RPS9B/YBR189W Literature Guide Help

Other names published for RPS9B: RPS13A, SUP46, S13, S4, S9B, YS11, rp21, ribosomal 40S subunit protein S9B, YBR189W

RPS9B - Mutants/Phenotypes (23)

ReferenceOther Genes Addressed
Jakob S, et al.  (2012) Interrelationships between Yeast Ribosomal Protein Assembly Events and Transient Ribosome Biogenesis Factors Interactions in Early Pre-Ribosomes. PLoS One 7(3):e32552
Plocik AM and Guthrie C  (2012) Diverse Forms of RPS9 Splicing Are Part of an Evolving Autoregulatory Circuit. PLoS Genet 8(3):e1002620
Wilmes A, et al.  (2012) Chemical genetic profiling of the microtubule-targeting agent peloruside A in budding yeast Saccharomyces cerevisiae. Gene 497(2):140-6
Parenteau J, et al.  (2011) Introns within Ribosomal Protein Genes Regulate the Production and Function of Yeast Ribosomes. Cell 147(2):320-31
Villa-Garcia MJ, et al.  (2011) Genome-wide screen for inositol auxotrophy in Saccharomyces cerevisiae implicates lipid metabolism in stress response signaling. Mol Genet Genomics 285(2):125-49
Yadav V, et al.  (2011) Chlorophenol stress affects aromatic amino acid biosynthesis-a genome-wide study. Yeast 28(1):81-91
Andersen MP, et al.  (2008) A Genetic Screen for Increased Loss of Heterozygosity in Saccharomyces cerevisiae. Genetics 179(3):1179-95
Huang B, et al.  (2008) A genome-wide screen identifies genes required for formation of the wobble nucleoside 5-methoxycarbonylmethyl-2-thiouridine in Saccharomyces cerevisiae. RNA 14(10):2183-94
Shima J, et al.  (2008) Possible roles of vacuolar H(+)-ATPase and mitochondrial function in tolerance to air-drying stress revealed by genome-wide screening of Saccharomyces cerevisiae deletion strains. Yeast 25(3):179-90
Steffen KK, et al.  (2008) Yeast life span extension by depletion of 60s ribosomal subunits is mediated by Gcn4. Cell 133(2):292-302
Pnueli L and Arava Y  (2007) Genome-wide polysomal analysis of a yeast strain with mutated ribosomal protein S9. BMC Genomics 8:285
Xia L, et al.  (2007) Identification of genes required for protection from doxorubicin by a genome-wide screen in Saccharomyces cerevisiae. Cancer Res 67(23):11411-8
Ferreira-Cerca S, et al.  (2005) Roles of eukaryotic ribosomal proteins in maturation and transport of pre-18S rRNA and ribosome function. Mol Cell 20(2):263-75
Salas-Marco J and Bedwell DM  (2005) Discrimination between defects in elongation fidelity and termination efficiency provides mechanistic insights into translational readthrough. J Mol Biol 348(4):801-15
Stansfield I, et al.  (1998) Missense translation errors in Saccharomyces cerevisiae. J Mol Biol 282(1):13-24
Vincent A and Liebman SW  (1992) The yeast omnipotent suppressor SUP46 encodes a ribosomal protein which is a functional and structural homolog of the Escherichia coli S4 ram protein. Genetics 132(2):375-86
Ono B, et al.  (1991) Interactions between chromosomal omnipotent suppressors and extrachromosomal effectors in Saccharomyces cerevisiae. Curr Genet 19(4):243-8
Wakem LP and Sherman F  (1990) Isolation and characterization of omnipotent suppressors in the yeast Saccharomyces cerevisiae. Genetics 124(3):515-22
Ono B, et al.  (1989) Two new loci that give rise to dominant omnipotent suppressors in Saccharomyces cerevisiae. Curr Genet 16(5-6):323-30
Eustice DC, et al.  (1986) Altered 40 S ribosomal subunits in omnipotent suppressors of yeast. J Mol Biol 188(2):207-14
Ono BI, et al.  (1984) Omnipotent Suppressors Effective in psi Strains of SACCHAROMYCES CEREVISIAE: Recessiveness and Dominance. Genetics 107(2):219-230
Ono BI, et al.  (1981) Serine insertion caused by the ribosomal suppressor SUP46 in yeast. J Mol Biol 147(3):373-9
Chattoo BB, et al.  (1979) Patterns of Genetic and Phenotypic Suppression of lys2 Mutations in the Yeast SACCHAROMYCES CEREVISIAE. Genetics 93(1):67-79