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D D Patel

Publications and source records attributed to D D Patel.

At least 91 records · Page 5Linked to original sources

Thymocytes and cultured thymic epithelial cells express transcripts encoding alpha-3, alpha-5 and beta-4 subunits of neuronal nicotinic acetylcholine receptors: preferential transcription of the alpha-3 and beta-4 genes by immature CD4 + 8 + thymocytes.

Thymic tissues express transcripts encoding the alpha-3, alpha-5 and beta-4 subunits of nicotinic neuronal acetylcholine receptors (AcChRs) suggesting that neuronal AcChRs similar to those expressed in ganglia are expressed in the thymus. Transcription occurs in both isolated thymocytes and thymic epithelial cells. RT-PCR analyses of thymocyte subsets indicate that immature CD4 + 8 + thymocytes express higher levels of the alpha-3 and beta-4 transcripts than more mature thymocytes. Compared to freshly isolated thymocytes, peripheral blood lymphocytes do not express alpha-3 and beta-4 AcChR subunit transcripts. Cultured thymocytes rapidly down-regulate transcription of the alpha-3 and beta-4 AcChR subunit genes by a process that is not reversed by stimulation with phytohemagglutinin and IL-2. Thus our results indicate that there is transcriptional regulation of neuronal AcChR subunit genes during the process of thymocyte maturation and that factors within the thymic microenvironment influence expression of the alpha-3 and beta-4 AcChR subunit genes by developing T cells.

Amyloid beta-Protein Precursor↗

CD6-ligand interactions: a paradigm for SRCR domain function?

The scavenger receptor cysteine-rich (SRCR) superfamily, which includes proteins expressed by leukocytes, can be subdivided into groups A and B. Group B contains the lymphocyte cell-surface receptor CD6. This article reviews recent progress in understanding the interaction between CD6 and its ligand, activated leukocyte cell adhesion molecule (ALCAM). Analysis of the CD6-ALCAM interaction may help to understand how other SRCR domains bind to their ligands.

Activated-Leukocyte Cell Adhesion Molecule↗

Haemangiopericytoma: current status, diagnosis and management.

Haemangiopericytoma (HPC) is a rare tumour, characterized by unidentifiable light microscopic features. Despite first being described over 50 years ago, nothing much was known about this tumour until the early 1980s, when ultrastructural studies and tumour markers made it possible to differentiate it from other mesenchymal tumours. Advancements in radiology and the emergence of MRI technology helped surgeons in better planning. Pre-operative vascular embolization helped to reduce the menace of operative haemorrhage. Improvements in localization and delivery of radiotherapy, coupled with early diagnosis, has tremendously improved the treatment outcome of haemangiopericytoma.

Hemangiopericytoma↗

The insulin gene is transcribed in the human thymus and transcription levels correlated with allelic variation at the INS VNTR-IDDM2 susceptibility locus for type 1 diabetes.

Type 1, or insulin-dependent diabetes mellitus (IDDM) is an autoimmune disease associated with loss of tolerance to several pancreatic islet cell molecules, including insulin, glutamic acid decarboxylase (GAD), ICA69 and the tyrosine phosphatase IA-2 (refs 1-3). Among several predisposing loci, IDDM2 maps to the insulin gene (INS) VNTR (variable number of tandem repeats) minisatellite on chromosome 11p15 (refs 4-9). Allelic variation at this VNTR locus correlates with steady-state levels of INS mRNA in pancreas and transfected rodent cell lines, but it is difficult to reconcile the association of lower INS mRNA levels in the pancreas with class III VNTRs that are dominantly protective from IDDM. We show that during fetal development and childhood, mRNAs for insulin and other islet cell autoantigens (GAD, ICA69, IA-2) are expressed at low levels in the human thymus. Critically, we also detect proinsulin and insulin protein. VNTR alleles correlate with differential INS mRNA expression in the thymus where, in contrast to the pancreas, protective class III VNTRs are associated with higher steady-state levels of INS mRNA expression. This finding provides a plausible explanation for the dominant protective effect of class III VNTRs, and suggests that diabetes susceptibility and resistance associated with IDDM2 may derive from the VNTR influence on INS transcription in the thymus. Higher levels of (pro)insulin in the thymus may promote negative selection (deletion) of insulin-specific T-lymphocytes which play a critical role in the pathogenesis of type-1 diabetes.

