Unknown

Dataset Information

0

The Npl3 hnRNP prevents R-loop-mediated transcription-replication conflicts and genome instability.


ABSTRACT: Transcription is a major obstacle for replication fork (RF) progression and a cause of genome instability. Part of this instability is mediated by cotranscriptional R loops, which are believed to increase by suboptimal assembly of the nascent messenger ribonucleoprotein particle (mRNP). However, no clear evidence exists that heterogeneous nuclear RNPs (hnRNPs), the basic mRNP components, prevent R-loop stabilization. Here we show that yeast Npl3, the most abundant RNA-binding hnRNP, prevents R-loop-mediated genome instability. npl3? cells show transcription-dependent and R-loop-dependent hyperrecombination and genome-wide replication obstacles as determined by accumulation of the Rrm3 helicase. Such obstacles preferentially occur at long and highly expressed genes, to which Npl3 is preferentially bound in wild-type cells, and are reduced by RNase H1 overexpression. The resulting replication stress confers hypersensitivity to double-strand break-inducing agents. Therefore, our work demonstrates that mRNP factors are critical for genome integrity and opens the option of using them as therapeutic targets in anti-cancer treatment.

SUBMITTER: Santos-Pereira JM 

PROVIDER: S-EPMC3841734 | biostudies-literature | 2013 Nov

REPOSITORIES: biostudies-literature

altmetric image

Publications

The Npl3 hnRNP prevents R-loop-mediated transcription-replication conflicts and genome instability.

Santos-Pereira José M JM   Herrero Ana B AB   García-Rubio María L ML   Marín Antonio A   Moreno Sergio S   Aguilera Andrés A  

Genes & development 20131101 22


Transcription is a major obstacle for replication fork (RF) progression and a cause of genome instability. Part of this instability is mediated by cotranscriptional R loops, which are believed to increase by suboptimal assembly of the nascent messenger ribonucleoprotein particle (mRNP). However, no clear evidence exists that heterogeneous nuclear RNPs (hnRNPs), the basic mRNP components, prevent R-loop stabilization. Here we show that yeast Npl3, the most abundant RNA-binding hnRNP, prevents R-l  ...[more]

Similar Datasets

2024-08-25 | PXD054611 | Pride
| S-EPMC7507985 | biostudies-literature
| S-EPMC4015491 | biostudies-literature
| S-EPMC2919171 | biostudies-literature
2014-03-17 | E-GEOD-51653 | biostudies-arrayexpress
2024-06-19 | GSE236553 | GEO
| S-EPMC11330984 | biostudies-literature
2022-11-02 | PXD034331 | Pride
2024-06-19 | GSE236547 | GEO
2014-03-17 | GSE51653 | GEO