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Long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution

MOTIVATION: While promoter methylation is associated with reinforcing fundamental tissue identities, the methylation status of distant enhancers was shown by genome-wide association studies to be a powerful determinant of cell-state and cancer. With recent availability of long reads that report on t...

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Autores principales: Margalit, Sapir, Abramson, Yotam, Sharim, Hila, Manber, Zohar, Bhattacharya, Surajit, Chen, Yi-Wen, Vilain, Eric, Barseghyan, Hayk, Elkon, Ran, Sharan, Roded, Ebenstein, Yuval
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8275347/
https://www.ncbi.nlm.nih.gov/pubmed/34252972
http://dx.doi.org/10.1093/bioinformatics/btab306
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author Margalit, Sapir
Abramson, Yotam
Sharim, Hila
Manber, Zohar
Bhattacharya, Surajit
Chen, Yi-Wen
Vilain, Eric
Barseghyan, Hayk
Elkon, Ran
Sharan, Roded
Ebenstein, Yuval
author_facet Margalit, Sapir
Abramson, Yotam
Sharim, Hila
Manber, Zohar
Bhattacharya, Surajit
Chen, Yi-Wen
Vilain, Eric
Barseghyan, Hayk
Elkon, Ran
Sharan, Roded
Ebenstein, Yuval
author_sort Margalit, Sapir
collection PubMed
description MOTIVATION: While promoter methylation is associated with reinforcing fundamental tissue identities, the methylation status of distant enhancers was shown by genome-wide association studies to be a powerful determinant of cell-state and cancer. With recent availability of long reads that report on the methylation status of enhancer–promoter pairs on the same molecule, we hypothesized that probing these pairs on the single-molecule level may serve the basis for detection of rare cancerous transformations in a given cell population. We explore various analysis approaches for deconvolving cell-type mixtures based on their genome-wide enhancer–promoter methylation profiles. RESULTS: To evaluate our hypothesis we examine long-read optical methylome data for the GM12878 cell line and myoblast cell lines from two donors. We identified over 100 000 enhancer–promoter pairs that co-exist on at least 30 individual DNA molecules. We developed a detailed methodology for mixture deconvolution and applied it to estimate the proportional cell compositions in synthetic mixtures. Analysis of promoter methylation, as well as enhancer–promoter pairwise methylation, resulted in very accurate estimates. In addition, we show that pairwise methylation analysis can be generalized from deconvolving different cell types to subtle scenarios where one wishes to resolve different cell populations of the same cell-type. AVAILABILITY AND IMPLEMENTATION: The code used in this work to analyze single-molecule Bionano Genomics optical maps is available via the GitHub repository https://github.com/ebensteinLab/Single_molecule_methylation_in_EP.
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spelling pubmed-82753472021-07-13 Long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution Margalit, Sapir Abramson, Yotam Sharim, Hila Manber, Zohar Bhattacharya, Surajit Chen, Yi-Wen Vilain, Eric Barseghyan, Hayk Elkon, Ran Sharan, Roded Ebenstein, Yuval Bioinformatics Regulatory and Functional Genomics MOTIVATION: While promoter methylation is associated with reinforcing fundamental tissue identities, the methylation status of distant enhancers was shown by genome-wide association studies to be a powerful determinant of cell-state and cancer. With recent availability of long reads that report on the methylation status of enhancer–promoter pairs on the same molecule, we hypothesized that probing these pairs on the single-molecule level may serve the basis for detection of rare cancerous transformations in a given cell population. We explore various analysis approaches for deconvolving cell-type mixtures based on their genome-wide enhancer–promoter methylation profiles. RESULTS: To evaluate our hypothesis we examine long-read optical methylome data for the GM12878 cell line and myoblast cell lines from two donors. We identified over 100 000 enhancer–promoter pairs that co-exist on at least 30 individual DNA molecules. We developed a detailed methodology for mixture deconvolution and applied it to estimate the proportional cell compositions in synthetic mixtures. Analysis of promoter methylation, as well as enhancer–promoter pairwise methylation, resulted in very accurate estimates. In addition, we show that pairwise methylation analysis can be generalized from deconvolving different cell types to subtle scenarios where one wishes to resolve different cell populations of the same cell-type. AVAILABILITY AND IMPLEMENTATION: The code used in this work to analyze single-molecule Bionano Genomics optical maps is available via the GitHub repository https://github.com/ebensteinLab/Single_molecule_methylation_in_EP. Oxford University Press 2021-07-12 /pmc/articles/PMC8275347/ /pubmed/34252972 http://dx.doi.org/10.1093/bioinformatics/btab306 Text en © The Author(s) 2021. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regulatory and Functional Genomics
Margalit, Sapir
Abramson, Yotam
Sharim, Hila
Manber, Zohar
Bhattacharya, Surajit
Chen, Yi-Wen
Vilain, Eric
Barseghyan, Hayk
Elkon, Ran
Sharan, Roded
Ebenstein, Yuval
Long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution
title Long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution
title_full Long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution
title_fullStr Long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution
title_full_unstemmed Long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution
title_short Long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution
title_sort long reads capture simultaneous enhancer–promoter methylation status for cell-type deconvolution
topic Regulatory and Functional Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8275347/
https://www.ncbi.nlm.nih.gov/pubmed/34252972
http://dx.doi.org/10.1093/bioinformatics/btab306
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