Glycerol kinase, converts glycerol to glycerol-3-phosphate; glucose repression of expression is mediated by Adr1p and Ino2p-Ino4p; derepression of expression on non-fermentable carbon sources is mediated by Opi1p and Rsf1p
Zygosity: Homozygous strain
fixedexpanded
![]() ![]() Click on Significant Values for Screen Details |
Top fitness defect scores for YHL032C deletion by condition
Download Fitness data (tab-delimited text) (excel) |
Correlation | pval | ORF | Gene | Zygosity | Description |
---|---|---|---|---|---|
0.144 | 4.03E-17 | YOR149C | SMP3 | het | Alpha 1,2-mannosyltransferase involved in glycosyl phosphatidyl inositol (GPI) biosynthesis; required for addition of the fourth, side branching mannose to the GPI core structure |
0.144 | 4.07E-17 | YJL208C | NUC1 | hom | Major mitochondrial nuclease, has RNAse and DNA endo- and exonucleolytic activities; has roles in mitochondrial recombination, apoptosis and maintenance of polyploidy |
0.144 | 5.24E-17 | YOR291W | YPK9 | hom | Vacuolar protein with a possible role in sequestering heavy metals; has similarity to the type V P-type ATPase Spf1p; homolog of human ATP13A2 (PARK9), mutations in which are associated with Parkinson disease and Kufor-Rakeb syndrome |
0.138 | 1.22E-15 | YHR007C-A_p | YHR007C-A_p | hom | Putative protein of unknown function; identified by expression profiling and mass spectrometry |
0.133 | 1.19E-14 | YJR017C | ESS1 | het | Peptidylprolyl-cis/trans-isomerase (PPIase); specific for phosphorylated serine and threonine residues N-terminal to proline; regulates phosphorylation of the RNAP II large subunit (Rpo21p) C-terminal domain (CTD); associates with phospho-Ser5 form of RNAP II in vivo; regulates phosphorylation of Ser7 within CTD; present along entire coding length of genes; represses initiation of CUTs; required for efficient termination of mRNA transcription and trimethylation of histone H3 |
0.124 | 6.64E-13 | YOR095C | RKI1 | het | Ribose-5-phosphate ketol-isomerase, catalyzes the interconversion of ribose 5-phosphate and ribulose 5-phosphate in the pentose phosphate pathway; participates in pyridoxine biosynthesis |
0.120 | 3.00E-12 | YNL270C | ALP1 | hom | Arginine transporter; expression is normally very low and it is unclear what conditions would induce significant expression; ALP1 has a paralog, CAN1, that arose from the whole genome duplication |
0.119 | 4.04E-12 | YJR022W | LSM8 | het | Lsm (Like Sm) protein; forms heteroheptameric complex (with Lsm2p, Lsm3p, Lsm4p, Lsm5p, Lsm6p, and Lsm7p) that is part of spliceosomal U6 snRNP and is also implicated in processing of pre-tRNA, pre-snoRNA, and pre-rRNA |
0.113 | 5.46E-11 | YOR004W | UTP23 | het | Component of the small subunit processome, involved in 40S ribosomal subunit biogenesis; interacts with snR30 and is required for dissociation of snR30 from large pre-ribosomal particles; has homology to PINc domain protein Fcf1p, although the PINc domain of Utp23p is not required for function; essential protein |
0.112 | 7.72E-11 | YPL224C | MMT2 | hom | Putative metal transporter involved in mitochondrial iron accumulation; closely related to Mmt1p |
0.111 | 1.01E-10 | YJR115W_p | YJR115W_p | hom | Putative protein of unknown function; YJR115W has a paralog, ECM13, that arose from the whole genome duplication |
0.111 | 1.25E-10 | YOR329C | SCD5 | het | Protein required for normal actin organization and endocytosis; targeting subunit for protein phosphatase type 1; undergoes Crm1p-dependent nuclear-cytoplasmic shuttling; multicopy suppressor of clathrin deficiency |
0.104 | 1.31E-9 | YLR349W_d | YLR349W_d | hom | Dubious open reading frame unlikely to encode a protein, based on available experimental and comparative sequence data; overlaps the verified ORF DIC1/YLR348C |
0.104 | 1.37E-9 | YER172C | BRR2 | het | RNA-dependent ATPase RNA helicase (DEIH box); required for disruption of U4/U6 base-pairing in native snRNPs to activate the spliceosome for catalysis; homologous to human U5-200kD |
0.104 | 1.73E-9 | YLR010C | TEN1 | het | Protein that regulates telomeric length; protects telomeric ends in a complex with Cdc13p and Stn1p |