Aging↗

Comparison of the genetic defect with LDL-receptor activity in cultured cells from patients with a clinical diagnosis of heterozygous familial hypercholesterolemia. The Familial Hypercholesterolaemia Regression Study Group.

In this study we have analyzed the genetic defect in 42 patients with a diagnosis of heterozygous familial hypercholesterolemia (FH) by Southern blotting, SSCP, and sequencing of PCR-amplified fragments of genomic DNA or sequencing of RT-PCR products from mRNA in cultured cells. The apoB Arg3500Gln mutation was identified in five patients. A molecular defect in the LDL-receptor gene was confirmed in 23 patients; 16 of these mutations have not been described before. No defect in the coding region, intron:exon junctions or proximal promoter of the LDL-receptor gene or in the region of the apoB gene coding for the LDL-receptor binding domain was found in the remaining 14 patients. LDL-receptor activity and protein content of cultured lymphoblasts from the patients was significantly lower in cells from patients with severe rather than mild LDL-receptor mutations. Cells from four patients with no detectable defect showed reduced LDL receptor activity compared with eight normal cell lines, whereas six others had reduced LDL-receptor activity but LDL-receptor protein content within the normal range. Cells from four patients appeared to have normal LDL-receptor function. Cells from two patients with a defined defect also had LDL-receptor activity within the normal range. The findings demonstrate the problems involved in the genetic diagnosis of FH in patients.

Adult↗

Glycoprotein electrophoretic pattern in sera of patients with oral precancerous conditions and upper aerodigestive tract cancer.

Cancer of the upper aerodigestive tract is one of the leading sites of human malignancies in India. Various glycoproteins have been claimed to be specifically associated with cancer. Serum glycoprotein electrophoresis was carried out in sera obtained from 23 healthy individuals [10 without habit of tobacco consumption (NHT) 13 with habit of tobacco consumption (WHT)], 46 patients with oral precancerous conditions (OPC) and 110 untreated patients with upper aerodigestive tract cancer. Eighty-six samples from the cancer patients were also collected after initiation of anticancer therapy. The albumin, alpha, beta and gamma region glycoproteins were quantitated by densitometric scanning after separation by polyacrylamide disc gel (PADG) electrophoresis. Mean values of albumin and alpha region glycoproteins were significantly lower in WHT and patients with OPC as compared to NHT. The gamma region glycoproteins were significantly elevated in WHT, patients with OPC and untreated cancer patients as compared to the NHT. The albumin region glycoproteins were significantly low, whereas, gamma region glycoproteins were significantly elevated in nonresponders as compared to their pretreatment levels. The glycoprotein values in complete responders were comparable with NHT. An extra glycoprotein band was found in the post beta region, in most of the individuals (>50%) with habit of tobacco consumption in all the groups. There was a decrease in the albumin/gamma, alpha/gamma and beta/gamma values in patients with OPC as well as untreated cancer patients as compared to NHT. Albumin/gamma, alpha/gamma and beta/gamma values were lower in nonresponders as compared to their pretreatment value. The results indicate that the alterations in glycoprotein electrophoresis pattern may be useful for early detection of cancer of the upper aerodigestive tract. It may also be helpful in treatment monitoring of cancer patients.

Adolescent↗

Expression of CD44 and variant isoforms in cultured human retinal pigment epithelial cells.

PURPOSE: CD44 is a major hyaluronic acid receptor that exists as a number of isoforms, generated by alternative splicing of 9 "variant" exons in humans (v2 to v10) and 10 exons in rodents. Little is known about the expression and function of CD44 in human retinal pigment epithelium (RPE) cells. Therefore, the authors determined whether human RPE cells express CD44, and whether the expression differs depending on the proliferative status of the cells. METHODS: Human RPE cells were harvested from normal donor eyes and propagated in culture. Total RNA was extracted from cultured cells. mRNA expression of CD44 was determined by reverse transcription-polymerase chain reaction (RT-PCR), followed by cloning and sequencing of the PCR products, and by Southern hybridization. CD44 cell surface expression was measured by flow cytometry. Western hybridization and immunohistochemistry were used to determine the CD44 immunoreactivity of cultured human RPE cells and normal human RPE cells in situ. RESULTS: The standard form of CD44 mRNA and variant isoforms containing exon v6 or v10 were expressed in cultured human RPE cells. CD44 mRNA and protein levels were increased in proliferating human RPE cells compared with density-arrested counterparts. Addition of 1 microM retinoic acid enhanced the cell density-induced downregulation of CD44 mRNA, but did not significantly affect the CD44 cell surface protein expression. As previously reported, CD44 immunoreactivity was not detected in normal human RPE cells in situ. CONCLUSIONS: Cultured human RPE cells express CD44 standard form and variant isoforms containing exon v6 or v10, which are preferentially expressed by proliferating human RPE cells.

