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Interaction of streptonigrin with metals and with DNA.

The antitumor antibiotic, streptonigrin, interacted with zinc, copper, and manganese but not with calcium or magnesium, as indicated by spectral shifts and difference spectra. The titration data showed the formation of 1:1 complexes, and further titration continued to show spectral shifts until a molar ratio for zinc to streptonigrin of 5-10 to 1 was reached. Streptonigrin interacted with DNA only in the presence of a metal ion such as zinc. Streptonigrin titration with DNA at varying zinc molar equivalents revealed that one antibiotic molecule required 5-7 moles of zinc and 20-25 moles of DNA-phosphorus for complexation. Similar values were obtained from gel permeation chromatography.

Chemical Phenomena

Enzymatic defenses against the toxicity of oxygen and of streptonigrin in Escherichia coli.

Anaerobically grown Escherichia coli K-12 contain only one superoxide dismutase and that is the iron-containing isozyme found in the periplasmic space. Exposure to oxygen caused the induction of a manganese-containing superoxide dismutase and of another, previously undescribed, superoxide dismutase, as well as of catalase and peroxidase. These inductions differed in their responsiveness towards oxygen. Thus the very low levels of oxygen present in deep, static, aerobic cultures were enough for nearly maximal induction of the manganese-superoxide dismutase. In contrast, induction of the new superoxide dismutase, catalase, and peroxidase required the much higher levels of oxygen achieved in vigorously agitated aerobic cultures. Anaerobically grown cells showed a much greater oxygen enhancement of the lethality of streptonigrin than did aerobically grown cells, in accord with the proposal that streptonigrin can serve as an intracellular source of superoxide. Anaerobically grown cells in which enzyme inductions were prevented by puromycin were damaged by exposure to air. This damage was evidenced both as a decline in viable cell count and as structural abnormalities evident under an electron microscope.

Anaerobiosis

Studies related to antitumor antibiotics. Part VIII. Cleavage of DNA by streptonigrin analogues and the relationship to antineoplastic activity.

A group of substituted 5,8-quinolinequinones which exhibit antineoplastic activity and which are structurally related to the antitumor antibiotic streptonigrin induce single strand cleavage of PM2 covalently-closed circular-DNA (ccc-DNA) when reductively activated. The cleavage which is detected by an ethidium fluorescence assay is specifically enhanced by cuprous and ferrous ion and is selectively inhibited by superoxide dismutase (EC 1.15.1.1) and catalase (EC 1.11.1.6) and by free radical scavengers. Independent generation of the superoxide ion by xanthine-xanthine oxidase (EC 1.2.3.2) also cleaves PM2 DNA and therefore a chemical mechanism for the scission process induced by the streptonigrin analogues is formulated. A correlation between rate of PM2 ccc-DNA cleavage and inhibition of Walker carcinosarcoma 256 is observed.

Animals

The mechanism of the degradation of DNA by streptonigrin.

The production of single strand cleavage in covalently-closed circular-DNA by the antitumour agent streptonigrin (reduced in situ by NADH) is demonstrated using the ethidium bromide fluorescence assay described previously. The degradation dependent on oxygen is completely inhibited by superoxide dismutase (EC 1.15.1.1) suggesting the intermediacy of the superoxide radical anion in the degradation. However similar complete inhibition of DNA strand breakage by catalase (EC 1.11.1.6) indicates that the hydroxyl radical (formed by interaction of superoxide with hydrogen peroxide) is the primary reactive species. Cupric ion stimulates the cleavage reaction and cobaltous ion has no effect in keeping with model studies using quinolinequinones.

Binding Sites

Therapeutic activity of pretazettine, a narcissus alkaloid on Rauscher leukemia: comparison with tazettine and streptonigrin.

The therapeutic activity of narcissus alkaloid pretazettine HC1 (PTZ) on established Rauscher leukemia has been demonstrated and compared with the isomer tazettine (TZ) and an antibiotic, streptonigrin (SN). PTZ and SN showed remarkable prolongation effect on the life span of the leukemic mice and the antiviral activity has been confirmed in mouse 3T3 cells infected with Rauscher virus. TZ showed no significant activity in the leukemic mice and was inhibitory to the virus growth in the cells at much higher doses than PTZ. It is suggested that the stereochemical rearrangement from PTZ to TZ inactivates the biological activity of PTZ.

Alkaloids

The in vitro effects of imipramine on human chromosomes.

