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R-loops: formation, function, and relevance to cell stress.

Publication ,  Journal Article
Allison, DF; Wang, GG
Published in: Cell Stress
January 21, 2019

Exposure of genomic, single-stranded DNA (ssDNA) during transcription and replication creates opportunities for the formation of inappropriate secondary structures. Cells manage this exposure by using topoisomerases and helicases to reduce the inherent topological stress that arises from unwinding the double helix and by coating ssDNA with protective protein complexes. Interestingly, specific DNA-RNA hybrids, known as R-loops, form during transcription and exist in homeostasis throughout the genomes of prokaryotes and eukaryotes. These hybrids nucleate from guanine rich clusters in the template strand and extend across GC rich spans of transcribed genes. In vivo regulatory functions have evolved from R-loops, including regulation of gene expression and telomere lengthening. However, they also exist as a form of stress, particularly when replication forks collide with the transcription machinery. New methodologies and models are being developed to delineate the biology of R-loops, including those related to cell stress-based diseases like cancer. As accumulation of R-loops is associated with disease, targeting molecular pathways that regulate their formation or removal could provide new avenues for therapeutic intervention. This review covers recent understandings of the molecular basis for R-loop formation, removal, and biological outcomes in the context of cellular stress.

Duke Scholars

Published In

Cell Stress

DOI

EISSN

2523-0204

Publication Date

January 21, 2019

Volume

3

Issue

2

Start / End Page

38 / 46

Location

Austria

Related Subject Headings

  • 3101 Biochemistry and cell biology
 

Citation

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Allison, D. F., & Wang, G. G. (2019). R-loops: formation, function, and relevance to cell stress. Cell Stress, 3(2), 38–46. https://doi.org/10.15698/cst2019.02.175
Allison, David F., and Gang Greg Wang. “R-loops: formation, function, and relevance to cell stress.Cell Stress 3, no. 2 (January 21, 2019): 38–46. https://doi.org/10.15698/cst2019.02.175.
Allison DF, Wang GG. R-loops: formation, function, and relevance to cell stress. Cell Stress. 2019 Jan 21;3(2):38–46.
Allison, David F., and Gang Greg Wang. “R-loops: formation, function, and relevance to cell stress.Cell Stress, vol. 3, no. 2, Jan. 2019, pp. 38–46. Pubmed, doi:10.15698/cst2019.02.175.
Allison DF, Wang GG. R-loops: formation, function, and relevance to cell stress. Cell Stress. 2019 Jan 21;3(2):38–46.

Published In

Cell Stress

DOI

EISSN

2523-0204

Publication Date

January 21, 2019

Volume

3

Issue

2

Start / End Page

38 / 46

Location

Austria

Related Subject Headings

  • 3101 Biochemistry and cell biology