Literature DB >> 14673079

Structure of Mth11/Mth Rpp29, an essential protein subunit of archaeal and eukaryotic RNase P.

William P Boomershine1, Craig A McElroy, Hsin-Yue Tsai, Ross C Wilson, Venkat Gopalan, Mark P Foster.   

Abstract

We have determined the solution structure of Mth11 (Mth Rpp29), an essential subunit of the RNase P enzyme from the archaebacterium Methanothermobacter thermoautotrophicus (Mth). RNase P is a ubiquitous ribonucleoprotein enzyme primarily responsible for cleaving the 5' leader sequence during maturation of tRNAs in all three domains of life. In eubacteria, this enzyme is made up of two subunits: a large RNA ( approximately 120 kDa) responsible for mediating catalysis, and a small protein cofactor ( approximately 15 kDa) that modulates substrate recognition and is required for efficient in vivo catalysis. In contrast, multiple proteins are associated with eukaryotic and archaeal RNase P, and these proteins exhibit no recognizable homology to the conserved bacterial protein subunit. In reconstitution experiments with recombinantly expressed and purified protein subunits, we found that Mth Rpp29, a homolog of the Rpp29 protein subunit from eukaryotic RNase P, is an essential protein component of the archaeal holoenzyme. Consistent with its role in mediating protein-RNA interactions, we report that Mth Rpp29 is a member of the oligonucleotide/oligosaccharide binding fold family. In addition to a structured beta-barrel core, it possesses unstructured N- and C-terminal extensions bearing several highly conserved amino acid residues. To identify possible RNA contacts in the protein-RNA complex, we examined the interaction of the 11-kDa protein with the full 100-kDa Mth RNA subunit by using NMR chemical shift perturbation. Our findings represent a critical step toward a structural model of the RNase P holoenzyme from archaebacteria and higher organisms.

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Year:  2003        PMID: 14673079      PMCID: PMC307579          DOI: 10.1073/pnas.2535887100

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  55 in total

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Review 2.  Nucleic acid recognition by OB-fold proteins.

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3.  Preparation of uniformly labeled NMR samples in Escherichia coli under the tight control of the araBAD promoter: expression of an archaeal homolog of the RNase P Rpp29 protein.

Authors:  William P Boomershine; M L Stephen Raj; Venkat Gopalan; Mark P Foster
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4.  Expression of argU, the Escherichia coli gene coding for a rare arginine tRNA.

Authors:  P Saxena; J R Walker
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5.  High-resolution structure of RNase P protein from Thermotoga maritima.

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Journal:  Proc Natl Acad Sci U S A       Date:  2003-06-10       Impact factor: 11.205

6.  Protein component of the ribozyme ribonuclease P alters substrate recognition by directly contacting precursor tRNA.

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Authors:  N Jarrous; P S Eder; D Wesolowski; S Altman
Journal:  RNA       Date:  1999-02       Impact factor: 4.942

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  27 in total

Review 1.  Of proteins and RNA: the RNase P/MRP family.

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

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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.  Functional reconstitution and characterization of Pyrococcus furiosus RNase P.

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Review 5.  Solution NMR of large molecules and assemblies.

Authors:  Mark P Foster; Craig A McElroy; Carlos D Amero
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6.  Interactions between RNase P protein subunits in archaea.

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Journal:  Archaea       Date:  2004-10       Impact factor: 3.273

7.  Eukaryotic ribonucleases P/MRP: the crystal structure of the P3 domain.

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8.  Ribosomal protein L7Ae is a subunit of archaeal RNase P.

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Review 9.  Unexpected diversity of RNase P, an ancient tRNA processing enzyme: challenges and prospects.

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10.  Crystal structure of archaeal ribonuclease P protein Ph1771p from Pyrococcus horikoshii OT3: an archaeal homolog of eukaryotic ribonuclease P protein Rpp29.

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Journal:  RNA       Date:  2004-09       Impact factor: 4.942

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