Chemotherapeutic Drugs Inhibit Ribosome Biogenesis at Various Levels

被引:341
作者
Burger, Kaspar
Muehl, Bastian
Harasim, Thomas
Rohrmoser, Michaela
Malamoussi, Anastassia
Orban, Mathias [1 ]
Kellner, Markus [1 ]
Gruber-Eber, Anita [1 ]
Kremmer, Elisabeth [2 ]
Hoelzel, Michael [1 ]
Eick, Dirk [1 ]
机构
[1] CIPSM, Inst Clin Mol Biol & Tumor Genet, D-81377 Munich, Germany
[2] Helmholtz Ctr Munich, Inst Mol Immunol, D-81377 Munich, Germany
关键词
U2; SNRNA; 5-FLUOROURACIL TOXICITY; P53; TRANSCRIPTION; DISRUPTION; URACIL; YEAST; PSEUDOURIDYLATION; ACCUMULATION; DEPLETION;
D O I
10.1074/jbc.M109.074211
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Drugs for cancer therapy belong to different categories of chemical substances. The cellular targets for the therapeutic efficacy are often not unambiguously identified. Here, we describe the process of ribosome biogenesis as a target of a large variety of chemotherapeutic drugs. We determined the inhibitory concentration of 36 chemotherapeutic drugs for transcription and processing of ribosomal RNA by in vivo labeling experiments. Inhibitory drug concentrations were correlated to the loss of nucleolar integrity. The synergism of drugs inhibiting ribosomal RNA synthesis at different levels was studied. Drugs inhibited ribosomal RNA synthesis either at the level of (i) rRNA transcription (e. g. oxaliplatin, doxorubicin, mitoxantrone, methotrexate), (ii) early rRNA processing (e. g. camptothecin, flavopiridol, roscovitine), or (iii) late rRNA processing (e. g. 5-fluorouracil, MG-132, homoharringtonine). Blockage of rRNA transcription or early rRNA processing steps caused nucleolar disintegration, whereas blockage of late rRNA processing steps left the nucleolus intact. Flavopiridol and 5-fluorouracil showed a strong synergism for inhibition of rRNA processing. We conclude that inhibition of ribosome biogenesis by chemotherapeutic drugs potentially may contribute to the efficacy of therapeutic regimens.
引用
收藏
页码:12416 / 12425
页数:10
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