Blotting, Western↗

Prognostic significance of tumor angiogenesis in advanced breast carcinoma: an Indian experience.

Angiogenesis is essential for tumor growth and metastasis. In the present study we investigated the prognostic significance of microvessels (MV) density using immunohisto-localization of factor VIII antigen in 51 breast cancer patients. We counted microvessels per 200x field in the most active areas of neovascularization by staining factor VIII related antigen and graded MV density and correlated with stage, LN involvement and histologic grade. Patients who subsequently developed metastases had significantly high MV counts than patients without metastatic disease (p < 0.001). Patients who subsequently died of the disease had significantly high mean microvessels counts than patients who remained alive at the end of 5 years (p < 0.001). As density of factor VIII antigen staining increased the survival decreased (p < 0.001). All the patients having > 25 MV per 200x field had tumor recurrence faster as compared with patients having < 25 MV (p < 0.02). Thus, the MV count correlates with the prediction for metastasis and poor survival. Such an indicator would be useful in selection of a subgroup of patients with breast cancer who are at high risk for having occult metastasis at presentation and subsequently would benefit from aggressive therapy.

Breast Neoplasms↗

The novel cholesterol-lowering drug SR-12813 inhibits cholesterol synthesis via an increased degradation of 3-hydroxy-3-methylglutaryl-coenzyme A reductase.

SR-12813 (tetra-ethyl 2-(3,5-di-tert-butyl-4-hydroxyphenyl)ethenyl-1, 1-bisphosphonate) lowers plasma cholesterol in five species. In this paper we investigate the underlying mechanism using Hep G2 cells. SR-12813 inhibited incorporation of tritiated water into cholesterol with an IC50 of 1.2 microM but had no effect on fatty acid synthesis. Furthermore, SR-12813 reduced cellular 3-hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA) reductase activity with an IC50 of 0.85 microM. The inhibition of HMG-CoA reductase activity was rapid with a T1/2 of 10 min. After a 16-h incubation with SR-12813, mRNA levels of HMG-CoA reductase and low density lipoprotein (LDL) receptor were increased. The increased expression of LDL receptor translated into a higher LDL uptake, which can explain the primary hypocholesterolemic effect of SR-12813 in vivo. Western blot analysis indicated that the amount of HMG-CoA reductase protein rapidly decreased in the presence of SR-12813. Pulse-chase experiments with [35S]methionine showed that the T1/2 of HMG-CoA reductase degradation decreased in the presence of SR-12813 from 90 to 20 min. Pre-incubation with 50 microM of lovastatin did not prevent the effects of SR-12813 on HMG-CoA reductase degradation, indicating that the compound does not need mevalonate-derived regulators for its action. It is concluded that SR-12813 inhibits cholesterol synthesis mainly by an enhanced degradation of HMG-CoA reductase.

Acetates↗

Node negative breast carcinoma: hyperprolactinemia and/or overexpression of p53 as an independent predictor of poor prognosis compared to newer and established prognosticators.

The purpose of this study was to investigate a prognostic indicator that can differentiate node negative breast cancer patients (N = 39, T2N0M0) with high risk and low risk for the development of recurrence or metastases. Preoperative plasma prolactin (PRL) was estimated by radioimmunoassay. The expression of PRL, p53, nm23, and c-erbB2 was investigated by immunohistochemical (IHC) localization; cathepsin D (CD, Enzyme Linked Sorbant Assay) and estrogen- and progesterone-receptors (ER and PR, Dextran coated charcoal method) were estimated in the tumor cytosols. The follow-up period was 2-6 years. Statistical comparisons were made between each marker for relapse-free survival (RFS) and overall survival (OS). Of the 39 patients, 18 had hyperprolactinemia (PRL > 20.0 ng/ml plasma), whereas overexpression of p53 was observed in 55% (17/31) tumors. These were independently and in combination associated with a reduced RFS and OS. The rest of the investigated markers did not show promising results. Hyperprolactinemia and/or overexpression of p53 were associated with aggressiveness of the tumor, early disease relapse or metastases, and poor OS in patients with node negative breast cancer. These two markers may enhance our ability to identify node negative breast cancer patients with aggressive tumors, for whom the use of adjuvant chemo and/or endocrine therapy is unequivocally justified.

