Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0023418 (leukemia)
93,477 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

2',5'-oligoadenylate synthetase (2-5OAS) has been studied in peripheral blood mononuclear cells from nine patients with hairy cell leukaemia (HCL) receiving therapy with the adenosine deaminase inhibitor deoxycoformycin (dCF) or alpha interferon (alpha-IFN). 2-5OAS mRNA was assayed by dot-blot hybridization. Increase of 2-5OAS mRNA level was seen in six patients with HCL treated with dCF and in one patient treated with alpha-IFN who responded to therapy. A patient with a variant form of HCL treated with dCF and the second patient treated with alpha-IFN did not show an increase of 2-5OAS mRNA and neither responded to therapy. The 15 other patients with T or B-chronic lymphoblastic leukaemia (CLL), T-acute lymphoblastic leukaemia (ALL), adult T-cell leukaemia lymphoma (ATLL), non-Hodgkins lymphoma (NHL), Sezary and T or B-prolymphocytic leukaemia (PLL) treated with dCF did not show an increase in 2-5OAS, though four patients, all with T-cell tumours, responded clinically. 2-5OAS activity is known to be stimulated by alpha-IFN and recent work suggests that this rise in 2-5OAS may result in increased cleavage of mRNA for tumour necrosis factor (TNF) and other cytokines on which autocrine growth and proliferation of the tumour cells are dependent. By analogy, we suggest that one mechanism of action of dCF in hairy cell leukaemia may be to break down an autocrine growth loop for TNF or other cytokines. An alternative explanation for these observations is that cytokines released from hairy cells in the bone marrow killed by dCF induce a rise in 2-5OAS in circulating leucocytes.
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PMID:Increase in 2',5'-oligoadenylate synthetase caused by deoxycoformycin in hairy cell leukaemia. 155 Jul 76

Many reports have described the relationship of adenosine deaminase (ADA) and purine nucleoside phosphorylase (PNP) activities with the immunological subclasses of acute lymphoblastic leukemia (ALL). The clinical significance of these enzymes in leukemias is not yet completely understood. We performed a study in 83 children with untreated ALL to establish the relationships of ADA and PNP to clinical outcome, in vitro drug resistance and differentiation stage of B-cell lineage ALL. ADA and PNP activities were determined radiochemically. In vitro resistance to 6-thioguanine (6-TG) was determined with the MTT assay. ADA activity was not different between proB- and cALL cases but decreased in the sequential differentiation stages cALL----preB-ALL----B-ALL. The PNP level was not different between the four stages of B-lineage ALL. Patients with cALL/preB ALL with low ADA activities had a significantly poorer probability of survival (p = 0.005) than patients with high ADA levels. Patients with cALL/preB ALL with low PNP activities showed a non-significant trend for a poorer prognosis (0.05 less than p less than 0.10) than patients with a high PNP level. Low ADA and PNP activities were not related to in vitro resistance to 6-TG. We conclude that ADA decreases and PNP remains constant in sequential differentiation stages of B-lineage ALL. Patients with precursor B-lineage ALL with low activities of ADA have a poorer prognosis than those with high activities of these enzymes. No relationship could be detected between ADA or PNP activity and resistance to 6-TG.
Leukemia 1992 May
PMID:Adenosine deaminase and purine nucleoside phosphorylase in childhood lymphoblastic leukemia: relation with differentiation stage, in vitro drug resistance and clinical prognosis. 159 2

Amphotropic recombinant retroviruses were generated carrying sequences encoding human adenosine deaminase (ADA). Transcription of the human ADA gene was under control of a hybrid long terminal repeat in which the enhancer from the Moloney murine leukemia virus was replaced by an enhancer from the F101 host-range mutant of polyoma virus. Hemopoietic stem cells in murine bone marrow were infected with this virus under defined culture conditions. As a result, 59% of day-12 colony forming unit spleen (CFU-S) stem cells became infected without any in vitro selection. Infected CFU-S were shown to express human ADA before transplantation and this expression sustained upon in vivo maturation. Mice transplanted with infected bone marrow exhibited human ADA expression in lymphoid, myeloid, and erythroid cell types. Moreover, human ADA expression persisted in secondary and tertiary transplanted recipients showing that human ADA-expressing cells were derived from pluripotent stem cells. These characteristics of our amphotropic viruses make them promising tools in gene therapy protocols for the treatment of severe combined immunodeficiency caused by ADA deficiency. In this respect it is also relevant that the viral vector that served as backbone for the ADA vector was previously shown to be nonleukemogenic.
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PMID:Expression of human adenosine deaminase in mice transplanted with hemopoietic stem cells infected with amphotropic retroviruses. 197 14

