Protein Domain : IPR016082

Type:  Domain Name:  Ribosomal protein L30, ferredoxin-like fold domain
Description:  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 [, ]. 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. 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 [, ].Ribosomal protein L30 is one of the proteins from the large ribosomal subunit. L30 belongs to a family of ribosomal proteins which, on the basis of sequence similarities [], groups bacteria and archaea L30, yeast mitochondrial L33, and Drosophila melanogaster, Dictyostelium discoideum(Slime mold), fungal and mammalian L7 ribosomal proteins. L30 from bacteria are small proteins of about 60 residues, those from archaea are proteins of about 150 residues, and eukaryotic L7 are proteins of about 250 to 270 residues.This entry represents a domain with a ferredoxin-like fold, with a core structure consisting of core: beta-alpha-beta-alpha-beta. This domain is found in prokaryotic ribosomal protein L30 (short-chain member of the family), as well as in archaeal L30 (L30a) (long-chain member of the family), the later containing an additional C-terminal (sub)domain).It is also found in nucleolar proteins with similarity to large ribosomal subunit L7 proteins. These are constituents of 66S pre-ribosomal particles and play an essential role in processing of precursors to the large ribosomal subunit RNAs [, , ]. Short Name:  Ribosomal_L30_ferredoxin-like

0 Child Features

1 Contains

DB identifier Type Name
IPR018038 Conserved_site Ribosomal protein L30, conserved site

3 Cross Referencess

Identifier
PF00327
G3DSA:3.30.1390.20
SSF55129

1 Found In

DB identifier Type Name
IPR005998 Family Ribosomal protein L7, eukaryotic

0 GO Annotation

0 Ontology Annotations

0 Parent Features

3256 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
103994 D8RWP2 PAC:15413047 Selaginella moellendorffii 245  
416842 D8S0K6 PAC:15403835 Selaginella moellendorffii 166  
evm.model.supercontig_10.93 PAC:16404713 Carica papaya 121  
evm.model.supercontig_12.255 PAC:16406809 Carica papaya 110  
evm.model.supercontig_21.235 PAC:16413520 Carica papaya 242  
evm.model.supercontig_48.97 PAC:16420961 Carica papaya 111  
evm.model.supercontig_72.55 PAC:16425557 Carica papaya 889  
29822.m003520 B9RUS1 PAC:16809888 Ricinus communis 243  
29948.m000700 B9SH53 PAC:16814365 Ricinus communis 107  
30028.m000249 B9SZL7 PAC:16815954 Ricinus communis 166  
30060.m000529 B9SDR8 PAC:16816319 Ricinus communis 243  
30060.m000530 B9SDR9 PAC:16816320 Ricinus communis 145  
30170.m014101 B9R806 PAC:16821937 Ricinus communis 363  
29588.m000863 B9SMU2 PAC:16803237 Ricinus communis 247  
Cucsa.055620.1 PAC:16954452 Cucumis sativus 227  
Cucsa.149550.1 PAC:16964287 Cucumis sativus 243  
Cucsa.149550.2 PAC:16964288 Cucumis sativus 243  
Cucsa.149550.3 PAC:16964289 Cucumis sativus 187  
Cucsa.149550.4 PAC:16964290 Cucumis sativus 182  
Cucsa.032740.1 PAC:16952485 Cucumis sativus 204  
Cucsa.255430.1 A0A0A0L528 PAC:16972395 Cucumis sativus 246  
Cucsa.255430.2 PAC:16972396 Cucumis sativus 215  
Cucsa.309400.1 A0A0A0LN29 PAC:16976461 Cucumis sativus 108  
Cucsa.359600.1 A0A0A0KCA3 PAC:16980607 Cucumis sativus 243  
Cucsa.359600.2 A0A0A0KCA3 PAC:16980608 Cucumis sativus 243  
orange1.1g026027m A0A067DQV3 PAC:18113730 Citrus sinensis 244  
orange1.1g026055m A0A067DQV3 PAC:18113731 Citrus sinensis 244  
orange1.1g025547m A0A067DGX7 PAC:18122310 Citrus sinensis 251  
orange1.1g026136m A0A067F3J5 PAC:18105457 Citrus sinensis 243  
orange1.1g026093m A0A067F3J5 PAC:18105458 Citrus sinensis 243  

7 Publications

First Author Title Year Journal Volume Pages PubMed ID
            11297922
            11290319
            11114498
            1549461
            8256515
            11087857
            15100437