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zadetkov: 33
1.
  • ZBTB7A acts as a tumor supp... ZBTB7A acts as a tumor suppressor through the transcriptional repression of glycolysis
    Liu, Xue-Song; Haines, Jenna E; Mehanna, Elie K ... Genes & development, 2014-Sep-01, 2014-09-01, 20140901, Letnik: 28, Številka: 17
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    Elevated glycolysis is a common metabolic trait of cancer, but what drives such metabolic reprogramming remains incompletely clear. We report here a novel transcriptional repressor-mediated negative ...
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2.
  • Hyperthermia inhibits homol... Hyperthermia inhibits homologous recombination repair and sensitizes cells to ionizing radiation in a time- and temperature-dependent manner
    Genet, Stefan C.; Fujii, Yoshihiro; Maeda, Junko ... Journal of cellular physiology, July 2013, Letnik: 228, Številka: 7
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    Hyperthermia has long been known as a radio‐sensitizing agent that displays anti‐tumor effects, and has been developed as a therapeutic application. The mechanisms of hyperthermia‐induced ...
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3.
  • Novel function of HATs and ... Novel function of HATs and HDACs in homologous recombination through acetylation of human RAD52 at double-strand break sites
    Yasuda, Takeshi; Kagawa, Wataru; Ogi, Tomoo ... PLoS genetics, 03/2018, Letnik: 14, Številka: 3
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    The p300 and CBP histone acetyltransferases are recruited to DNA double-strand break (DSB) sites where they induce histone acetylation, thereby influencing the chromatin structure and DNA repair ...
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4.
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5.
  • ZBTB7A Suppresses Melanoma Metastasis by Transcriptionally Repressing MCAM
    Liu, Xue-Song; Genet, Matthew D; Haines, Jenna E ... Molecular cancer research, 08/2015, Letnik: 13, Številka: 8
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    The excessive metastatic propensity of melanoma makes it the most deadly form of skin cancer, yet the underlying mechanism of metastasis remains elusive. Here, mining of cancer genome datasets ...
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6.
  • Potentially Lethal Damage R... Potentially Lethal Damage Repair in Drug Arrested G2-Phase Cells after Radiation Exposure
    Maeda, Junko; Bell, Justin J.; Genet, Stefan C. ... Radiation research, 10/2014, Letnik: 182, Številka: 4
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    Potentially lethal damage (PLD) repair has been defined as that property conferring the ability of cells to recover from DNA damage depending on the postirradiation environment. Using a novel cyclin ...
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7.
  • Validation of [sup.64] Cu-A... Validation of [sup.64] Cu-ATSM damaging DNA via high-LET Auger electron emission
    McMillan, Dayton D; Maeda, Junko; Bell, Justin J ... Journal of radiation research, 09/2015, Letnik: 56, Številka: 5
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    Radioactive copper (II) (diacetyl-bis N4-methylthiosemicarbazone) (Cu-ATSM) isotopes were originally developed for the imaging of hypoxia in tumors. Because the decay of a sup.64 Cu atom is emitting ...
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8.
  • Comparison of the bromodeox... Comparison of the bromodeoxyuridine-mediated sensitization effects between low-LET and high-LET ionizing radiation on DNA double-strand breaks
    Fujii, Yoshihiro; Genet, Matthew D; Roybal, Erica J ... Oncology reports, 06/2013, Letnik: 29, Številka: 6
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    The incorporation of halogenated pyrmidines such as bromo- and iodo-deoxyuridines (BrdU, IdU) into DNA as thymidine analogs enhances cellular radiosensitivity when high-linear energy transfer (LET) ...
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9.
  • A simple and rapid fluoresc... A simple and rapid fluorescence in situ hybridization microwave protocol for reliable dicentric chromosome analysis
    Cartwright, Ian M; Genet, Matthew D; Kato, Takamitsu A Journal of radiation research, 03/2013, Letnik: 54, Številka: 2
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    Fluorescence in situhybridization (FISH) is an extremely effective and sensitive approach to analyzing chromosome aberrations. Until recently, this procedure has taken multiple days to complete. The ...
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10.
  • Direct DNA and PNA probe bi... Direct DNA and PNA probe binding to telomeric regions without classical in situ hybridization
    Genet, Matthew D; Cartwright, Ian M; Kato, Takamitsu A Molecular cytogenetics, 10/2013, Letnik: 6, Številka: 1
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    Fluorescence in situ Hybridization (FISH) utilizes peptide nucleic acid (PNA) probes to identify specific DNA sequences. Traditional techniques have required the heat denaturing of the DNA in ...
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zadetkov: 33

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