关键词: RNA polymerase III RPC11 RPC2 RPC37 RPC53 Transcription termination

Mesh : Animals Codon, Nonsense / genetics Humans Mutagenesis, Site-Directed / methods RNA 3' End Processing RNA Polymerase III / metabolism RNA Precursors / genetics metabolism RNA, Transfer / biosynthesis Schizosaccharomyces / genetics metabolism Suppression, Genetic Transcription Termination, Genetic

来  源:   DOI:10.1016/j.gene.2014.11.034   PDF(Sci-hub)

Abstract:
Suppressor tRNAs bear anticodon mutations that allow them to decode premature stop codons in metabolic marker gene mRNAs, that can be used as in vivo reporters of functional tRNA biogenesis. Here, we review key components of a suppressor tRNA system specific to Schizosaccharomyces pombe and its adaptations for use to study specific steps in tRNA biogenesis. Eukaryotic tRNA biogenesis begins with transcription initiation by RNA polymerase (pol) III. The nascent pre-tRNAs must undergo folding, 5\' and 3\' processing to remove the leader and trailer, nuclear export, and splicing if applicable, while multiple complex chemical modifications occur throughout the process. We review evidence that precursor-tRNA processing begins with transcription termination at the oligo(T) terminator element, which forms a 3\' oligo(U) tract on the nascent RNA, a sequence-specific binding site for the RNA chaperone, La protein. The processing pathway bifurcates depending on a poorly understood property of pol III termination that determines the 3\' oligo(U) length and therefore the affinity for La. We thus review the pol III termination process and the factors involved including advances using gene-specific random mutagenesis by dNTP analogs that identify key residues important for transcription termination in certain pol III subunits. The review ends with a \'technical approaches\' section that includes a parts lists of suppressor-tRNA alleles, strains and plasmids, and graphic examples of its diverse uses.
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