A series of unsaturated analogues of nucleosides were prepared and their cytotoxic, antitumor, and antiviral activities were investigated. Alkylation of cytosine with (E)-1,4-dichloro-2-butene gave chloro derivative 2f, which was hydrolyzed to alcohol 2h. Cytosine, adenine, 2-amino-6-chloropurine, thymine, and (Z)-1,4-chloro-2-butene gave compounds 4c-f, which, after hydrolysis, afforded alcohols 4a, 4b, 4g, and 4h. Alkenes 4d and 4e were cyclized to heterocycles 12 and 13. Alkylation of 2,6-diaminopurine with 1,4-dichloro-2-butyne led to chloro derivative 6a, which was hydrolyzed to alcohol 6b. Allenic isomerization of 6b gave compound 5c. Chloro derivatives 2e-g, 4c-f, 5d, and 6c-e as well as pyrimidine oxacyclopentenes 9c and 9d are slow-acting inhibitors of murine leukemia L1210 of IC50 10-100 microM. The most active were analogues 4c, 4d, 4e, and 6e (IC50 10-20 microM). The corresponding hydroxy derivatives were less active of inactive. Inhibition of macromolecular synthesis with compounds 4c, 4d, 6e, 9c, and 9d follows the order: DNA greater than RNA greater than or equal to protein. Cytotoxic effects of 4c, 6e, and 9d are not reversed with any of the four basic ribonucleosides or 2'-deoxyribonucleosides. Inhibitory activity of cytosine derivative 9c is reversed with uridine and 2'-deoxyuridine but not with the corresponding cytosine nucleosides. Zone assays in several tumor cell lines show that active compounds are cytotoxic agents with little selectivity for tumor cells. Analogue 6c showed 16.7% ILS in leukemia P388/o implanted ip in mice at 510 and 1020 mg/kg, respectively. Cytallene (5b) and 6'beta-hydroxyaristeromycin (10) exhibited significant activity against Friend and Rauscher murine leukemia viruses. The rest of the hydroxy derivatives, with the exception of 4a, were moderately effective or inactive as antiviral agents. None of the chloro derivatives or oxacyclopentenes exhibited an antiviral effect at noncytotoxic concentrations. Z-Olefin 4b and 2-aminoadenallene (5c) are substrates for adenosine deaminase.
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PMID:Unsaturated and carbocyclic nucleoside analogues: synthesis, antitumor, and antiviral activity. 199 43

Three retroviral vectors, containing a human adenosine deaminase (ADA) cDNA linked to either the simian virus 40 (SV40) early promoter, the human cytomegalovirus (CMV) immediate early promoter, or the Moloney murine leukemia virus (MoMLV) promoter, were tested for their ability to express ADA following infection and transplantation of murine bone marrow. Virus was produced by using PA317 amphotropic retrovirus packaging cells. The titer of each of the vectors was similar and no helper virus was detected. Human ADA was expressed in the blood of some animals for 6 months after transplantation of infected marrow, and vector DNA was found in the spleen and in bone marrow from these animals. The percentage of animals expressing human ADA (33%) and the amount of human ADA in blood (1-5% of total ADA) was similar for each of the vectors. These results show that amphotropic vectors are capable of infecting pluripotent hematopoietic stem cells having long-term repopulating ability, and that a variety of promoters allow gene expression following differentiation of these early cells.
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PMID:Long-term expression of human adenosine deaminase in mice after transplantation of bone marrow infected with amphotropic retroviral vectors. 208 Nov 83

The chronic lymphocytic leukemia, the prolymphocytic leukemia and the hairy cell leukemia of B-cell immunophenotype are closely related disorders, but differ in their cytomorphological and clinical features. In an attempt to differentiate further among these forms of leukemia some immunological and cytochemical markers were studied. Simultaneously we measured adenosine deaminase and purine nucleosidephosphorylase activities by a method of paper radiochromatography in peripheral blood/bone marrow leukemic cells from 23 patients with chronic lymphocytic leukemia, 5 patients with prolymphocytic leukemia, one with prolymphocytoid transformation of chronic lymphocytic leukemia and 15 patients with hairy cell leukemia. The mosaic of immunological and cytochemical markers based on the sum of positive and negative features allowed for the correct diagnosis in a majority of cases. From the number of 43 investigated cases we found the typical enzyme patterns in 39 of them. On the basis of purine enzyme activity we were able to differentiate between chronic lymphocytic leukemia versus prolymphocytic and hairy cell leukemia. In one patient with chronic lymphocytic leukemia we could detect very early stage of prolymphocytoid transformation by increased activity of purine nucleosidephosphorylase activity. There were only two patients with chronic lymphocytic leukemia who were assigned to the prolymphocytic leukemia on the basis of purine nucleosidephosphorylase activity and two patients with hairy cell leukemia with atypical enzyme pattern attributable to the nonrepresentative number of pathological cells in the peripheral blood. Our study showed that purine nucleosidephosphorylase activity in leukemia cells may be useful as an additional parameter in the distinction of prolymphocytic from lymphocytic leukemia and that it may represent an enzymatic marker for early detection of prolymphocytoid transformation of chronic lymphocytic leukemia. Characteristic purine enzyme pattern was found also for diagnostic confirmation of hairy cell leukemia.
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PMID:Purine metabolism enzymes and immunological phenotype in chronic B-cell malignancies: chronic lymphocytic leukemia, prolymphocytic leukemia and hairy cell leukemia. 212 99

