distinct role in cell cycle progression.

Amino Acid Sequence↗

Relationship between chemical-induced fragile sites and chromosomal breakpoints in malignant cells in children.

Many fragile sites in the human genome occur at or near chromosomal breakpoints reportedly involved in translocations of DNA material in neoplastic cells. This fact has led some investigators to postulate that fragile sites have a pathogenic role in human neoplasia. To learn whether caffeine-induced fragile sites relate to breakpoints found in the neoplastic cells of an individual patient, we studied lymphocytes from the peripheral blood of 32 patients in remission from malignant disease. Lymphocytes were cultured in medium containing either 5-Fluoro-2'-deoxyuridine (FdU) or FdU plus caffeine, and G-banded metaphases were examined for nonrandom breaks. Analyses of completely G-banded malignant cell chromosomes from 31 of the 32 patients were available for comparison. In only once case, a 5-year-old child with acute lymphoblastic leukemia, did a caffeine-induced fragile site (1q44) coincide with a breakpoint in the neoplastic cells [dup(1)(q21-->q44)]. Our findings suggest that chromosomal abnormalities in childhood malignancies cannot generally be explained by the presence of FdU- or FdU plus caffeine-induced fragile sites.

Adolescent↗

Variant translocations of chromosome 13 in alveolar rhabdomyosarcoma.

In three cases of alveolar rhabdomyosarcoma with variant translocations, two tumors contained an identical translocation, t(1;13)(p36.1;q14); the third tumor contained a t(8;13)(p21;q14). All three patients were 2 years old, markedly younger than the median age for patients with t(2;13)-positive alveolar rhabdomyosarcoma. The alteration of genetic material on chromosome 13 may be of primary importance in the development of alveolar rhabdomyosarcoma.

Child, Preschool↗

Distinct patterns of tyrosine phosphorylation during the life cycle of Trypanosoma brucei.

Regulation of tyrosine phosphorylation is a critical element in controlling growth and differentiation in higher eukaryotes. We have determined that the protozoan Trypanosoma brucei, which diverged early in the eukaryotic lineage, possesses multiple proteins which react with a specific anti-phosphotyrosine antiserum. Anti-phosphotyrosine immunoprecipitates of [32P]orthophosphate-labeled cells were shown to contain phosphotyrosine by two-dimensional electrophoresis. Western analysis of cells from different stages of the life cycle demonstrates the appearance of tyrosine-phosphorylated proteins at 40-42 kDa during the transition from slender to stumpy blood-forms. Growth of procyclic form cells in orthovanadate resulted in increased levels of specific tyrosine-phosphorylated proteins. The demonstration of phosphotyrosine-containing proteins in T. brucei and their differential regulation during the life cycle suggests that tyrosine kinases and phosphatases may play an important role in the biology of primitive protozoa.

Animals↗

Malignant rhabdoid tumor: a highly malignant childhood tumor with minimal karyotypic changes.

Malignant rhabdoid tumors (MRT) are rare; thus very few cytogenetic studies of this type of tumor have been performed. We report the results of cytogenetic studies of 10 MRTs from various anatomic primary sites. Six cases had normal diploid karyotypes with no detectable rearrangements or aneuploidy except for occasional tetraploid cells. In 4 of these cases the tumor phenotype was verified by electron microscopic studies. In a seventh case only normal cells were identified in short-term culture, but a del(13)(q14) appeared after 4 months in culture. A soft tissue MRT contained a translocation, t(8;15)(q12;p11), and a liver MRT contained a del(3)(q21) or t(3;?)(q21;?). The single case of a primary brain MRT had monosomy 22 with deletion of part of the remaining chromosome 22. Our findings indicate that visible chromosomal rearrangements occur in fewer than half of MRTs. When combined with other reported series, our study indicates that monosomy 22 is a non-random chromosomal abnormality in primary MRT of the brain.

Brain Neoplasms↗

Excision of N-myc from chromosome 2 in human neuroblastoma cells containing amplified N-myc sequences.

Amplification of one of three growth-stimulating myc genes is a common method by which many tumor types gain a proliferative advantage. In metastatic human neuroblastoma, the amplification of the N-myc locus, located on chromosome 2, is a dominant feature of this usually fatal pediatric cancer. Of the many models proposed to explain this amplification, all incorporate as the initial step either disproportionate overreplication of the chromosomal site or recombination across a loop structure. The original locus is retained within the chromosome in the overreplication models but is excised in the recombination models. To test these models, we have used somatic cell hybrids to separate and analyze the chromosomes 2 from a neuroblastoma cell line containing in vivo amplified N-myc. Our results demonstrate that N-myc is excised from one of the chromosomes, suggesting that deletion is a requisite part of gene amplification in a naturally occurring system.

Animals↗