H2ac11 Gene Summary [Mouse]

Histones are basic nuclear proteins that are responsible for the nucleosome structure of the chromosomal fiber in eukaryotes. Two molecules of each of the four core histones (H2A, H2B, H3, and H4) form an octamer, around which approximately 146 bp of DNA is wrapped in repeating units, called nucleosomes. The linker histone, H1, interacts with linker DNA between nucleosomes and functions in the compaction of chromatin into higher order structures. This gene is intronless and encodes a replication-dependent histone that is a member of the histone H2A family. Transcripts from this gene lack polyA tails but instead contain a palindromic termination element. [provided by RefSeq, Aug 2015]

Details

Type
Protein Coding
Official Symbol
H2ac11
Official Name
H2A clustered histone 11 [Source:MGI Symbol;Acc:MGI:2448293]
Ensembl ID
ENSMUSG00000069301
Bio databases IDs NCBI: 319167 Ensembl: ENSMUSG00000069301
Aliases H2A clustered histone 11
Synonyms H2ac4, H2A clustered histone 11, H2A clustered histone 4, Hist1h2ag, Hist1h2ak, LOC682318
Species
Mouse, Mus musculus
OrthologiesRat

Protein Domains

A protein domain is a distinct structural or functional region within a protein that can evolve, function, and exist independently of the rest of the protein chain. These domains in mouse H2ac11 often fold into stable, three-dimensional structures and are associated with specific biological functions, such as binding to DNA, other proteins, or small molecules.
  • histone fold domain (HFD) superfamily
  • C-terminus of histone H2A
  • Histone 2A

Top Findings

The most significant associations for this gene, including commonly observed domains, pathway involvement, and functional highlights based on current data.
binds
regulated by
  • poly rI:rC-RNA
  • L-triiodothyronine
  • PTGER2

Subcellular Expression

Locations within the cell where the protein is known or predicted to be active, providing insight into its function and cellular context.
  • Nucleus
  • nucleosomes

Gene-Specific Assays for Results You Can Trust

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