Literature DB >> 15518563

Crystal structure of archaeal ribonuclease P protein aRpp29 from Archaeoglobus fulgidus.

David J Sidote1, Johanna Heideker, David W Hoffman.   

Abstract

The crystal structure of ribonuclease P protein aRpp29 from the sulfate-reducing hyperthermophile Archaeoglobus fulgidus was determined at 1.7 A resolution using X-ray diffraction methods. The central feature of this archaeal protein is a sheet of six antiparallel beta-strands twisted around a conserved hydrophobic core. Residues near the N- and C-termini form helical structures that are oriented in an antiparallel manner. A comparison of conserved amino acids indicates that archaeal aRpp29 is homologous to human ribonuclease P protein Rpp29. The aRpp29 protein is structurally similar to bacterial transcription factors Hfq and NusG, as well as the Sm and Sm-like RNA-associated proteins from eukarya. The crystal structure of A. fulgidus aRpp29 differs from the previously reported solution structure, where NMR data did not detect the helices and indicated that approximately 40% of the residues are relatively flexible or disordered. Circular dichroism data indicate that the protein has less helical content than the amount observed in the crystal, suggesting that in solution the helical regions are unfolded or in equilibrium between folded and unfolded forms; this hypothesis is consistent with amide proton exchange rate data. Surface residues that are conserved from archaea to humans and are likely to interact with the ribonuclease P RNA or other protein subunits are identified in the structure. The model of the aRpp29 protein defined by this work provides an essential step toward eventually understanding the overall architecture of ribonuclease P.

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Year:  2004        PMID: 15518563     DOI: 10.1021/bi048578z

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  15 in total

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2.  Ribonuclease P: the evolution of an ancient RNA enzyme.

Authors:  Scott C Walker; David R Engelke
Journal:  Crit Rev Biochem Mol Biol       Date:  2006 Mar-Apr       Impact factor: 8.250

3.  Structure of Pfu Pop5, an archaeal RNase P protein.

Authors:  Ross C Wilson; Christopher J Bohlen; Mark P Foster; Charles E Bell
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4.  Thermodynamics of coupled folding in the interaction of archaeal RNase P proteins RPP21 and RPP29.

Authors:  Yiren Xu; Sri Vidya Oruganti; Venkat Gopalan; Mark P Foster
Journal:  Biochemistry       Date:  2012-01-18       Impact factor: 3.162

5.  Cooperative RNP assembly: complementary rescue of structural defects by protein and RNA subunits of archaeal RNase P.

Authors:  Wen-Yi Chen; Yiren Xu; I-Ming Cho; Sri Vidya Oruganti; Mark P Foster; Venkat Gopalan
Journal:  J Mol Biol       Date:  2011-06-12       Impact factor: 5.469

6.  Functional characterization of the conserved amino acids in Pop1p, the largest common protein subunit of yeast RNases P and MRP.

Authors:  Shaohua Xiao; John Hsieh; Rebecca L Nugent; Daniel J Coughlin; Carol A Fierke; David R Engelke
Journal:  RNA       Date:  2006-04-17       Impact factor: 4.942

Review 7.  Unexpected diversity of RNase P, an ancient tRNA processing enzyme: challenges and prospects.

Authors:  Lien B Lai; Agustín Vioque; Leif A Kirsebom; Venkat Gopalan
Journal:  FEBS Lett       Date:  2010-01-21       Impact factor: 4.124

8.  Solution structure of an archaeal RNase P binary protein complex: formation of the 30-kDa complex between Pyrococcus furiosus RPP21 and RPP29 is accompanied by coupled protein folding and highlights critical features for protein-protein and protein-RNA interactions.

Authors:  Yiren Xu; Carlos D Amero; Dileep K Pulukkunat; Venkat Gopalan; Mark P Foster
Journal:  J Mol Biol       Date:  2009-09-03       Impact factor: 5.469

Review 9.  Archaeal/eukaryal RNase P: subunits, functions and RNA diversification.

Authors:  Nayef Jarrous; Venkat Gopalan
Journal:  Nucleic Acids Res       Date:  2010-08-16       Impact factor: 16.971

10.  Dissecting functional cooperation among protein subunits in archaeal RNase P, a catalytic ribonucleoprotein complex.

Authors:  Wen-Yi Chen; Dileep K Pulukkunat; I-Ming Cho; Hsin-Yue Tsai; Venkat Gopalan
Journal:  Nucleic Acids Res       Date:  2010-08-12       Impact factor: 16.971

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