Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0017638 (glioma)
30,880 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

First described on pre-B leukemia cells, the common acute lymphoblastic leukemia antigen (cALLa) is also expressed on glioma cells in vitro. Its identity to neutral endopeptidase (NEP) (E.C.3.24.11) was corroborated by our finding that cALLa positive glioma cells had NEP activity. To study cALLa/NEP distribution on glial tumours in vivo, we examined 76 brain tumour biopsies by immunostaining techniques on frozen tissue sections using anti-cALLa (FAH99) and anti-NEP (135 A 3) monoclonal antibodies. We found that 96% of grade 4 gliomas (25/26) expressed NEP. Whereas only 45% (4/9) of grade 3 or anaplastic astrocytomas did. In low grade gliomas, we found 2 positive tumours out of 21 tested (10%). Double immunostaining procedures revealed that NEP was co-expressed with GFAP. However no NEP could be detected on non-glial brain tumours nor on reactive astrocytes. These results suggest that cALLa/NEP expression could be linked to malignant progression of gliomas.
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PMID:Expression of cALLa/NEP on gliomas: a possible marker of malignancy. 153 80

An endopeptidase generating a peptide comprised of the first five amino acids of luteinizing hormone-releasing hormone (LHRH) was isolated form the membranes of glioma C6 cells by a procedure including Brij extraction, p-mercuribenzoate-Sepharose chromatography, and Mono Q high-performance liquid chromatography. The molecular weight of the enzyme was estimated to be 64,000. The glial enzyme shows a similar inhibitor susceptibility to that of the enzyme of neuronal origin, and also to that of endopeptidase-24.15 (EC 3.4.24.15). Angiotensin-converting enzyme (EC 3.4.15.11) is suggested to be involved in the secondary cleavage of LHRH by the glioma cells.
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PMID:Evidence for thiol-dependent metallo-endopeptidase involved in degradation of luteinizing hormone-releasing hormone in glioma cells. 179 38

The expression of CD10/CALLA is associated primarily with childhood leukemia of pre-B lymphocyte phenotype. We have compared the hybridization pattern of the CALLA gene from leukemic and normal cells digested with several restriction enzymes. No alterations were noticed with Eco RI, Sac I, Pvu II, Eco RV, Hind III, and Msp I. Since CALLA is also found on other malignancies, we analyzed DNA samples prepared from cell lines derived from leukemia, lymphoma, glioblastoma, retinoblastoma, and neuroblastoma. Normal restriction patterns were observed for all the lines regardless of their CALLA phenotype. Having demonstrated previously that CALLA was structurally identical to neutral endopeptidase 3.4.24.11 (NEP), we have now established a correlation between surface expression of CALLA and NEP activity on leukemia samples and on several cell lines. Malignant cells tested expressed a functionally active enzyme and no gross alteration was present in the CALLA gene. The CD44 gene is expressed on most cells of hemopoietic origin and on greater than 95% of cases of acute lymphoblastic leukemia and acute myeloblastic leukemia studied. It is also expressed on normal astrocytes and on malignant cells of glioma/astrocytoma types. We now report that a similar pattern of hybridization was observed with Sac I, Pvu II, and Eco RI for leukemic samples, normal cells, and malignant cell lines. A polymorphism was recently detected for CD44 using Hind III; leukemic cells and malignant lines also showed this normal polymorphism. Thus no deletion or insertion could be detected in the CD44 gene of leukemic cells and malignant lines, suggesting that no gross DNA alterations were involved. The correlation between surface expression and enzymatic activity of CD10/CALLA and the expression of CD44 on a variety of malignant cells would suggest that the structure and function of these two gene products are probably not altered by the process of transformation.
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PMID:CD10 and CD44 genes of leukemic cells and malignant cell lines show no evidence of transformation-related alterations. 183 12

C6 of rat glioma cells and their plasma membranes degrade substance P (SP). The degradation, occurring mainly through the cleavage of the Gln6-Phe7, Phe7-Phe8, and Gly9-Leu10 bonds, was strongly inhibited by phosphoramidon. Endopeptidase-24.11 (EC 3.4.24.11) purified from C6 cell membranes also cleaved SP at the same three peptide bonds in a manner sensitive to phosphoramidon. Thus, the degradation of SP by glioma cells and their membranes seems to be mediated by the action of endopeptidase-24.11.
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PMID:Involvement of endopeptidase-24.11 in degradation of substance P by glioma cells. 248 61

