Deletions of singular U1 snRNA gene significantly interfere with transcription and 3'-end mRNA formation.

Authors:
Wang M; Liang AM; Zhou ZZ; Pang TL; Fan YJ and 1 more

Journal:
PLoS Genet

Publication Year: 2023

DOI:
10.1371/journal.pgen.1011021

PMCID:
PMC10645366

PMID:
37917726

Journal Information

Full Title: PLoS Genet

Abbreviation: PLoS Genet

Country: Unknown

Publisher: Unknown

Language: N/A

Publication Details

Subject Category: Genetics

Available in Europe PMC: Yes

Available in PMC: Yes

PDF Available: No

Transparency Score
4/6
66.7% Transparent
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Evidence found in paper:

"plos publication stage vor-update-to-uncorrected-proof publication update 2023-11-14 data availability next-generation sequencing has been submitted to the gene expression omnibus (accession number gse225604).; data availability next-generation sequencing has been submitted to the gene expression omnibus (accession number gse225604). file s1 table (docx) click here for additional data file s2 table (xlsx data availability next-generation sequencing has been submitted to the gene expression omnibus (accession number gse225604"

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Evidence found in paper:

"The authors have declared that no competing interests exist."

Evidence found in paper:

"YZX received grants 2021YFA1100500 and 2021YFC2700700 from National Key Research and Development Program of China (https://chinainnovationfunding.eu/national-key-rd-programmes). YZX received grants 31971225 and 32261133522, and YJF received grant 31570821 from National Natural Science Foundation of China (https://www.nsfc.gov.cn/english/site_1/index.html). YZX received grants 2020CFA017 from Natural Science Foundation of Hubei Province, China (https://kjt.hubei.gov.cn). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript."

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Last Updated: Aug 05, 2025