RNA binding chaperone with ATP-independent RNA annealing activity; Nucleolar protein involved in asymmetric localization of ASH1 mRNA; binds cooperatively with She2p to the E3 zip-code element in the 3'-UTR; ribosomal 60S biogenesis factor required for Rpl43p loading; 66S pre-ribosomal particle component involved in pre-rRNA processing and 60S nuclear export; Ty1 host factor; has intrinsically disordered RNA binding (PUN) motifs; relocalizes to the cytoplasm upon DNA replication stress
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The S. cerevisiae Reference Genome sequence is derived from laboratory strain
S288C. Download DNA or protein sequence, view genomic context and
coordinates. Click "Sequence Details" to view all sequence information for this locus, including that
for other strains.
Summary
LOC1/YFR001W is located on the right arm of chromosome VI, coding sequence is 615 nucleotides long
Basic sequence-derived (length, molecular weight, isoelectric point) and experimentally-determined (median abundance, median absolute deviation) protein information. Click "Protein Details" for further information about the protein such as half-life, abundance, domains, domains shared with other proteins, protein sequence retrieval for various strains, physico-chemical properties, protein modification sites, and external identifiers for the protein.
Summary
Relocalizes from nucleus to cytoplasm upon DNA replication stress
Length (a.a.)
204
Mol. Weight (Da)
23622.0
Isoelectric Point
11.07
Median Abundance (molecules/cell)
3874 +/- 881
Half-life (hr)
9.4
Alleles
Curated mutant alleles for the specified gene, listed alphabetically. Click on the allele name to open the allele page. Click "SGD search" to view all alleles in search results.
GO Annotations consist of four mandatory components: a gene product, a term from one of the three
Gene Ontology (GO) controlled vocabularies
(Molecular Function,
Biological Process, and
Cellular Component), a reference, and an
evidence code. SGD has manually curated and high-throughput GO Annotations, both derived from the
literature, as well as computational, or predicted, annotations. Click "Gene Ontology Details" to view
all GO information and evidence for this locus as well as biological processes it shares with other genes.
Summary
Nucleolar RNA binding chaperone with ATP-independent RNA annealing activity; part of the large subunit precursor to the preribosome; involved in rRNA processing, biogenesis of the large subunit, and export of the LSU from the nucleus; binds mRNA and has roles in mRNA localization and regulation of translation as part of a chaperone complex
Functional Networks display how gene products work together in biological systems. The Shared Annotations
network shows genes with similar GO annotations, suggesting functional relationships. GO-CAMs (Gene
Ontology Causal Activity Models) are manually curated pathway models that illustrate how molecular
activities of multiple gene products connect through causal relationships to carry out biological
processes. GO-CAMs integrate Molecular Function, Biological Process, and Cellular Component information
into unified pathway representations based on published experimental evidence. Click "View GO-CAM at Gene
Ontology" to explore the interactive model at AmiGO.
Click on a gene or Biological Process GO term name to go to its specific page within SGD; drag any of the gene or GO
term name objects around within the visualization for easier viewing; click “Reset” to automatically redraw the
diagram; filter the genes that share GO Biological Process terms with the given gene by the number of terms they
share by clicking anywhere on the slider bar or dragging the tab to the desired filter number.
Phenotype annotations for a gene are curated single mutant phenotypes that require an observable
(e.g., "cell shape"), a qualifier (e.g., "abnormal"), a mutant type (e.g., null), strain background,
and a reference. In addition, annotations are classified as classical genetics or high-throughput
(e.g., large scale survey, systematic mutation set). Whenever possible, allele information and
additional details are provided. Click "Phenotype Details" to view all phenotype annotations and
evidence for this locus as well as phenotypes it shares with other genes.
Summary
LOC1/YFR001W is a non-essential gene in reference strain S288C; null mutants are viable but grow slowly with decreased fermentative growth rate, decreased vegetative growth, increased G1 phase duration, haploinsufficiency, and decreased competitive fitness. Null mutants exhibit abnormal, decreased, and increased accumulation of different chemical compounds, decreased and increased RNA accumulation, abnormal RNA localization, decreased protein/peptide accumulation, abnormal budding pattern, abnormal cell shape, decreased cell size, abnormal vacuolar morphology, decreased endocytosis, and decreased peroxisomal transport. Stress resistance phenotypes are highly context-dependent: null mutants show increased heat sensitivity, decreased desiccation resistance, decreased freeze-thaw resistance, decreased metal resistance, variable overall stress resistance (both increased and decreased depending on conditions), and variable resistance to chemicals (both increased and decreased depending on the compound), while resistance to enzymatic treatment and toxin resistance are increased. Null mutants display absent or decreased utilization of nitrogen sources, decreased mitotic recombination, decreased transposable element transposition, increased chronological lifespan, and variable replicative lifespan (both increased and decreased depending on conditions). Overexpression of LOC1 results in increased filamentous growth.
Interaction annotations are curated by BioGRID and include physical
or genetic interactions observed
between at least two genes. An interaction annotation is composed of the interaction type, name of the
interactor, assay type (e.g., Two-Hybrid), annotation type (e.g., manual or high-throughput), and a
reference, as well as other experimental details. Click "Interaction Details" to view all interaction
annotations and evidence for this locus, including an interaction visualization.
The number of putative Regulators (genes that regulate it) and Targets (genes it regulates) for the
given locus, based on experimental evidence. This evidence includes data generated through
high-throughput techniques. Click "Regulation Details" to view all regulation annotations, shared GO
enrichment among regulation Targets, and a regulator/target diagram for the locus.
Expression data are derived from records contained in the
Gene Expression Omnibus (GEO), and are first log2
transformed and normalized. Referenced datasets may contain one or more condition(s), and as a result
there may be a greater number of conditions than datasets represented in a single clickable histogram
bar. The histogram division at 0.0 separates the down-regulated (green) conditions and datasets from
those that are up-regulated (red). Click "Expression Details" to view all expression annotations and
details for this locus, including a visualization of genes that share a similar expression pattern.
All manually curated literature for the specified gene, shown as a count of references by year of
publication followed by the most recent papers. Click "Literature Details" or "See all"
to view all literature information for this locus, organized into topics according to their
relevance to the gene (Primary Literature, Additional Literature, or Review).