MAD1 and c-MYC regulate UBF and rDNA transcription during granulocyte differentiation

被引:148
作者
Poortinga, G
Hannan, KM
Snelling, H
Walkley, CR
Jenkins, A
Sharkey, K
Wall, M
Brandenburger, Y
Palatsides, M
Pearson, RB
McArthur, GA
Hannan, RD
机构
[1] Peter MacCallum Canc Ctr, Mol Oncol Lab, Trescowthick Res Labs, Div Res, Melbourne, Vic 3002, Australia
[2] Univ Melbourne, Dept Med, St Vincents Hosp, Fitzroy, Vic 3065, Australia
[3] Fox Chase Canc Ctr, Human Genet Program, Philadelphia, PA 19111 USA
[4] Univ Melbourne, Dept Biochem & Mol Biol, Parkville, Vic 3052, Australia
[5] Peter MacCallum Canc Ctr, Div Haematol Med Oncol, Melbourne, Vic, Australia
关键词
growth; MYC; MAD; RNA polymerase I; UBF;
D O I
10.1038/sj.emboj.7600335
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
The regulation of cell mass (cell growth) is often tightly coupled to the cell division cycle (cell proliferation). Ribosome biogenesis and the control of rDNA transcription through RNA polymerase I are known to be critical determinants of cell growth. Here we show that granulocytic cells deficient in the c-MYC antagonist MAD1 display increased cell volume, rDNA transcription and protein synthesis. MAD1 repressed and c-MYC activated rDNA transcription in nuclear run-on assays. Repression of rDNA transcription by MAD1 was associated with its ability to interact directly with the promoter of upstream binding factor (UBF), an rDNA regulatory factor. Conversely, c-MYC activated transcription from the UBF promoter. Using siRNA, UBF was shown to be required for c-MYC-induced rDNA transcription. These data demonstrate that MAD1 and c-MYC reciprocally regulate rDNA transcription, providing a mechanism for coordination of ribosome biogenesis and cell growth under conditions of sustained growth inhibition such as granulocyte differentiation.
引用
收藏
页码:3325 / 3335
页数:11
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