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reductase/sarcoma

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There is a critical need in cancer therapeutics to identify targeted therapies that will improve outcomes and decrease toxicities compared to conventional, cytotoxic chemotherapy. Ewing sarcoma is a highly aggressive bone and soft tissue cancer that is caused by the EWS-FLI1 fusion protein. Although
A highly specific assay for folate reductase mRNA activity from Sarcoma 180 cells was developed using the rabbit reticulocyte lysate protein synthesizing system. Quantitation of in vitro folate reductase synthesis was accomplished by direct immunoprecipitation from lysate reactions. The in vitro

Separation of cytidine diphosphate reductase from rat Yoshida ascites sarcoma.

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CDP reductase was separated from the cytosol of rat Yoshida ascites sarcoma. The precipitate, which resulted from the acidification of the cytosol by acetic acid at pH 5.2, catalyzed specifically the reduction of CDP, whereas the concurrently resulted supernatant catalyzed those of UDP, ADP and GDP.
The transcriptional promoter of the Harvey sarcoma virus long terminal repeat has been used to construct a biologically active dihydrofolate reductase chimera. The construction placed the long terminal repeat at the 5' end of a dihydrofolate reductase cDNA. This chimera mediated methotrexate

Dihydrofolate reductase from Kaposi's sarcoma-associated herpesvirus.

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Kaposi's sarcoma-associated herpesvirus (KSHV) is the first human virus known to encode dihydrofolate reductase (DHFR), an enzyme required for nucleotide and methionine biosynthesis. We have studied the purified KSHV-DHFR enzyme in vitro and analyzed its expression in cultured B-cell lines derived

Inhibition of CHK1 sensitizes Ewing sarcoma cells to the ribonucleotide reductase inhibitor gemcitabine.

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Ewing sarcoma is a bone and soft tissue sarcoma that occurs in children and young adults. The EWS-FLI1 gene fusion is the driver mutation in most Ewing sarcoma tumors and functions, in part, as an aberrant transcription factor. We recently identified that Ewing sarcoma cells are sensitive to
Ribonucleotide reductase (RNR) is responsible for converting ribonucleotides to deoxyribonucleotides, which are the building blocks of DNA. The enzyme is present in all life forms as well as in some large DNA viruses such as herpesviruses. The alpha-herpesviruses and gamma-herpesviruses encode two

[Effect of sarcolysine on glutathione peroxidase and glutathione reductase activity in sarcoma C-45].

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A drop of glutathione peroxidase and glutathione reductase activity was revealed in sarcoma C-45 at the period of its most intensive growth. Repeated sarcolysine injections (1.2 mg/kg, intraperitoneally) caused a sharp fall in the activity of both enzymes with a simultaneous reduction of the ratio

Loss and stabilization of amplified dihydrofolate reductase genes in mouse sarcoma S-180 cell lines.

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We studied the loss and stabilization of dihydrofolate reductase genes in clones of a methotrexate-resistant murine S-180 cell line. These cells contained multiple copies of the dihydrofolate reductase gene which were associated with double minute chromosomes. The growth rate of these cells in the

Structure of amplified normal and variant dihydrofolate reductase genes in mouse sarcoma S180 cells.

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We constructed a gene library from a murine cell line with amplified dihydrofolate reductase (dhfr) genes by inserting random segments of DNA into lambda Ch4A. From this library, the dhfr gene and 30 kilobase pairs of surrounding DNA were cloned, and the restriction map was determined. All of the

[Characteristics of sepiapterin reductase from Tawa and Yoshida sarcomas (author's transl)].

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Comparison of folate reductases of sarcoma 180 cells, sensitive and resistant to amethopterin.

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[The ribonucleotide reductase activity of different structural elements of rat sarcoma M-1 cells].

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[Nuclear ribonucleotide reductase of cells of normal regenerating liver and sarcoma M-1 in rats].

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