Ribosome biogenesis is sensed at the Start cell cycle checkpoint.
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[1] N. Fujita,et al. RNA Polymerase , 2020, Definitions.
[2] F. Cross,et al. Coherence and timing of cell cycle start examined at single-cell resolution. , 2006, Molecular cell.
[3] M. Polymenis,et al. Bem1p, a scaffold signaling protein, mediates cyclin-dependent control of vacuolar homeostasis in Saccharomyces cerevisiae. , 2005, Genes & development.
[4] F. Cross,et al. Identification of novel and conserved functional and structural elements of the G1 cyclin Cln3 important for interactions with the CDK Cdc28 in Saccharomyces cerevisiae , 2005, Yeast.
[5] Yuval Dor,et al. Ribosomal protein S6 phosphorylation is a determinant of cell size and glucose homeostasis. , 2005, Genes & development.
[6] Mike Tyers,et al. How Cells Coordinate Growth and Division , 2004, Current Biology.
[7] J. Gallagher,et al. The Small-Subunit Processome Is a Ribosome Assembly Intermediate , 2004, Eukaryotic Cell.
[8] S. Baserga,et al. The small subunit processome is required for cell cycle progression at G1. , 2004, Molecular biology of the cell.
[9] M. Tyers,et al. A dynamic transcriptional network communicates growth potential to ribosome synthesis and critical cell size. , 2004, Genes & development.
[10] J. Gallagher,et al. RNA polymerase I transcription and pre-rRNA processing are linked by specific SSU processome components. , 2004, Genes & development.
[11] D. Koller,et al. Sfp1 is a stress- and nutrient-sensitive regulator of ribosomal protein gene expression. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[12] X. Bustelo,et al. Functional Characterization of Pwp2, a WD Family Protein Essential for the Assembly of the 90 S Pre-ribosomal Particle*♦ , 2004, Journal of Biological Chemistry.
[13] H. Beug,et al. Evidence for a size-sensing mechanism in animal cells , 2004, Nature Cell Biology.
[14] T. Glaser,et al. Ribosomal protein L24 defect in Belly spot and tail (Bst), a mouse Minute , 2004, Development.
[15] Mike Tyers,et al. CDK Activity Antagonizes Whi5, an Inhibitor of G1/S Transcription in Yeast , 2004, Cell.
[16] Curt Wittenberg,et al. Cln3 Activates G1-Specific Transcription via Phosphorylation of the SBF Bound Repressor Whi5 , 2004, Cell.
[17] E. Hurt,et al. The Yeast Kinase Swe1 is Required for Proper Entry into Cell Cycle After Arrest Due to Ribosome Biogenesis and Protein Synthesis Defects , 2004, Cell cycle.
[18] David Tollervey,et al. Yeast Nop15p is an RNA‐binding protein required for pre‐rRNA processing and cytokinesis , 2003, The EMBO journal.
[19] Ian M. Fingerman,et al. Sfp1 Plays a Key Role in Yeast Ribosome Biogenesis , 2003, Eukaryotic Cell.
[20] R. Aramayo,et al. The G1 cyclin Cln3p controls vacuolar biogenesis in Saccharomyces cerevisiae. , 2003, Genetics.
[21] E. Petfalski,et al. The path from nucleolar 90S to cytoplasmic 40S pre‐ribosomes , 2003, The EMBO journal.
[22] P. Pandolfi,et al. Does the ribosome translate cancer? , 2003, Nature Reviews Cancer.
[23] Z. Strezoska,et al. Functional Inactivation of the Mouse Nucleolar Protein Bop1 Inhibits Multiple Steps in Pre-rRNA Processing and Blocks Cell Cycle Progression* , 2002, The Journal of Biological Chemistry.
[24] Bernhard Kuster,et al. 90S pre-ribosomes include the 35S pre-rRNA, the U3 snoRNP, and 40S subunit processing factors but predominantly lack 60S synthesis factors. , 2002, Molecular cell.
[25] Bruce Stillman,et al. Yph1p, an ORC-Interacting Protein Potential Links between Cell Proliferation Control, DNA Replication, and Ribosome Biogenesis , 2002, Cell.
[26] J. Shabanowitz,et al. A large nucleolar U3 ribonucleoprotein required for 18S ribosomal RNA biogenesis , 2002, Nature.
[27] Mike Tyers,et al. Systematic Identification of Pathways That Couple Cell Growth and Division in Yeast , 2002, Science.
[28] J. E. Sutcliffe,et al. Overlapping Functions of the pRb Family in the Regulation of rRNA Synthesis , 2001, Molecular and Cellular Biology.
[29] Z. Strezoska,et al. ERB1, the yeast homolog of mammalian Bop1, is an essential gene required for maturation of the 25S and 5.8S ribosomal RNAs. , 2001, Nucleic acids research.
