Overexpression of Far1, a cyclin-dependent kinase inhibitor, induces a large transcriptional reprogramming in which RNA synthesis senses Far1 in a Sfp1-mediated way
Articolo
Data di Pubblicazione:
2012
Abstract:
The FAR1 gene encodes an 830 residue bifunctional protein, whose major function is inhibition of cyclindependent
kinase complexes involved in the G1/S transition. FAR1 transcription is maximal between mitosis
and early G1 phase. Enhanced FAR1 transcription is necessary but not sufficient for the pheromone-induced
G1 arrest, since FAR1 overexpression itself does not trigger cell cycle arrest.
Besides its well established role in the response to pheromone, recent evidences suggest that Far1 may also
regulate the mitotic cell cycle progression: in particular, it has been proposed that Far1, together with the G1
cyclin Cln3, may be part of a cell sizer mechanismthat controls the entry into S phase. Far1 is an unstable protein
throughout the cell cycle except during G1 phase. Far1 levels peak in newborn cells as a consequence of a
burst of synthetic activity at the end of the previous cycle, and the amounts per cell remain roughly constant
during the G1 phase. Phosphorylation (at serine 87) by Cdk1-Cln complexes primes Far1 for ubiquitin-mediated
proteolysis.
By coupling a genome-wide transcriptional analysis of FAR1-overexpressing and far1? cells grown in ethanolor
glucose-supplemented minimal media with a range of phenotypic analysis, we show that FAR1 overexpression
not only coordinately increases RNA and protein accumulation, but induces strong transcriptional remodeling,
metabolism being the most affected cellular property, suggesting that the Far1/Cln3 sizer regulates cell
growth either directly or indirectly by affecting metabolism and pathways known to modulate ribosome biogenesis.
A crucial role in mediating the effect of Far1 overexpression is played by the Sfp1 protein, a key transcriptional
regulator of ribosome biogenesis, whose presence ismandatory to allowa coordinated increase in both RNA and
protein levels in ethanol-grown cells.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
overexpression; transcriptional analysis; cyclin dependent Kinase; phosphorylation
Elenco autori:
Alberghina, Lilia; Bertolazzi, Paola; Felici, Giovanni; Mavelli, Gabriella
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