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tRNA m(1)G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10

The methyltransferase Trm10 modifies a subset of tRNAs on the base N1 position of the 9th nucleotide in the tRNA core. Trm10 is conserved throughout Eukarya and Archaea, and mutations in the human gene (TRMT10A) have been linked to neurological disorders such as microcephaly and intellectual disabil...

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Autores principales: Strassler, Sarah E., Bowles, Isobel E., Krishnamohan, Aiswarya, Kim, Hyejeong, Edgington, Catherine B., Kuiper, Emily G., Hancock, Clio J., Comstock, Lindsay R., Jackman, Jane E., Conn, Graeme L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9915607/
https://www.ncbi.nlm.nih.gov/pubmed/36778341
http://dx.doi.org/10.1101/2023.02.01.526536
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author Strassler, Sarah E.
Bowles, Isobel E.
Krishnamohan, Aiswarya
Kim, Hyejeong
Edgington, Catherine B.
Kuiper, Emily G.
Hancock, Clio J.
Comstock, Lindsay R.
Jackman, Jane E.
Conn, Graeme L.
author_facet Strassler, Sarah E.
Bowles, Isobel E.
Krishnamohan, Aiswarya
Kim, Hyejeong
Edgington, Catherine B.
Kuiper, Emily G.
Hancock, Clio J.
Comstock, Lindsay R.
Jackman, Jane E.
Conn, Graeme L.
author_sort Strassler, Sarah E.
collection PubMed
description The methyltransferase Trm10 modifies a subset of tRNAs on the base N1 position of the 9th nucleotide in the tRNA core. Trm10 is conserved throughout Eukarya and Archaea, and mutations in the human gene (TRMT10A) have been linked to neurological disorders such as microcephaly and intellectual disability, as well as defects in glucose metabolism. Of the 26 tRNAs in yeast with guanosine at position 9, only 14 are substrates for Trm10. However, no common sequence or other posttranscriptional modifications have been identified among these substrates, suggesting the presence of some other tRNA feature(s) which allow Trm10 to distinguish substrate from nonsubstrate tRNAs. Here, we show that substrate recognition by Saccharomyces cerevisiae Trm10 is dependent on both intrinsic tRNA flexibility and the ability of the enzyme to induce specific tRNA conformational changes upon binding. Using the sensitive RNA structure-probing method SHAPE, conformational changes upon binding to Trm10 in tRNA substrates, but not nonsubstrates, were identified and mapped onto a model of Trm10-bound tRNA. These changes may play an important role in substrate recognition by allowing Trm10 to gain access to the target nucleotide. Our results highlight a novel mechanism of substrate recognition by a conserved tRNA modifying enzyme. Further, these studies reveal a strategy for substrate recognition that may be broadly employed by tRNA-modifying enzymes which must distinguish between structurally similar tRNA species.
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spelling pubmed-99156072023-02-11 tRNA m(1)G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10 Strassler, Sarah E. Bowles, Isobel E. Krishnamohan, Aiswarya Kim, Hyejeong Edgington, Catherine B. Kuiper, Emily G. Hancock, Clio J. Comstock, Lindsay R. Jackman, Jane E. Conn, Graeme L. bioRxiv Article The methyltransferase Trm10 modifies a subset of tRNAs on the base N1 position of the 9th nucleotide in the tRNA core. Trm10 is conserved throughout Eukarya and Archaea, and mutations in the human gene (TRMT10A) have been linked to neurological disorders such as microcephaly and intellectual disability, as well as defects in glucose metabolism. Of the 26 tRNAs in yeast with guanosine at position 9, only 14 are substrates for Trm10. However, no common sequence or other posttranscriptional modifications have been identified among these substrates, suggesting the presence of some other tRNA feature(s) which allow Trm10 to distinguish substrate from nonsubstrate tRNAs. Here, we show that substrate recognition by Saccharomyces cerevisiae Trm10 is dependent on both intrinsic tRNA flexibility and the ability of the enzyme to induce specific tRNA conformational changes upon binding. Using the sensitive RNA structure-probing method SHAPE, conformational changes upon binding to Trm10 in tRNA substrates, but not nonsubstrates, were identified and mapped onto a model of Trm10-bound tRNA. These changes may play an important role in substrate recognition by allowing Trm10 to gain access to the target nucleotide. Our results highlight a novel mechanism of substrate recognition by a conserved tRNA modifying enzyme. Further, these studies reveal a strategy for substrate recognition that may be broadly employed by tRNA-modifying enzymes which must distinguish between structurally similar tRNA species. Cold Spring Harbor Laboratory 2023-10-19 /pmc/articles/PMC9915607/ /pubmed/36778341 http://dx.doi.org/10.1101/2023.02.01.526536 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Strassler, Sarah E.
Bowles, Isobel E.
Krishnamohan, Aiswarya
Kim, Hyejeong
Edgington, Catherine B.
Kuiper, Emily G.
Hancock, Clio J.
Comstock, Lindsay R.
Jackman, Jane E.
Conn, Graeme L.
tRNA m(1)G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10
title tRNA m(1)G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10
title_full tRNA m(1)G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10
title_fullStr tRNA m(1)G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10
title_full_unstemmed tRNA m(1)G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10
title_short tRNA m(1)G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10
title_sort trna m(1)g9 modification depends on substrate-specific rna conformational changes induced by the methyltransferase trm10
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9915607/
https://www.ncbi.nlm.nih.gov/pubmed/36778341
http://dx.doi.org/10.1101/2023.02.01.526536
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