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Extrachromosomal Telomeres Derived from Excessive Strand Displacements

Alternative Lengthening of Telomeres (ALT) is a telomere maintenance mechanism mediated by break-induced replication (BIR), evident in approximately 15% of human cancers. A characteristic feature of ALT cancers is the presence of C-circles, circular single-stranded telomeric DNAs composed of C-rich...

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Autores principales: Lee, Junyeop, Lee, Jina, Sohn, Eric J., Taglialatela, Angelo, O’Sullivan, Roderick J., Ciccia, Alberto, Min, Jaewon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10418088/
https://www.ncbi.nlm.nih.gov/pubmed/37577643
http://dx.doi.org/10.1101/2023.07.31.551186
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author Lee, Junyeop
Lee, Jina
Sohn, Eric J.
Taglialatela, Angelo
O’Sullivan, Roderick J.
Ciccia, Alberto
Min, Jaewon
author_facet Lee, Junyeop
Lee, Jina
Sohn, Eric J.
Taglialatela, Angelo
O’Sullivan, Roderick J.
Ciccia, Alberto
Min, Jaewon
author_sort Lee, Junyeop
collection PubMed
description Alternative Lengthening of Telomeres (ALT) is a telomere maintenance mechanism mediated by break-induced replication (BIR), evident in approximately 15% of human cancers. A characteristic feature of ALT cancers is the presence of C-circles, circular single-stranded telomeric DNAs composed of C-rich sequences. Despite the fact that extrachromosomal C-rich single-stranded DNAs (ssDNAs), unique to ALT cells, are considered potential precursors of C-circles, their generation process remains undefined. Here, we introduce a highly sensitive method to detect single stranded telomeric DNA, called 4SET (Strand-Specific Southern-blot for Single-stranded Extrachromosomal Telomeres) assay. Utilizing 4SET, we are able to capture C-rich single stranded DNAs that are near 200 to 1500 nucleotides in size. Both linear C-rich ssDNAs and C-circles are abundant in the fractions of cytoplasm and nucleoplasm, which supports the idea that linear C-rich ssDNA accumulation may indeed precede C-circle formation. We also found that C-rich ssDNAs originate during Okazaki fragment processing during lagging strand DNA synthesis. The generation of C-rich ssDNA requires CST-PP (CTC1/STN1/TEN1-PRIMASE-Polymerase alpha) complex-mediated priming of the C-strand DNA synthesis and subsequent excessive strand displacement of the C-rich strand mediated by the DNA Polymerase delta and the BLM helicase. Our work proposes a new model for the generation of C-rich ssDNAs and C-circles during ALT-mediated telomere elongation.
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spelling pubmed-104180882023-08-12 Extrachromosomal Telomeres Derived from Excessive Strand Displacements Lee, Junyeop Lee, Jina Sohn, Eric J. Taglialatela, Angelo O’Sullivan, Roderick J. Ciccia, Alberto Min, Jaewon bioRxiv Article Alternative Lengthening of Telomeres (ALT) is a telomere maintenance mechanism mediated by break-induced replication (BIR), evident in approximately 15% of human cancers. A characteristic feature of ALT cancers is the presence of C-circles, circular single-stranded telomeric DNAs composed of C-rich sequences. Despite the fact that extrachromosomal C-rich single-stranded DNAs (ssDNAs), unique to ALT cells, are considered potential precursors of C-circles, their generation process remains undefined. Here, we introduce a highly sensitive method to detect single stranded telomeric DNA, called 4SET (Strand-Specific Southern-blot for Single-stranded Extrachromosomal Telomeres) assay. Utilizing 4SET, we are able to capture C-rich single stranded DNAs that are near 200 to 1500 nucleotides in size. Both linear C-rich ssDNAs and C-circles are abundant in the fractions of cytoplasm and nucleoplasm, which supports the idea that linear C-rich ssDNA accumulation may indeed precede C-circle formation. We also found that C-rich ssDNAs originate during Okazaki fragment processing during lagging strand DNA synthesis. The generation of C-rich ssDNA requires CST-PP (CTC1/STN1/TEN1-PRIMASE-Polymerase alpha) complex-mediated priming of the C-strand DNA synthesis and subsequent excessive strand displacement of the C-rich strand mediated by the DNA Polymerase delta and the BLM helicase. Our work proposes a new model for the generation of C-rich ssDNAs and C-circles during ALT-mediated telomere elongation. Cold Spring Harbor Laboratory 2023-10-23 /pmc/articles/PMC10418088/ /pubmed/37577643 http://dx.doi.org/10.1101/2023.07.31.551186 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Lee, Junyeop
Lee, Jina
Sohn, Eric J.
Taglialatela, Angelo
O’Sullivan, Roderick J.
Ciccia, Alberto
Min, Jaewon
Extrachromosomal Telomeres Derived from Excessive Strand Displacements
title Extrachromosomal Telomeres Derived from Excessive Strand Displacements
title_full Extrachromosomal Telomeres Derived from Excessive Strand Displacements
title_fullStr Extrachromosomal Telomeres Derived from Excessive Strand Displacements
title_full_unstemmed Extrachromosomal Telomeres Derived from Excessive Strand Displacements
title_short Extrachromosomal Telomeres Derived from Excessive Strand Displacements
title_sort extrachromosomal telomeres derived from excessive strand displacements
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10418088/
https://www.ncbi.nlm.nih.gov/pubmed/37577643
http://dx.doi.org/10.1101/2023.07.31.551186
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