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Series GSE185421 Query DataSets for GSE185421
Status Public on May 23, 2023
Title Transcriptional pausing induced by ionizing radiation enables the acquisition of radioresistance in nasopharyngeal carcinoma [RNA-seq]
Organism Homo sapiens
Experiment type Expression profiling by high throughput sequencing
Summary Lesions on the DNA template can impact transcription via distinct regulatory pathways. Ionizing radiation (IR) as the mainstay modality for many malignancies elicits most of the cytotoxicity by inducing a variety of DNA damages in the genome. How the IR treatment alters transcription cycle and whether it contributes to the development of radioresistance remain poorly understood. Here, we report an increase in the paused RNA polymerase II (RNAPII), as indicated by the phosphorylation at serine 5 residue of its C-terminal domain, in recurrent nasopharyngeal carcinoma (NPC) patient samples after IR treatment and cultured NPC cells developing IR resistance. Reducing the pool of paused RNAPII by either inhibiting TFIIH-associated CDK7 or stimulating the transcription elongation factor P-TEFb, a CDK9-CycT1 heterodimer, attenuates IR resistance of NPC cells. Interestingly, the poly(ADP-ribosyl)ation of CycT1, which disrupts its phase separation, is elevated in the IR-resistant cells. Mutation of major poly(ADP-ribosyl)ation sites of CycT1 decreases RNAPII pausing and restores IR sensitivity. Genome-wide chromatin immunoprecipitation followed by sequencing analyses reveal that several genes involved in radiation response and cell cycle control are subject to the regulation imposed by the paused RNAPII. Particularly, we identify the NIMA-related kinase NEK7 under such regulation as a new radioresistance factor, whose downregulation results in the increased chromosome instability, enabling the development of IR resistance. Overall, our results highlight a novel link between the alteration in transcription cycle and the acquisition of IR resistance, opening up new opportunities to increase the efficacy of radiotherapy and thwart radioresistance in NPC.
 
Overall design mRNA profiles of radiosensitive cell line CNE2 and radioresistant cell line CNE2-IR.
Web link https://pubmed.ncbi.nlm.nih.gov/37407287/
 
Contributor(s) Liu H, Yuan K
Citation(s) 37407287
Submission date Oct 06, 2021
Last update date Nov 19, 2023
Contact name Honglu Liu
E-mail(s) honglu94@sina.com
Organization name Central South University
Department Xiangya hospital
Lab Kai Yuan Lab
Street address Kaifu district, Xiangya road
City Changsha
State/province Hunan
ZIP/Postal code 410000
Country China
 
Platforms (1)
GPL24676 Illumina NovaSeq 6000 (Homo sapiens)
Samples (4)
GSM5614816 CNE2_1_RNA-seq
GSM5614817 CNE2_2_RNA-seq
GSM5614818 CNE2-IR_1_RNA-seq
This SubSeries is part of SuperSeries:
GSE185423 Transcriptional pausing induced by ionizing radiation enables the acquisition of radioresistance in nasopharyngeal carcinoma
Relations
BioProject PRJNA769214
SRA SRP340396

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SOFT formatted family file(s) SOFTHelp
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Supplementary file Size Download File type/resource
GSE185421_CNE2-IR_RNA-seq.bw 163.5 Mb (ftp)(http) BW
GSE185421_CNE2_RNA-seq.bw 152.4 Mb (ftp)(http) BW
GSE185421_table.CNE2_CNE2-IR_genes_CPM.xlsx 1.5 Mb (ftp)(http) XLSX
SRA Run SelectorHelp
Raw data are available in SRA
Processed data are available on Series record

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