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RNA Editing TUTase 1: structural foundation of substrate recognition, complex interactions and drug targeting

Terminal uridyltransferases (TUTases) execute 3′ RNA uridylation across protists, fungi, metazoan and plant species. Uridylation plays a particularly prominent role in RNA processing pathways of kinetoplastid protists typified by the causative agent of African sleeping sickness, Trypanosoma brucei....

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Autores principales: Rajappa-Titu, Lional, Suematsu, Takuma, Munoz-Tello, Paola, Long, Marius, Demir, Özlem, Cheng, Kevin J., Stagno, Jason R., Luecke, Hartmut, Amaro, Rommie E., Aphasizheva, Inna, Aphasizhev, Ruslan, Thore, Stéphane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5159558/
https://www.ncbi.nlm.nih.gov/pubmed/27744351
http://dx.doi.org/10.1093/nar/gkw917
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author Rajappa-Titu, Lional
Suematsu, Takuma
Munoz-Tello, Paola
Long, Marius
Demir, Özlem
Cheng, Kevin J.
Stagno, Jason R.
Luecke, Hartmut
Amaro, Rommie E.
Aphasizheva, Inna
Aphasizhev, Ruslan
Thore, Stéphane
author_facet Rajappa-Titu, Lional
Suematsu, Takuma
Munoz-Tello, Paola
Long, Marius
Demir, Özlem
Cheng, Kevin J.
Stagno, Jason R.
Luecke, Hartmut
Amaro, Rommie E.
Aphasizheva, Inna
Aphasizhev, Ruslan
Thore, Stéphane
author_sort Rajappa-Titu, Lional
collection PubMed
description Terminal uridyltransferases (TUTases) execute 3′ RNA uridylation across protists, fungi, metazoan and plant species. Uridylation plays a particularly prominent role in RNA processing pathways of kinetoplastid protists typified by the causative agent of African sleeping sickness, Trypanosoma brucei. In mitochondria of this pathogen, most mRNAs are internally modified by U-insertion/deletion editing while guide RNAs and rRNAs are U-tailed. The founding member of TUTase family, RNA editing TUTase 1 (RET1), functions as a subunit of the 3′ processome in uridylation of gRNA precursors and mature guide RNAs. Along with KPAP1 poly(A) polymerase, RET1 also participates in mRNA translational activation. RET1 is divergent from human TUTases and is essential for parasite viability in the mammalian host and the insect vector. Given its robust in vitro activity, RET1 represents an attractive target for trypanocide development. Here, we report high-resolution crystal structures of the RET1 catalytic core alone and in complex with UTP analogs. These structures reveal a tight docking of the conserved nucleotidyl transferase bi-domain module with a RET1-specific C2H2 zinc finger and RNA recognition (RRM) domains. Furthermore, we define RET1 region required for incorporation into the 3′ processome, determinants for RNA binding, subunit oligomerization and processive UTP incorporation, and predict druggable pockets.
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spelling pubmed-51595582016-12-16 RNA Editing TUTase 1: structural foundation of substrate recognition, complex interactions and drug targeting Rajappa-Titu, Lional Suematsu, Takuma Munoz-Tello, Paola Long, Marius Demir, Özlem Cheng, Kevin J. Stagno, Jason R. Luecke, Hartmut Amaro, Rommie E. Aphasizheva, Inna Aphasizhev, Ruslan Thore, Stéphane Nucleic Acids Res Nucleic Acid Enzymes Terminal uridyltransferases (TUTases) execute 3′ RNA uridylation across protists, fungi, metazoan and plant species. Uridylation plays a particularly prominent role in RNA processing pathways of kinetoplastid protists typified by the causative agent of African sleeping sickness, Trypanosoma brucei. In mitochondria of this pathogen, most mRNAs are internally modified by U-insertion/deletion editing while guide RNAs and rRNAs are U-tailed. The founding member of TUTase family, RNA editing TUTase 1 (RET1), functions as a subunit of the 3′ processome in uridylation of gRNA precursors and mature guide RNAs. Along with KPAP1 poly(A) polymerase, RET1 also participates in mRNA translational activation. RET1 is divergent from human TUTases and is essential for parasite viability in the mammalian host and the insect vector. Given its robust in vitro activity, RET1 represents an attractive target for trypanocide development. Here, we report high-resolution crystal structures of the RET1 catalytic core alone and in complex with UTP analogs. These structures reveal a tight docking of the conserved nucleotidyl transferase bi-domain module with a RET1-specific C2H2 zinc finger and RNA recognition (RRM) domains. Furthermore, we define RET1 region required for incorporation into the 3′ processome, determinants for RNA binding, subunit oligomerization and processive UTP incorporation, and predict druggable pockets. Oxford University Press 2016-12-15 2016-10-15 /pmc/articles/PMC5159558/ /pubmed/27744351 http://dx.doi.org/10.1093/nar/gkw917 Text en © The Author(s) 2016. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Nucleic Acid Enzymes
Rajappa-Titu, Lional
Suematsu, Takuma
Munoz-Tello, Paola
Long, Marius
Demir, Özlem
Cheng, Kevin J.
Stagno, Jason R.
Luecke, Hartmut
Amaro, Rommie E.
Aphasizheva, Inna
Aphasizhev, Ruslan
Thore, Stéphane
RNA Editing TUTase 1: structural foundation of substrate recognition, complex interactions and drug targeting
title RNA Editing TUTase 1: structural foundation of substrate recognition, complex interactions and drug targeting
title_full RNA Editing TUTase 1: structural foundation of substrate recognition, complex interactions and drug targeting
title_fullStr RNA Editing TUTase 1: structural foundation of substrate recognition, complex interactions and drug targeting
title_full_unstemmed RNA Editing TUTase 1: structural foundation of substrate recognition, complex interactions and drug targeting
title_short RNA Editing TUTase 1: structural foundation of substrate recognition, complex interactions and drug targeting
title_sort rna editing tutase 1: structural foundation of substrate recognition, complex interactions and drug targeting
topic Nucleic Acid Enzymes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5159558/
https://www.ncbi.nlm.nih.gov/pubmed/27744351
http://dx.doi.org/10.1093/nar/gkw917
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