The Myc-associated zinc-finger protein, Miz1, is a negative regulator of cell proliferation and induces expression of the cell-cycle inhibitors p15(Ink4b) and p21(Cip1). Here we identify the ribosomal protein L23 as a negative regulator of Miz1-dependent transactivation. L23 exerts this function by retaining nucleophosmin, an essential co-activator of Miz1 required for Miz1-induced cell-cycle arrest, in the nucleolus. Mutant forms of nucleophosmin found in acute myeloid leukaemia fail to co-activate Miz1 and re-localize it to the cytosol. As L23 is encoded by a direct target gene of Myc, this regulatory circuit may provide a feedback mechanism that links translation of Myc target genes and cell growth to Miz1-dependent cell-cycle arrest.

A ribosomal protein L23-nucleophosmin circuit coordinates Miz1 function with cell growth / M. Wanzel, A.C. Russ, D. Kleine-Kohlbrecher, E. Colombo, P.G. Pelicci, M. Eilers. - In: NATURE CELL BIOLOGY. - ISSN 1465-7392. - 10:9(2008 Sep), pp. 1051-1061.

A ribosomal protein L23-nucleophosmin circuit coordinates Miz1 function with cell growth

E. Colombo;P.G. Pelicci;
2008

Abstract

The Myc-associated zinc-finger protein, Miz1, is a negative regulator of cell proliferation and induces expression of the cell-cycle inhibitors p15(Ink4b) and p21(Cip1). Here we identify the ribosomal protein L23 as a negative regulator of Miz1-dependent transactivation. L23 exerts this function by retaining nucleophosmin, an essential co-activator of Miz1 required for Miz1-induced cell-cycle arrest, in the nucleolus. Mutant forms of nucleophosmin found in acute myeloid leukaemia fail to co-activate Miz1 and re-localize it to the cytosol. As L23 is encoded by a direct target gene of Myc, this regulatory circuit may provide a feedback mechanism that links translation of Myc target genes and cell growth to Miz1-dependent cell-cycle arrest.
Settore MED/04 - Patologia Generale
set-2008
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/52642
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