The ASCH superfamily: novel domains with a fold related to the PUA domain and a potential role in RNA metabolism
Open Access
- 1 December 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Bioinformatics
- Vol. 22 (3) , 257-263
- https://doi.org/10.1093/bioinformatics/bti767
Abstract
Several studies show that transcription coactivators are often bi-functional ribonucleoprotein complexes that also regulate pre-mRNA processing and splicing decisions. Using sensitive sequence profile searches and structural comparisons we show that the C-terminal domain of the human coactivator protein ASC-1 defines a novel superfamily, the ASC-1 homology (ASCH) domain. The approximately 110 amino acid long ASCH domains are widely represented in all the three superkingdoms of life and several prokaryotic viruses. We show that the ASCH superfamily adopts a beta-barrel fold similar to the PUA domain superfamily. Using multiple lines of evidence, we suggest that members of the ASCH superfamily are likely to function as RNA-binding domains in contexts related to coactivation, RNA-processing and possibly prokaryotic translation regulation. Structural analysis of ASCH domains reveals the presence of a potential RNA-binding cleft associated with a conserved sequence motif, which is characteristic of this superfamily. Despite their similar structure, the ASCH and PUA domains appear to occupy distinct functional niches, with the former domains typically occurring in a standalone form in polypeptides, and the latter domains showing fusions to a variety of RNA-modifying enzymes. Contact:aravind@ncbi.nlm.nih.gov Supplementary information: A complete alignment of all ASCH domains in the NR-database and other domains found fused to the ASCH can be retrieved fromKeywords
This publication has 31 references indexed in Scilit:
- PIN domain of Nob1p is required for D-site cleavage in 20S pre-rRNARNA, 2004
- The Pfam protein families databaseNucleic Acids Research, 2004
- Novel Transcription Coactivator Complex Containing Activating Signal Cointegrator 1Molecular and Cellular Biology, 2002
- Crystal Structure of Archaeosine tRNA-guanine TransglycosylaseJournal of Molecular Biology, 2002
- An extensive network of coupling among gene expression machinesNature, 2002
- Cocrystal Structure of a tRNA Ψ55 Pseudouridine SynthaseCell, 2001
- T-coffee: a novel method for fast and accurate multiple sequence alignment 1 1Edited by J. ThorntonJournal of Molecular Biology, 2000
- Gapped BLAST and PSI-BLAST: a new generation of protein database search programsNucleic Acids Research, 1997
- Complete genome sequences of cellular life forms: glimpses of theoretical evolutionary genomicsCurrent Opinion in Genetics & Development, 1996
- PHD-an automatic mail server for protein secondary structure predictionBioinformatics, 1994