Adult↗

A pathogenetic role for TNF alpha in the syndrome of cachexia, arthritis, and autoimmunity resulting from tristetraprolin (TTP) deficiency.

Tristetraprolin (TTP) is a widely expressed potential transcription factor that contains two unusual CCCH zinc fingers and is encoded by the immediate-early response gene, Zfp-36. Mice made deficient in TTP by gene targeting appeared normal at birth, but soon manifested marked medullary and extramedullary myeloid hyperplasia associated with cachexia, erosive arthritis, dermatitis, conjunctivitis, glomerular mesangial thickening, and high titers of anti-DNA and antinuclear antibodies. Myeloid progenitors from these mice showed no increase in sensitivity to growth factors. Treatment of young TTP-deficient mice with antibodies to tumor necrosis factor alpha (TNF alpha) prevented the development of essentially all aspects of the phenotype. These results indicate a role for TTP in regulating TNF alpha synthesis, secretion, turnover, or action. TTP-deficient mice may serve as useful models of the autoimmune inflammatory state resulting from chronic effective TNF alpha excess.

Animals↗

Genetic variation at a splicing branch point in intron 9 of the low density lipoprotein (LDL)-receptor gene: a rare mutation that disrupts mRNA splicing in a patient with familial hypercholesterolaemia and a common polymorphism.

Mutations in the coding sequence, splice junctions or promoter of the gene for the low density lipoprotein (LDL) receptor are known to be the underlying cause of familial hypercholesterolaemia (FH), but mutations of this type cannot be identified in all patients with a clinical diagnosis of FH. We show here that minor sequence changes elsewhere in introns can be deleterious. A minor rearrangement 30 bp upstream from the junction of intron 9 with exon 10 was detected as a heteroduplex in amplified genomic DNA from one out of 300 heterozygous FH patients. The mutation destroys the only consensus sequence for a splicing branch point in intron 9 and analysis of mRNA from cells from the patient showed that it causes retention of intron 9 or, more rarely, in the use of cryptic splice sites in exon 10. The effect of the mutation on mRNA splicing was confirmed by analysis of mRNA in cells transfected with LDL-receptor mini-gene constructs expressing exons 9 and 10, together with the normal or mutant intron 9. A common C/T polymorphism within this branch point in intron 9 of the LDL-receptor gene does not affect mRNA splicing in vitro and is not associated with significant differences in mean plasma cholesterol concentration in a healthy population.

Adult↗

Functional association of CD7 with phosphatidylinositol 3-kinase: interaction via a YEDM motif.

Human CD7 is a 40 kDa protein expressed on thymocytes, early T, B, NK and myeloid lineage cells in bone marrow, and on mature T and NK cells. Previous studies suggested human CD7 may be involved in T and NK cell activation and/or adhesion, and that CD7-mediated cell activation may be transduced via the lipid kinase phosphatidylinositol 3-kinase (Pi3-kinase), a heterodimeric cytosolic protein consisting of an 85 kDa adaptor subunit that is coupled to a 110 kDa catalytic subunit. It has recently been shown that a sequence motif present in the cytoplasmic tall of both human and mouse CD7 bound with high affinity to recombinant SH2 domains present in the p85 subunit of Pi3-kinase. In this work, we used co-precipitation with anti-CD7 mAb 3A1 and recombinant p85 SH2-GST fusion proteins and peptide competition analysis to demonstrate that the cytoplasmic tail of CD7 interacts with a functional Pi3-kinase via the pTyr-X-X-Met motif. Furthermore, we show that cross-linking of CD7 markedly increased the amount of Pi3-kinase activity associated with CD7. The interaction of CD7 with the Pi3-kinase signal transduction pathway provides a mechanism for the previously observed functional responses attributed to CD7-mediated T and NK cell activation.

