The P2 element of the td intron is dispensable despite its normal role in splicing.
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference22 articles.
1. Conserved sequences and structures of group I introns: building an active site for RNA catalysis — a review
2. Molecular genetics of group I introns: RNA structures and protein factors required for splicing — a review
3. Modelling of the three-dimensional architecture of group I catalytic introns based on comparative sequence analysis
4. Structural conservation among three homologous introns of bacteriophage T4 and the group I introns of eukaryotes.
5. Deletion-tolerance and trans-splicing of the bacteriophage T4 td intron
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1. Molecular modelling of the GIR1 branching ribozyme gives new insight into evolution of structurally related ribozymes;The EMBO Journal;2008-01-24
2. Structural specificity conferred by a group I RNA peripheral element;Proceedings of the National Academy of Sciences;2005-07-11
3. Monitoring intermediate folding states of the td group I intron in vivo;The EMBO Journal;2002-10-01
4. The P5abc Peripheral Element Facilitates Preorganization of the Tetrahymena Group I Ribozyme for Catalysis;Biochemistry;2000-02-17
5. Exocyclic Amine of the Conserved G·U Pair at the Cleavage Site of the Tetrahymena Ribozyme Contributes to 5‘-Splice Site Selection and Transition State Stabilization;Biochemistry;1996-01-01
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