Deficiency of the purine metabolic enzyme adenosine deaminase causes severe immunodeficiency. Retroviruses have been reported to decrease the activity of adenosine deaminase, and many retroviruses, including feline leukemia virus, cause immunodeficiency. Levels of purine metabolic enzymes including adenosine deaminase and consequences of adenosine deaminase inhibition were investigated in feline leukemia virus-infected fresh tumor cells and infected and uninfected cell lines. No evidence of virus effect on levels of adenosine deaminase or other purine metabolic enzymes was detected. Neoplastic cells demonstrated considerable heterogeneity of activity levels of purine metabolic enzymes.
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PMID:Purine metabolism in feline lymphomas. 216 Nov 36

We studied the activity of serum adenosine deaminase (ADA) and its isozyme in 36 leukemic patients (16 ANLL, 11 ALL, and 9 CML) and 8 MDS. Isozyme was measured by erythro-9-(2-hydroxy-3-nonyl) adenine (EHNA) inhibitory assay. This assay was simple and reliable. The appearance rate of abnormally high ADA value were 81.24% for ANLL, 100% for ALL, 77.8% for CML and 37.5% for MDS. The ADA level became high when MDS turned into overt leukemia. In isozyme pattern, there was a clear difference between ANLL and ALL. The isozyme I/II ratio was significantly higher (p less than 0.001) in ALL than ANLL. Lymphoblastic crisis of CML also had a high isozyme I/II ratio. There was a correlation between isozyme I and absolute number of peripheral blasts in ALL (r = 0.768). When observed time sequentially, ADA and isozyme changed correlatively with the number of blasts counts. Serum ADA and its isozyme are useful parameters both for leukemic diagnosis and treatment.
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PMID:[Serum adenosine deaminase and its isozyme activity in leukemia and MDS]. 223 54

T-cell acute lymphoblastic leukemia is an aggressive disease that responds poorly to "standard" therapy designed for the more common B-lineage ALLs in childhood. The principles of this "standard" therapy were derived from empiric clinical trials. Thus, it is not surprising that the therapy that had the greatest impact on survival in the group as a whole would be found to be most successful for the most common subset of patients. T-cell malignant lymphoblasts share many biologic features that set them apart from the more common B-lineage lymphoblasts. Some of these biologic features suggest therapeutic approaches that should be particularly successful in treating patients with T-cell leukemia. The use of aggressive, multiple-agent "pulse" chemotherapy has been shown through empiric trials to have relative efficacy in T-cell lymphoblastic leukemia, presumably because of the rapid generation time and high growth fraction. Future studies will (1) determine the optimal dose and schedule of cytosine arabinoside needed to exploit the increased Ara-CTP accumulation in T-cell blasts, (2) determine the efficacy of a new agent, deoxycoformycin, an inhibitor of adenosine deaminase, to exploit the biochemical phenotype of T-cell blasts, and (3) assess the ability of conjugated anti-T monoclonal antibodies to deliver a cytotoxic agent, thus exploiting unique antigenic determinants at the cell surface. As more is learned about the biology of T-cell malignancies, further treatment strategies may be suggested to exploit the new features that are discovered. Similarly, it is hoped that the unique features of the B-lineage leukemias will suggest treatment strategies that will improve survival in those patients as well. Certainly, improved survival has already been achieved in the case of the B-cell leukemias and Burkitt's lymphomas, and improvement may also be possible for the pre-B and early pre-B phenotypes of lymphoblastic leukemia.
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PMID:Treatment of T-lineage acute lymphoblastic leukemia. 226 86

We measured the levels of adenosine deaminase (ADA) and immunosuppressive acid protein (IAP) in 10 patients with acute myeloid leukemia (AML), 5 with acute lymphoblastic leukemia (ALL), 8 with chronic myeloid leukemia (CML), 7 with myelodysplastic syndrome (MDS), 5 with malignant lymphoma (ML), 3 with multiple myeloma (MM) and one with adult T cell leukemia. On admission, the level of IAP was abnormally high in all cases of AML and ALL 50% of CML cases, 71.4% of MDS cases, 60% of ML cases and none of MM cases. ADA was elevated in all cases of ALL, 77.8% of AML and CML cases, 57.1% of MDS cases, 60% of ML cases and 33.3% of MM cases. In 7 patients with AML, the level of IAP returned to normal when they achieved complete remission. On the other hand, the level of ADA had already returned to normal even during induction therapy. ADA showed a positive correlation with the absolute number of peripheral blasts and lactic dehydrogenase both in AML and ALL. These results suggest that ADA indicates the activity of leukemia and IAP indicates the immunocompetence of the host.
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PMID:[Combination assay of IAP and ADA in hematologic malignancies]. 238 Oct 93


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