[30] Lester F. Lau,et al. Evidence of p53-Dependent Cross-Talk between Ribosome Biogenesis and the Cell Cycle: Effects of Nucleolar Protein Bop1 on G1/S Transition , 2001, Molecular and Cellular Biology.
[31] B. Kennedy,et al. RNA polymerase I transcription in confluent cells: Rb downregulates rDNA transcription during confluence-induced cell cycle arrest , 2000, Oncogene.
[32] M. Solomon,et al. Hsl1p, a Swe1p Inhibitor, Is Degraded via the Anaphase-Promoting Complex , 2000, Molecular and Cellular Biology.
[33] V. Kushnirov. Rapid and reliable protein extraction from yeast , 2000, Yeast.
[34] B. Futcher,et al. Genetic analysis of the shared role of CLN3 and BCK2 at the G(1)-S transition in Saccharomyces cerevisiae. , 1999, Genetics.
[35] J. Mccusker,et al. Three new dominant drug resistance cassettes for gene disruption in Saccharomyces cerevisiae , 1999, Yeast.
[36] E. Hafen,et al. Drosophila S6 kinase: a regulator of cell size. , 1999, Science.
[37] S. Baserga,et al. Imp3p and Imp4p, Two Specific Components of the U3 Small Nucleolar Ribonucleoprotein That Are Essential for Pre-18S rRNA Processing , 1999, Molecular and Cellular Biology.
[38] Stefano Fumagalli,et al. Disruption of the p70s6k/p85s6k gene reveals a small mouse phenotype and a new functional S6 kinase , 1998, The EMBO journal.
[39] D. Loayza,et al. Ste6p mutants defective in exit from the endoplasmic reticulum (ER) reveal aspects of an ER quality control pathway in Saccharomyces cerevisiae. , 1998, Molecular biology of the cell.
[40] P. Philippsen,et al. Additional modules for versatile and economical PCR‐based gene deletion and modification in Saccharomyces cerevisiae , 1998, Yeast.
[41] S. Baserga,et al. Functional separation of pre-rRNA processing steps revealed by truncation of the U3 small nucleolar ribonucleoprotein component, Mpp10. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[42] S. Baserga,et al. Mpp10p, a U3 small nucleolar ribonucleoprotein component required for pre-18S rRNA processing in yeast , 1997, Molecular and cellular biology.
[43] M. Polymenis,et al. Coupling of cell division to cell growth by translational control of the G1 cyclin CLN3 in yeast. , 1997, Genes & development.
[44] L. Taylor,et al. Activity of RNA polymerase I transcription factor UBF blocked by Rb gene product , 1995, Nature.
[45] F. Cross,et al. The yeast Cln3 protein is an unstable activator of Cdc28 , 1993, Molecular and cellular biology.
[46] B. Futcher,et al. Comparison of the Saccharomyces cerevisiae G1 cyclins: Cln3 may be an upstream activator of Cln1, Cln2 and other cyclins. , 1993, The EMBO journal.
[47] B. Futcher,et al. The Cln3‐Cdc28 kinase complex of S. cerevisiae is regulated by proteolysis and phosphorylation. , 1992, The EMBO journal.
[48] G. Tokiwa,et al. The WHI1+ gene of Saccharomyces cerevisiae tethers cell division to cell size and is a cyclin homolog. , 1988, The EMBO journal.
[49] F. Cross,et al. DAF1, a mutant gene affecting size control, pheromone arrest, and cell cycle kinetics of Saccharomyces cerevisiae , 1988, Molecular and cellular biology.
[50] S. Moore. Kinetic evidence for a critical rate of protein synthesis in the Saccharomyces cerevisiae yeast cell cycle. , 1988, The Journal of biological chemistry.
[51] L. Alberghina,et al. Control of the yeast cell cycle by protein synthesis. , 1982, Experimental cell research.
[52] L. Hartwell,et al. Unequal division in Saccharomyces cerevisiae and its implications for the control of cell division , 1977, The Journal of cell biology.
[53] P. Thuriaux,et al. Controls over the timing of DNA replication during the cell cycle of fission yeast. , 1977, Experimental cell research.
[54] G C Johnston,et al. Coordination of growth with cell division in the yeast Saccharomyces cerevisiae. , 1977, Experimental cell research.
[55] L. Hartwell,et al. Control of cell division in Saccharomyces cerevisiae by methionyl-tRNA. , 1976, Proceedings of the National Academy of Sciences of the United States of America.
[56] L. Hartwell,et al. Genetic control of the cell division cycle in yeast. , 1974, Science.
[57] W. Donachie,et al. Relationship between Cell Size and Time of Initiation of DNA Replication , 1968, Nature.
[58] M. Tyers,et al. 11 Forging the Factory: Ribosome Synthesis and Growth Control in Budding Yeast , 2004 .
[59] R. Young,et al. RNA polymerase II. , 1991, Annual review of biochemistry.