The clastogenic effects of imipramine on chromosomes have been investigated in leukocyte cultures from seven healthy blood donors (2 mlae and 5 female), repeat cultures being initiated at intervals of 6 to 12 weeks. At various times prior to harvesting nine different doses of imipramine were added in vitro, the three lowest concentrations being within the range of plasma levels reported in psychiatric patients reveiving the drug therapeutically. In addition, streptonigrin was used as a positive control. No increase in chromosome breaks was found at any concentration for any duration of exposure even in those cultures where high concentration and/or long duration of exposure significantly suppressed cell growth. Only cultures to which streptonigrin had been added showed a significant increase in chromosome breaks.

Adult

Combination chemotherapy of non-Hodgkin lymphoma.

A randomized therapeutic trial of three induction regimens for patients with lymphosarcoma and reticulum-cell sarcoma was conducted by the Cancer and Leukemia Group B (CALGB) (formerly Acute Leukemia Group B.) Addition of streptonigrin, but not cyclophosphamide, to the combination of vincristine and prednisone improved the complete remission rate achieved after a 42-day induction program. The duration of the subsequent remission and survival was not influenced by the induction combination assigned. Remission maintenance with cyclophosphamide was superior to maintenance with methotrexate. The results of this study are compared with others in which advantages for three or four drug treatment regimens have been reported.

Antineoplastic Agents

Combination chemotherapy for non-Hodgkin lymphomas: a ten year follow-up study.

In 1968 the Cancer and Acute Leukemia Group B (CALGB) demonstrated optimal control of disseminated non-Hodgkin lymphomas (NHL) with vincristine-prednisone induction followed by cyclophosphamide maintenance. A study was then begun to determine whether four drugs in combination or sequence could achieve greater control. NHL patients at each participating CALGB institution were randomly assigned to one of three regimens:I) Cyclic vincristine-streptonigrin alternating every 2 weeks with cyclophosphamide-prednisone up to 155 days; II) Sequential treatment with the same 4 drugs taken singly up to 182 days; and III) Vincristine-prednisone induction for 6 weeks followed by cyclophosphamide maintenance. Results are now reported after a 10 year follow-up period. The 203 evaluable patients are those on whom Rappaport histopathologic classification was available. Frequency of complete-response did not differ significantly among the three regimens: I) 38%; II) 30%; and III) 45%. Remission durations were significantly longer among patients receiving maintenance therapy. After ten years, two patients from Regimen I, one from Regimen II, and five from Regimen III remain alive and well. It was concluded that neither of the four-drug regimens conferred a significant advantage in terms of response rate or survival time over the standard treatment.

Antineoplastic Agents

Repair of lesions induced by bruneomycin in DNA of isolated mitochondria from the mature eggs of the teleost fish Misgurnus fossilis.

Addition of a radiomimetic antibiotic bruneomycin (Streptonigrin) to isolated mitochondria from mature quiescent oocytes of the teleost fish loach Misgurnus fossilis leads to the induction of unscheduled synthesis of mitochondrial DNA. Most of the newly synthesized DNA has the sedimentation properties of open circles and up to 15% of the label is present in the fraction of the covalently closed-circular molecules. The size of the newly synthesized DNA stretches determined from the bouyant shift of DNA labeled with 5-bromouracil and [3H]dAMP and sonicated to fragments of different molecular weight, was found to be equal to about 1000 nucleotides for the labeled covalently closed circles and to about 2000 nucleotides for the labeled open-circular DNA. Experiments with the centrifugation of non-sheared and sonicated 5-bromouracil and [3H]dAMP-labeled mitochondrial DNA (mtDNA) in alkaline CsCl density gradients provided evidence of a covalent linkage between newly-synthesized stretches and the parental DNA strands. It is concluded from these data that the unscheduled mtDNA synthesis induced by bruneomycin does at least in part represent mtDNA repair synthesis.

Animals

Physiological function of superoxide dismutase in glucose-limited chemostat cultures of Escherichia coli.

Conditions for continuous culture of Escherichia coli K-12 His- Thi- under glucose limitation were established. Both the capacity for respiration, at D greater than 0.2/h, and specific activity of superoxide dismutase increased as a function of specific growth rate, whereas peroxidase and catalase were either invariant with or inversely related to this growth rate. The abrupt increase in the availability of glucose, as a means of elevating the growth rate, was followed by an increase in superoxide dismutase, which reached a plateau before there was a significant increase in the growth rate. Thus, an increase in superoxide dismutase appeared to be a prerequisite for an increase in the rate of growth. Cells that had higher levels of superoxide dismutase, because of varying specific growth rates, were more resistant to the toxicity of hyperbaric oxygen. Superoxide dismutase thus behaved like an essential defense against the toxicity of oxygen. Sensitivity towards streptonigrin increased with specific growth rate in the range of 0.09 to 0.25/h but decreased with further increases in the growth rate. Since this antibiotic has been shown to shunt electrons to oxygen, with concomitant production of O2-, these results indicated a progressive deficiency of reducing power at growth rates below 0.25/h and a surfeit of reducing power with progressively greater protection against O2- by superoxide dismutase at growth rates greater than 0.25/h.