Several established human glioma cell lines have been previously shown to express the common acute lymphoblastic leukemia antigen (cALLa, CD 10), an important marker in the diagnosis of human acute lymphocytic leukemia (ALL). The amino acid sequence of cALLa is identical to that of neutral endopeptidase (NEP,E.C.3.4.24.11), and cALLa expressed on leukemia and melanoma cell lines is enzymatically active NEP. In the present study, we investigated whether cALLa expressed on glioma cell lines is active NEP. We detected cALLa on 10 out of 13 glioma cell lines using 2 different anti-cALLa MAbs (A12-G4 and FAH99). NEP antigen, as detected by immunostaining with an anti-NEP MAb (135A3), was expressed on the same 10 lines. cALLa-positive, but not cALLa-negative cell lines displayed an endopeptidase activity. This activity could be blocked by phosphoramidon, a specific inhibitor of NEP. Furthermore, mRNAs hybridizing to an NEP-specific probe were present in cALLa-positive glioma cells but not in cALLa-negative cells. Taken together, the results provide strong evidence that cALLa-positive glioma cell lines express endopeptidase activity on the cell surface.
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PMID:Human glioma cell lines expressing the common acute lymphoblastic leukemia antigen (cALLa) have neutral endopeptidase activity. 253 Nov 22

In this paper, the characterization of four human malignant glioma cell lines is described. The four lines are positive for glial fibrillary acidic protein (GFAP) in variable amounts. One of them, LN 992, is positive for S-100 protein. Myelin basic protein could not be detected in any of the four lines. The four lines had high levels of CNPase activity. The karyotype shows polyploidy for all lines, with modal numbers ranging from 80 to 120 and various numbers of marker chromosomes. Particular attention has been paid to the surface phenotype and a panel of three antiglioma monoclonal antibodies (Mabs), five antimelanoma Mabs, one anti-CALLA Mab, and two anti-HLA-DR Mabs has been used in an antibody-binding radioimmunoassay for the four cell lines. Lines LN 215 and LN 235 are positive with two antiglioma Mabs, LN 992 is negative. The four lines are positive with all five antimelanoma Mabs, except for LN 992 which ist negative with Mab D5. LN 992 and LN 215 are positive with the anti-CALLA Mab N2A12. LN 308 and LN 992 are positive with anti-HLA-DR Mab D4-22. There was no correlation between the in vitro morphology of the lines and the expression of the various biochemical or surface markers. These results stress the heterogeneity of the phenotype of human malignant glioma lines. These lines will be useful tools for further immunologic studies.
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PMID:Characterization of four human malignant glioma cell lines. 299 Jan 47

Mouse Neuro-2a neuroblastoma and rat C6 glioma cloned cells were screened for neuropeptide-metabolizing peptidases using a kininase bioassay combined with a time-course bradykinin-product analysis, and a fluorimetric assay for prolyl endopeptidase. The complementary peptide products Arg1----Phe5/Ser6----Arg9 and Arg1----Pro7/Phe8-Arg9 were released during bradykinin (Arg1-Pro2-Pro3-Gly4-Phe5-Ser6-Pro7-Phe8-Arg9) inactivation by homogenates of Neuro-2a and C6 cells. The 1:1 stoichiometry of the complementary fragments and their high yields, at 10% bradykinin inactivation, demonstrated the sites of hydrolysis. The initial rate of Phe5-Ser6 bond cleavage was six-fold higher than that of the Pro7-Phe8 bond. These sites of cleavage can be attributed to enzymes similar to endopeptidase A (Phe5-Ser6) and prolyl endopeptidase (Pro7-Phe8) on the basis of the specificity and sensitivity to inhibitors of the kininase activity in Neuro-2a and C6 cell homogenates. Kininase and prolyl endopeptidase specific activities (fmol/min/cell) were 10.5 and 12.4 for Neuro-2a, and 1.5 and 2 for C6 homogenate, respectively. The recovery of kininase activity was 2.2-fold higher in the particulate than in the soluble (105,000 g for 1 h) neuronal fraction, whereas the amount of prolyl endopeptidase activity was about the same in both fractions. Kininase and prolyl endopeptidase activities in C6 cells were recovered mostly in the soluble fraction. Prolyl endopeptidase specific activity decreased 10-fold in serum-starved Neuro-2a cultured cells, with no change in activity in similarly treated C6 cells. In contrast, kininase specific activity in both cell types was essentially unaffected on serum-deprivation-induced differentiation.
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PMID:Neuropeptide-metabolizing peptidases in neuro-2a neuroblastoma and C6 glioma cells. 301 93

