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Article in English | MEDLINE | ID: mdl-34402751

ABSTRACT

While current group I ribozymes use several distinct strategies to function under conditions of low Mg2+ concentration (≤ 3 mM), a deletion mutant of the Tetrahymena ribozyme (ΔP5 ribozyme) is virtually inactive with 3 mM Mg2+ due to removal of the large peripheral module, P5abc, supporting the active conformation of the core module. We investigated the molecular crowding effects of synthetic polyethylene glycols (PEGs) on the activity of the ΔP5 ribozyme. Among PEG molecules with different chain lengths, PEG600 improved the activity of the ΔP5 ribozyme most effectively in the presence of 3 mM Mg2+.


Subject(s)
Polyethylene Glycols/pharmacology , RNA, Catalytic/drug effects , RNA, Catalytic/metabolism , Tetrahymena/metabolism , Cations, Divalent , Kinetics , Magnesium/metabolism , Organisms, Genetically Modified , RNA, Catalytic/genetics , Tetrahymena/genetics
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