Escherichia coli

Hydroxyl radical production by free and DNA-bound aminoquinone antibiotics and its role in DNA degradation. Electron spin resonance detection of hydroxyl radicals by spin trapping.

The reduced antitumor antibiotic mitomycin C in aqueous solution exposed to air gives a 36-line electron spin resonance spectrum of the semiquinone identified by computer simulation. Incubation of this radical with the spin trap N-tert-butyl-alpha-phenylnitrone (PBN) gives the PBN.OH nitroxide radical identified by independent generation. This nitroxide radical is also formed from similar treatment of a DNA to which mitomycin C is covalently attached. Incubation of the semiquinone from mitomycin C, mitomycin B, or streptonigrin (SN) with catalase or with superoxide dismutase inhibits the generation of OH, implying the intermediacy of H2O2 and O2 in its formation. The formation of the spin-trapped nitroxide radical is similarly inhibited by EDTA, suggesting the intermediacy of trace metal ions in the generation of hydroxyl radicals from SN. The results are consistent with the generation by the aminoquinone antibiotics in vivo of OH. already implicated in the degradation of DNA.

Catalase

NADPH cytochrome P-450 reductase activation of quinone anticancer agents to free radicals.

With NADPH as the electron donor, rat liver NADPH cytochrome P-450 reductase (NADPH:ferricytochrome oxidoreductase, EC 1.6.2.4) catalyzes the single-electron reduction of several quinone antibiotics to a semiquinone or free radical state. The benzanthraquinones adriamycin, daunorubicin, carminomycin, 7-O-methylnogalarol, and aclacinomycin A and the N-heterocyclic quinones streptonigrin and mitomycin C are activated to free radical intermediates which can transfer their single electron to molecular oxygen to form superoxide. The overall Km range for this electron transfer is 0.4 to 42.1 X 10(-4) M. We postulate that the formation of the "site-specific free radical/ intermediate is central to the cytotoxic action of these antibiotics.

Animals

Studies related to antitumor antibiotics. Part V. Reactions of mitomycin C with DNA examined by ethidium fluorescence assay.

The cytotoxic action of the antitumor antibiotic mitomycin C occurs primarily at the level of DNA. Using highly sensitive fluorescence assays which depend on the enhancement of ethidium fluorescence only when it intercalates duplex regions of DNA, three aspects of mitomycin C action on DNA have been studied: (a) cross-linking events, (b) alkylation without necessarily cross-linking, and (c) strand breakage. Cross-linking of DNA is determined by the return of fluorescence after a heat denaturation step at alkaline pH's. Under these conditions denatured DNA gives no fluorescence. The cross-linking was independently confirmed by S1-endonuclease (EC 3.1.4.-) digestion. At relatively high concentrations of mitomycin the suppression of ethidium fluorescence enhancement was shown not to be due to depurination but rather to alkylation, as a result of losses in potential intercalation sites. A linear relationship exists between binding ratio for mitomycin and loss of fluorescence. The proportional decrease in fluorescence with pH strongly suggests that the alkylation is due to the aziridine moiety of the antibiotic under these conditions. A parallel increase in the rate and overall efficiency of covalent cross-linking of DNA with lower pH suggests that the cross-linking event, to which the primary cytotoxic action has been linked, occurs sequentially with alkylation by aziridine and then by carbamate. Mitomycin C, reduced chemically, was shown to induce single strand cleavage as well as monoaklylation and covalent cross-linking in PM2 covalently closed circular DNA. The inhibition of this cleavage by superoxide dismutase (EC 1.15.1.1) and catalase (EC 1.11.1.6), and by free radical scavengers suggests that the degradation of DNA observed to accompany the cytotoxic action of mitomycin C is largely due to the free radical O2. In contrast to the behavior of the antibiotic streptonigrin, mitomycin C does not inactivate the protective enzymes superoxide dismutase or catalase. Lastly, mitomycin C is able to cross-link DNA in the absence of reduction at pH 4. This is consistent with the postulated cross-linking mechansims.

Animals