Adaptive recognition in RNA complexes with peptides and protein modules Journal Article


Author: Patel, D. J.
Article Title: Adaptive recognition in RNA complexes with peptides and protein modules
Abstract: Recently progress has been made towards the structural characterization of the novel folds of RNA-bound arginine-rich peptides and the architecture of their peptide-binding RNA pockets in viral and phage systems. These studies are based on an approach whereby the peptide and RNA components are minimalist modular domains that undergo adaptive structural transitions upon complex formation. Such complexes are characterized by recognition alignments in which the tertiary fold of the RNA generates binding pockets with the potential to envelop minimal elements of protein secondary structure. Strikingly, the peptides fold as isolated α-helical or β-hairpin folds within their RNA major-groove targets, without the necessity of additional appendages for anchorage within the binding pocket. The RNA peptide-binding pocket architectures are sculptured through precisely positioned mismatches, triples and looped-out bases, which accommodate amino acid sidechains through hydrophobic, hydrogen bonding and ionic intermolecular contacts. By contrast, protein modules associated with the HIV-1 nucleocapsid and MS2 phage coat target their RNA binding sites through the insertion of specificity-determining RNA base residues within conserved hydrophobic pockets and crevices on the protein surface, with the bases anchored through hydrogen bonding interactions. These alternative strategies of RNA recognition at the peptide and protein module level provide novel insights into the principles, patterns and diversity of the adaptive transitions associated with the recognition process.
Keywords: review; nonhuman; protein conformation; animals; protein; peptide; rna; rna-binding proteins; amino acid sequence; molecular sequence data; rna viruses; molecular recognition; peptides; base sequence; amino acid; hydrogen bond; models, molecular; binding sites; cattle; human immunodeficiency virus; protein folding; protein secondary structure; rna structure; virus; arginine; rna, viral; human immunodeficiency virus 1; hiv-1; viral proteins; protein rna binding; alpha helix; hydrophobicity; beta chain; bacteriophage; bacteriophages; humans; priority journal; unidentified bacteriophage; virus nucleocapsid; gene products, rev; immunodeficiency virus, bovine; ms2 virus
Journal Title: Current Opinion in Structural Biology
Volume: 9
Issue: 1
ISSN: 0959-440X
Publisher: Elsevier Inc.  
Date Published: 1999-02-01
Start Page: 74
End Page: 87
Language: English
DOI: 10.1016/s0959-440x(99)80010-4
PUBMED: 10047585
PROVIDER: scopus
DOI/URL:
Notes: Review -- Export Date: 16 August 2016 -- Source: Scopus
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  1. Dinshaw J Patel
    477 Patel