Amino Acid Sequence↗

Characterization of human CD7 transgenic mice.

CD7 is a 40-kDa transmembrane glycoprotein member of the lg gene superfamily expressed on most peripheral blood T lymphocytes and NK cells. CD7 is also expressed on myeloid, NK, B, and T cell precursors during adult hematopoiesis. Because Thy-1 is absent in human thymocytes and peripheral blood T cells and shows structural similarities to the human CD7 gene, we have suggested that human CD7 may be a functional homologue in humans of mouse Thy-1. To study the tissue-specific expression of the CD7 gene utilizing its own promoter, we constructed transgenic mice that contained both the coding and flanking regions of the human CD7 gene. We found that human CD7 was expressed in transgenic mice in T, B, NK, and myeloid lineages and was induced with T cell activation. Unlike the expression of CD7 in humans, the CD7 transgene was present on mature B lymphocytes and macrophages. Like mouse Thy-1, transgenic human CD7 was expressed in immature and mature T cells and in Sca-1+ bone marrow mononuclear cells. Unlike mouse Thy-1, the human CD7 transgene was not expressed in mouse brain or fibroblasts. The human CD7 transgene was expressed during fetal development before mouse Thy-1 in fetal liver mononuclear cells. Expression of the human CD7 transgene did not alter mouse thymopiesis or Thy-1 expression. Taken together, these data demonstrated that the CD7 transgene contained sufficient regulatory regions to direct hematopoietic expression and mitogenic induction. The pattern of CD7 transgene expression more closely resembled that of CD7 in humans than that of mouse Thy-1.

Animals↗

Cloning, mapping, and characterization of activated leukocyte-cell adhesion molecule (ALCAM), a CD6 ligand.

Antibody-blocking studies have demonstrated the role of CD6 in thymocyte-thymic epithelial (TE) cell adhesion. Here we report that CD6 expressed by COS cells mediates adhesion to TE cells and that this interaction is specifically blocked with an anti-CD6 monoclonal antibody (mAb) or with a mAb (J4-81) that recognized a TE cell antigen. We isolated and expressed a cDNA clone encoding this antigen and show that COS cells transfected with this cDNA bind a CD6 immunoglobulin fusion protein (CD6-Rg). This antigen, which we named ALCAM (activated leukocyte-cell adhesion molecule) because of its expression on activated leukocytes, appears to be the human homologue of the chicken neural adhesion molecule BEN/SC-1/DM-GRASP. The gene was mapped to human chromosome 3q13.1-q13.2 by fluorescence in situ hybridization of cDNA probes to metaphase chromosomes. We prepared an ALCAM-Rg fusion protein and showed that it binds to COS cell transfectants expressing CD6, demonstrating that ALCAM is a CD6 ligand. The observations that ALCAM is also expressed by activated leukocytes and that both ALCAM and CD6 are expressed in the brain suggest that ALCAM-CD6 interactions may play a role in the binding of T and B cells to activated leukocytes, as well as in interactions between cells of the nervous system.

Activated-Leukocyte Cell Adhesion Molecule↗

Abnormal structure and co-operative binding of low-density lipoprotein receptors containing the Glu-80-->Lys mutation.

The properties of low-density lipoprotein (LDL) receptors containing a Glu to Lys substitution at position 80 have been studied in fibroblasts from a homozygous familial hypercholesterolaemic subject (MB) and in monkey COS cells transfected with the mutant cDNA. Receptors containing the Glu-80-->Lys mutation were processed more slowly than the normal protein and only approx. 50% reached the surface as the mature form. Both cell types exhibited a normal concentration binding curve for beta-very-low-density lipoproteins (beta-VLDL) but an atypical, sigmoidal curve for LDL. The mature mutant receptor protein migrated abnormally slowly on SDS-PAGE under non-reducing conditions but normally under reducing conditions or after treatment with neuraminidase. It also showed an unusual ability to form dimers that were stable in detergents. Transfected normal and mutant receptors were apparently cleaved on the surface of the cells to give a product lacking the NH2-terminal portion of the protein, which was resistant to further proteolytic digestion. The results suggest that the Glu-80-->Lys substitution produces a change in the conformation of the protein, stabilized by polysaccharide chains, which results in a strong self-association of receptor molecules that affects their ability to bind LDL.

Animals↗