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Altered tRNA processing is linked to a distinct and unusual La protein in Tetrahymena thermophila.


ABSTRACT: Nascent pre-tRNAs are transcribed by RNA polymerase III and immediately bound by La proteins on the UUU-3'OH sequence, using a tandem arrangement of the La motif and an adjacent RNA recognition motif-1 (RRM1), resulting in protection from 3'-exonucleases and promotion of pre-tRNA folding. The Tetrahymena thermophila protein Mlp1 has been previously classified as a genuine La protein, despite the predicted absence of the RRM1. We find that Mlp1 functions as a La protein through binding of pre-tRNAs, and affects pre-tRNA processing in Tetrahymena thermophila and when expressed in fission yeast. However, unlike in other examined eukaryotes, depletion of Mlp1 results in 3'-trailer stabilization. The 3'-trailers in Tetrahymena thermophila are uniquely short relative to other examined eukaryotes, and 5'-leaders have evolved to disfavour pre-tRNA leader/trailer pairing. Our data indicate that this variant Mlp1 architecture is linked to an altered, novel mechanism of tRNA processing in Tetrahymena thermophila.

SUBMITTER: Kerkhofs K 

PROVIDER: S-EPMC9705548 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Altered tRNA processing is linked to a distinct and unusual La protein in Tetrahymena thermophila.

Kerkhofs Kyra K   Garg Jyoti J   Fafard-Couture Étienne É   Abou Elela Sherif S   Scott Michelle S MS   Pearlman Ronald E RE   Bayfield Mark A MA  

Nature communications 20221128 1


Nascent pre-tRNAs are transcribed by RNA polymerase III and immediately bound by La proteins on the UUU-3'OH sequence, using a tandem arrangement of the La motif and an adjacent RNA recognition motif-1 (RRM1), resulting in protection from 3'-exonucleases and promotion of pre-tRNA folding. The Tetrahymena thermophila protein Mlp1 has been previously classified as a genuine La protein, despite the predicted absence of the RRM1. We find that Mlp1 functions as a La protein through binding of pre-tRN  ...[more]

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