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IPR038587

Description

IPR038587 is a Large ribosomal subunit protein eL40 superfamily.

<p>This entry includes the large ribosomal subunit protein eL40 from both archaea and eukaryotes (also known as L40). In eukaryotes, L40 is fused to ubiquitin moieties, and this fusion protein is known as UBL40 [[cite:PUB00000250], [cite:PUB00083514]]. Specific endopeptidases cleave these precursor molecules to release ubiquitin moieties [[cite:PUB00083511]]. UBL40 plays important roles in gametogenesis [[cite:PUB00083520], [cite:PUB00083521]]. This fusion may also have a pre-cleavage function in ribosome assembly [[cite:PUB00083514]].</p> <p>Ribosomes are the particles that catalyse mRNA-directed protein synthesis in all organisms. The codons of the mRNA are exposed on the ribosome to allow tRNA binding. This leads to the incorporation of amino acids into the growing polypeptide chain in accordance with the genetic information. Incoming amino acid monomers enter the ribosomal A site in the form of aminoacyl-tRNAs complexed with elongation factor Tu (EF-Tu) and GTP. The growing polypeptide chain, situated in the P site as peptidyl-tRNA, is then transferred to aminoacyl-tRNA and the new peptidyl-tRNA, extended by one residue, is translocated to the P site with the aid the elongation factor G (EF-G) and GTP as the deacylated tRNA is released from the ribosome through one or more exit sites [[cite:PUB00007068], [cite:PUB00007069]]. About 2/3 of the mass of the ribosome consists of RNA and 1/3 of protein. The proteins are named in accordance with the subunit of the ribosome which they belong to the small (S1 to S31) and the large (L1 to L44). Usually they decorate the rRNA cores of the subunits.</p> <p>Many ribosomal proteins, particularly those of the large subunit, are composed of a globular, surfaced-exposed domain with long finger-like projections that extend into the rRNA core to stabilise its structure. Most of the proteins interact with multiple RNA elements, often from different domains. In the large subunit, about 1/3 of the 23S rRNA nucleotides are at least in van der Waal's contact with protein, and L22 interacts with all six domains of the 23S rRNA. Proteins S4 and S7, which initiate assembly of the 16S rRNA, are located at junctions of five and four RNA helices, respectively. In this way proteins serve to organise and stabilise the rRNA tertiary structure. While the crucial activities of decoding and peptide transfer are RNA based, proteins play an active role in functions that may have evolved to streamline the process of protein synthesis. In addition to their function in the ribosome, many ribosomal proteins have some function 'outside' the ribosome [[cite:PUB00007069], [cite:PUB00007070]].</p>

This description is obtained from EB-eye REST.

Associated GO terms

Unable to find any GO terms for the transcript with the identifier.

Associated Lotus transcripts 3

Transcript Name Description Predicted domains Domain count
Ubiquitin, putative; TAIR: AT2G36170.1 60S ribosomal protein L40-1; Swiss-Prot: sp|P49636|RL40_NICSY Ubiquitin-60S ribosomal protein L40; TrEMBL-Plants: tr|A0A061G1H4|A0A061G1H4_THECC Ubiquitin supergroup,Ribosomal protein L40e; Found in the gene: LotjaGi1g1v0293700 21
Ubiquitin, putative; TAIR: AT2G36170.1 60S ribosomal protein L40-1; Swiss-Prot: sp|P49636|RL40_NICSY Ubiquitin-60S ribosomal protein L40; TrEMBL-Plants: tr|A0A061G1H4|A0A061G1H4_THECC Ubiquitin supergroup,Ribosomal protein L40e; Found in the gene: LotjaGi1g1v0674100 21
Ubiquitin, putative; TAIR: AT2G36170.1 60S ribosomal protein L40-1; Swiss-Prot: sp|P49636|RL40_NICSY Ubiquitin-60S ribosomal protein L40; TrEMBL-Plants: tr|A0A061G1H4|A0A061G1H4_THECC Ubiquitin supergroup,Ribosomal protein L40e; Found in the gene: LotjaGi5g1v0099000 21

Co-occuring domains 1

A list of co-occurring predicted domains within the L. japonicus gene space:

Predicted domain Source Observations Saturation (%)
cd01803 CDD 1 33.33