Title of article
Evidence for Recycling of External Guide Sequences during Cleavage of Bipartite Substrates In vitro by Reconstituted Archaeal RNase P
Author/Authors
Hai-Ming Cho، نويسنده , , Sergei A. Kazakov، نويسنده , , Venkat Gopalan، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
7
From page
1121
To page
1127
Abstract
RNA-mediated RNA cleavage events are being increasingly exploited to disrupt RNA function, an important objective in post-genomic biology. RNase P, a ribonucleoprotein enzyme that catalyzes the removal of 5′-leaders from precursor tRNAs, has previously been utilized for sequence-specific cleavage of cellular RNAs. In one of these strategies, borne out in bacterial and mammalian cell culture, an external guide sequence (EGS) RNA base-paired to a target RNA makes the latter a substrate for endogenous RNase P by rendering the bipartite target RNA–EGS complex a precursor tRNA structural mimic. In this study, we first obtained evidence that four different mesophilic and thermophilic archaeal RNase P holoenzymes, reconstituted in vitro using their respective constituent RNA and protein subunits, recognize and cleave such substrate–EGS complexes. We further demonstrate that these EGSs engage in multiple rounds of substrate recognition while assisting archaeal RNase P-mediated cleavage of a target RNA in vitro. Taken together, the EGS-based approach merits consideration as a gene knockdown tool in archaea.
Keywords
targeted RNA cleavage , turnover
Journal title
Journal of Molecular Biology
Serial Year
2011
Journal title
Journal of Molecular Biology
Record number
1253262
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