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1.
Mol Cell ; 30(4): 472-85, 2008 May 23.
Article in English | MEDLINE | ID: mdl-18424209

ABSTRACT

Group II introns are self-splicing ribozymes believed to be the ancestors of spliceosomal introns. Many group II introns encode reverse transcriptases that promote both RNA splicing and intron mobility to new genomic sites. Here we used a circular permutation and crosslinking method to establish 16 intramolecular distance relationships within the mobile Lactococcus lactis Ll.LtrB-DeltaORF intron. Using these new constraints together with 13 established tertiary interactions and eight published crosslinks, we modeled a complete three-dimensional structure of the intron. We also used the circular permutation strategy to map RNA-protein interaction sites through fluorescence quenching and crosslinking assays. Our model provides a comprehensive structural framework for understanding the function of group II ribozymes, their natural structural variations, and the mechanisms by which the intron-encoded protein promotes RNA splicing and intron mobility. The model also suggests an arrangement of active site elements that may be conserved in the spliceosome.


Subject(s)
Bacterial Proteins , Introns/genetics , Models, Molecular , Nucleic Acid Conformation , RNA-Directed DNA Polymerase , RNA , Amino Acid Sequence , Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Binding Sites , Cross-Linking Reagents/metabolism , Molecular Sequence Data , Phylogeny , Protein Conformation , RNA/chemistry , RNA/genetics , RNA Splicing , RNA, Catalytic/chemistry , RNA, Catalytic/genetics , RNA, Catalytic/metabolism , RNA-Directed DNA Polymerase/chemistry , RNA-Directed DNA Polymerase/genetics , RNA-Directed DNA Polymerase/metabolism
2.
RNA ; 11(1): 14-28, 2005 Jan.
Article in English | MEDLINE | ID: mdl-15574519

ABSTRACT

Group II intron-encoded proteins (IEPs) have both reverse transcriptase (RT) activity, which functions in intron mobility, and maturase activity, which promotes RNA splicing by stabilizing the catalytically active RNA structure. The LtrA protein encoded by the Lactococcus lactis Ll.LtrB group II intron contains an N-terminal RT domain, with conserved sequence motifs RT1 to 7 found in the fingers and palm of retroviral RTs; domain X, associated with maturase activity; and C-terminal DNA-binding and DNA endonuclease domains. Here, partial proteolysis of LtrA with trypsin and Arg-C shows major cleavage sites in RT1, and between the RT and X domains. Group II intron and related non-LTR retroelement RTs contain an N-terminal extension and several insertions relative to retroviral RTs, some with conserved features implying functional importance. Sequence alignments, secondary-structure predictions, and hydrophobicity profiles suggest that domain X is related structurally to the thumb of retroviral RTs. Three-dimensional models of LtrA constructed by "threading" the aligned sequence on X-ray crystal structures of HIV-1 RT (1) account for the proteolytic cleavage sites; (2) suggest a template-primer binding track analogous to that of HIV-1 RT; and (3) show that conserved regions in splicing-competent LtrA variants include regions of the RT and X (thumb) domains in and around the template-primer binding track, distal regions of the fingers, and patches on the protein's back surface. These regions potentially comprise an extended RNA-binding surface that interacts with different regions of the intron for RNA splicing and reverse transcription.


Subject(s)
Bacterial Proteins/chemistry , Bacterial Proteins/genetics , RNA-Directed DNA Polymerase/chemistry , RNA-Directed DNA Polymerase/genetics , Amino Acid Sequence , Bacterial Proteins/metabolism , Base Sequence , Binding Sites , Genes, Bacterial , HIV Reverse Transcriptase/chemistry , HIV Reverse Transcriptase/genetics , HIV-1/enzymology , HIV-1/genetics , Introns , Lactococcus lactis/enzymology , Lactococcus lactis/genetics , Models, Molecular , Molecular Sequence Data , Protein Conformation , Protein Structure, Secondary , Protein Structure, Tertiary , RNA, Bacterial/genetics , RNA, Bacterial/metabolism , RNA-Directed DNA Polymerase/metabolism , Retroelements , Sequence Homology, Amino Acid , Static Electricity
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