The expression on several established human glioma cell lines of two well-defined differentiation antigens, HLA-DR and the common acute lymphoblastic leukemia antigen (CALLA) has been demonstrated. Rabbit anti-CALLA antiserum and monoclonal anti-Ia antibodies specifically lysed glioma cells in the presence of complement. Absorption of anti-CALLA antiserum and anti-Ia antibodies by glioma cells abolished their cytotoxicity against blasts isolated from a common acute lymphoblastic leukemia. Immunoprecipitation of solubilized glioma cells by monoclonal anti-Ia antibodies revealed two polypeptide chains of 28 and 33 kDa, whereas the anti-CALLA antiserum precipitated a single polypeptide chain of 100 kDa.
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PMID:Expression of HLA-DR and common acute lymphoblastic leukemia antigens on glioma cells. 695 72

An endopeptidase capable of metabolizing a number of neuropeptides and generating [Met5] and [Leu5] enkephalin from enkephalin-containing peptides is secreted by glioma C6 cells. This neutral endopeptidase that is likely to be a thiol protease, has a Mr of 71KDa and is effective only towards oligopeptides. Its specificity towards neuropeptides is identical to that of soluble endopeptidase 22.19. Moreover, when a partially purified preparation of enkephalin-generating enzyme secreted by glioma C6 cells was submitted to immunoblotting, an antiserum against purified brain endopeptidase 22.19 recognized a single band at Mr of 71 KDa. These data suggest that the soluble endopeptidase 22.19 may be secreted by glioma C6 cells thus allowing its participation in the biotransformation of opioid peptides in the CNS.
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PMID:Secretion of a neuropeptide-metabolizing enzyme similar to endopeptidase 22.19 by glioma C6 cells. 844 30

The opioid binding profile and in vitro activity of the endogenous opioid peptide dynorphin A(1-8) have been studied. At opioid receptors in guinea-pig brain dynorphine A(1-8) was nonselective, although with some preference for the delta receptor (Ki 4.6 nM) over mu (Ki 18 nM) and kappa (Ki 40 nM) receptors. However, a high degree of metabolism was observed, with less than 10% of added dynorphin A(1-8) remaining at the end of the binding assay. In the presence of peptidase inhibitors to prevent breakdown of the N- and C-termini and the Gly3-Phe4 bond the major metabolite was [Leu5]enkephalin (representing 49% recovered material). This was reduced by inclusion of an inhibitor of endopeptidase EC 3.4.24.15. In the presence of all the peptidase inhibitors the affinity for kappa receptors (Ki 0.5 nM) relative to mu and delta receptors increased, but no selectivity of binding was observed. This lack of selectivity was confirmed using membranes from C6 glioma cells expressing rat opioid receptors. The agonist effect of dynorphin A(1-8) in the mouse vas deferens (EC50 116 nM) and guinea-pig ileum (EC50 38 nM) was mediated through the kappa receptor as evidenced by the rightward shifts afforded by the kappa-selective antagonist norbinaltorphimine. In the presence of peptidase inhibition potency was improved 2-fold in the mouse vas deferens and 20-fold in the guinea-pig ileum, but this agonist activity was mediated through delta receptors in the vas deferens and mu receptors in the ileum, as a result of the formation and stabilization of [Leu5]enkephalin. The results confirm the absence of receptor selectivity of dynorphin A(1-8) in binding assays but show that its agonist effects, at least in vitro, are mediated exclusively through the kappa opioid receptor.
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PMID:Dynorphin A(1-8): stability and implications for in vitro opioid activity. 967 96


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