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Novel and variant ribozymes obtained through in vitro selection.
The cleavage step of ribonuclease P catalysis is determined by ribozyme-substrate interactions both distal and proximal to the cleavage site.
Modular construction for function of a ribonucleoprotein enzyme: the catalytic domain of Bacillus subtilis RNase P complexed with B. subtilis RNase P protein.
Mg2+-dependent folding of a large ribozyme without kinetic traps.
Intermediates and kinetic traps in the folding of a large ribozyme revealed by circular dichroism and UV absorbance spectroscopies and catalytic activity.
Design and isolation of ribozyme-substrate pairs using RNase P-based ribozymes containing altered substrate binding sites.
The thermodynamic origin of the stability of a thermophilic ribozyme.
Mechanistic insights on the folding of a large ribozyme during transcription.
Efficient chemical synthesis of AppDNA by adenylation of immobilized DNA-5'-monophosphate.
The AlkB domain of mammalian ABH8 catalyzes hydroxylation of 5-methoxycarbonylmethyluridine at the wobble position of tRNA.
The 3' substrate determinants for the catalytic efficiency of the Bacillus subtilis RNase P holoenzyme suggest autolytic processing of the RNase P RNA in vivo.
FOLDING AND CATALYSIS OF THE RIBOZYME FROM RNASE P