LSM5
Sign in to saveAlso known as YER146W, LSM5 homolog, U6 small nuclear RNA and mRNA degradation associated
U6 snRNA-associated Sm-like protein LSm5 is a protein that in humans is encoded by the LSM5 gene.
Gene data
LSM5- Name
- LSM5 homolog, U6 small nuclear RNA and mRNA degradation associated
- Type
- protein-coding
- Position
- 32,485,338–32,495,283 (−)
- Aliases
- YER146W
- Ensembl
- ENSG00000106355
- RefSeq RNA
- NM_001130710.2, NM_001139499.2, NM_012322.3, NR_024466.2, XM_047420100.1
- RefSeq protein
- NP_001124182.1, NP_001132971.1, NP_036454.1, XP_047276056.1, XP_054213707.1
Sm-like proteins were identified in a variety of organisms based on sequence homology with the Sm protein family (see SNRPD2; MIM 601061). Sm-like proteins contain the Sm sequence motif, which consists of 2 regions separated by a linker of variable length that folds as a loop. The Sm-like proteins are thought to form a stable heteromer present in tri-snRNP particles, which are important for pre-mRNA splicing.[supplied by OMIM, Apr 2004].
Gene Ontology
Biological process
Molecular function
Pathways
via MyGene.info
Gene · Ensembl
LSM5 homolog, U6 small nuclear RNA and mRNA degradation associated
- Symbol
- LSM5
- Biotype
- Protein coding
- Organism
- Homo sapiens
- Location
- 7:32,474,306-32,495,283
- Strand
- Reverse (−)
- Assembly
- GRCh38
via Ensembl · EMBL-EBI
Wikidata facts
Show 5 more facts
- HomoloGene ID
- 40833
- exact match
- identifiers.org/ncbigene/23658
- genomic end
- 32534895
- genomic start
- 32485338
- cytogenetic location
- 7p14.3
Sources (4)
via Wikidata · CC0
~1 min read
Article
2 sectionsContents
- References
- Further reading
U6 snRNA-associated Sm-like protein LSm5 is a protein that in humans is encoded by the LSM5 gene.
Sm-like proteins were identified in a variety of organisms based on sequence homology with the Sm protein family (see SNRPD2; MIM 601061). Sm-like proteins contain the Sm sequence motif, which consists of 2 regions separated by a linker of variable length that folds as a loop. The Sm-like proteins are thought to form a stable heteromer present in tri-snRNP particles, which are important for pre-mRNA splicing.[supplied by OMIM]