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Long-Read Sequencing Annotation of the Transcriptome in DNA-PK Inactivated Cells

The DNA-dependent protein kinase catalytic subunit (DNA-PKcs) with a Ku70/Ku80 heterodimer constitutes the intact DNA-PK kinase, which is an upstream component of the DNA repair machinery that signals the DNA damage, orchestrates the DNA repair, and serves to maintain genome integrity. Beyond its ro...

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Autores principales: Song, Liwei, Yu, Mengjun, Jin, Renjing, Gu, Meng, Wang, Ziyu, Hou, Dailun, Xu, Shaofa, Wang, Jinghui, Ma, Teng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9382581/
https://www.ncbi.nlm.nih.gov/pubmed/35992789
http://dx.doi.org/10.3389/fonc.2022.941638
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author Song, Liwei
Yu, Mengjun
Jin, Renjing
Gu, Meng
Wang, Ziyu
Hou, Dailun
Xu, Shaofa
Wang, Jinghui
Ma, Teng
author_facet Song, Liwei
Yu, Mengjun
Jin, Renjing
Gu, Meng
Wang, Ziyu
Hou, Dailun
Xu, Shaofa
Wang, Jinghui
Ma, Teng
author_sort Song, Liwei
collection PubMed
description The DNA-dependent protein kinase catalytic subunit (DNA-PKcs) with a Ku70/Ku80 heterodimer constitutes the intact DNA-PK kinase, which is an upstream component of the DNA repair machinery that signals the DNA damage, orchestrates the DNA repair, and serves to maintain genome integrity. Beyond its role in DNA damage repair, the DNA-PK kinase is also implicated in transcriptional regulation and RNA metabolism, with an illuminated impact on tumor progression and therapeutic responses. However, the efforts to identify DNA-PK regulated transcriptomes are limited by short-read sequencing to resolve the full complexity of the transcriptome. Therefore, we leveraged the PacBio Single Molecule, Real-Time (SMRT) Sequencing platform to study the transcriptome after DNA-PK inactivation to further underscore the importance of its role in diseases. Our analysis revealed additional novel transcriptome and complex gene structures in the DNA-PK inactivated cells, identifying 8,355 high-confidence new isoforms from 3,197 annotated genes and 523 novel genes. Among them, 380 lncRNAs were identified. We validated these findings using computational approaches and confirmatory transcript quantification with short-read sequencing. Several novel isoforms representing distinct splicing events have been validated through PCR experiments. Our analyses provide novel insights into DNA-PK function in transcriptome regulation and RNA metabolism.
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spelling pubmed-93825812022-08-18 Long-Read Sequencing Annotation of the Transcriptome in DNA-PK Inactivated Cells Song, Liwei Yu, Mengjun Jin, Renjing Gu, Meng Wang, Ziyu Hou, Dailun Xu, Shaofa Wang, Jinghui Ma, Teng Front Oncol Oncology The DNA-dependent protein kinase catalytic subunit (DNA-PKcs) with a Ku70/Ku80 heterodimer constitutes the intact DNA-PK kinase, which is an upstream component of the DNA repair machinery that signals the DNA damage, orchestrates the DNA repair, and serves to maintain genome integrity. Beyond its role in DNA damage repair, the DNA-PK kinase is also implicated in transcriptional regulation and RNA metabolism, with an illuminated impact on tumor progression and therapeutic responses. However, the efforts to identify DNA-PK regulated transcriptomes are limited by short-read sequencing to resolve the full complexity of the transcriptome. Therefore, we leveraged the PacBio Single Molecule, Real-Time (SMRT) Sequencing platform to study the transcriptome after DNA-PK inactivation to further underscore the importance of its role in diseases. Our analysis revealed additional novel transcriptome and complex gene structures in the DNA-PK inactivated cells, identifying 8,355 high-confidence new isoforms from 3,197 annotated genes and 523 novel genes. Among them, 380 lncRNAs were identified. We validated these findings using computational approaches and confirmatory transcript quantification with short-read sequencing. Several novel isoforms representing distinct splicing events have been validated through PCR experiments. Our analyses provide novel insights into DNA-PK function in transcriptome regulation and RNA metabolism. Frontiers Media S.A. 2022-08-02 /pmc/articles/PMC9382581/ /pubmed/35992789 http://dx.doi.org/10.3389/fonc.2022.941638 Text en Copyright © 2022 Song, Yu, Jin, Gu, Wang, Hou, Xu, Wang and Ma https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Song, Liwei
Yu, Mengjun
Jin, Renjing
Gu, Meng
Wang, Ziyu
Hou, Dailun
Xu, Shaofa
Wang, Jinghui
Ma, Teng
Long-Read Sequencing Annotation of the Transcriptome in DNA-PK Inactivated Cells
title Long-Read Sequencing Annotation of the Transcriptome in DNA-PK Inactivated Cells
title_full Long-Read Sequencing Annotation of the Transcriptome in DNA-PK Inactivated Cells
title_fullStr Long-Read Sequencing Annotation of the Transcriptome in DNA-PK Inactivated Cells
title_full_unstemmed Long-Read Sequencing Annotation of the Transcriptome in DNA-PK Inactivated Cells
title_short Long-Read Sequencing Annotation of the Transcriptome in DNA-PK Inactivated Cells
title_sort long-read sequencing annotation of the transcriptome in dna-pk inactivated cells
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9382581/
https://www.ncbi.nlm.nih.gov/pubmed/35992789
http://dx.doi.org/10.3389/fonc.2022.941638
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