Robust single-cell DNA methylome profiling with snmC-seq2
Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker
Nature Publishing Group (NPG)
Published 2018
Nature Publishing Group (NPG)
Published 2018
Publication Date: |
2018-09-21
|
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Publisher: |
Nature Publishing Group (NPG)
|
Electronic ISSN: |
2041-1723
|
Topics: |
Biology
Chemistry and Pharmacology
Natural Sciences in General
Physics
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Published by: |
_version_ | 1836399055370977280 |
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autor | Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker |
beschreibung | Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2, Published online: 20 September 2018; doi:10.1038/s41467-018-06355-2 Single-cell DNA methylome profiling allows the study of epigenomic heterogeneity in tissues but has been impeded by library quality. Here the authors demonstrate snmC-seq2 which improves mapping, throughput and library complexity. |
citation_standardnr | 6335550 |
datenlieferant | ipn_articles |
feed_id | 134647 |
feed_publisher | Nature Publishing Group (NPG) |
feed_publisher_url | http://www.nature.com/ |
insertion_date | 2018-09-21 |
journaleissn | 2041-1723 |
publikationsjahr_anzeige | 2018 |
publikationsjahr_facette | 2018 |
publikationsjahr_intervall | 7984:2015-2019 |
publikationsjahr_sort | 2018 |
publisher | Nature Publishing Group (NPG) |
quelle | Nature Communications |
relation | http://feeds.nature.com/~r/ncomms/rss/current/~3/L3lbNyyyhdk/s41467-018-06355-2 |
search_space | articles |
shingle_author_1 | Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker |
shingle_author_2 | Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker |
shingle_author_3 | Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker |
shingle_author_4 | Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker |
shingle_catch_all_1 | Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2, Published online: 20 September 2018; doi:10.1038/s41467-018-06355-2 Single-cell DNA methylome profiling allows the study of epigenomic heterogeneity in tissues but has been impeded by library quality. Here the authors demonstrate snmC-seq2 which improves mapping, throughput and library complexity. Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker Nature Publishing Group (NPG) 2041-1723 20411723 |
shingle_catch_all_2 | Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2, Published online: 20 September 2018; doi:10.1038/s41467-018-06355-2 Single-cell DNA methylome profiling allows the study of epigenomic heterogeneity in tissues but has been impeded by library quality. Here the authors demonstrate snmC-seq2 which improves mapping, throughput and library complexity. Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker Nature Publishing Group (NPG) 2041-1723 20411723 |
shingle_catch_all_3 | Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2, Published online: 20 September 2018; doi:10.1038/s41467-018-06355-2 Single-cell DNA methylome profiling allows the study of epigenomic heterogeneity in tissues but has been impeded by library quality. Here the authors demonstrate snmC-seq2 which improves mapping, throughput and library complexity. Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker Nature Publishing Group (NPG) 2041-1723 20411723 |
shingle_catch_all_4 | Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2 Robust single-cell DNA methylome profiling with snmC-seq2, Published online: 20 September 2018; doi:10.1038/s41467-018-06355-2 Single-cell DNA methylome profiling allows the study of epigenomic heterogeneity in tissues but has been impeded by library quality. Here the authors demonstrate snmC-seq2 which improves mapping, throughput and library complexity. Chongyuan Luo; Angeline Rivkin; Jingtian Zhou; Justin P. Sandoval; Laurie Kurihara; Jacinta Lucero; Rosa Castanon; Joseph R. Nery; António Pinto-Duarte; Brian Bui; Conor Fitzpatrick; Carolyn O’Connor; Seth Ruga; Marc E. Van Eden; David A. Davis; Deborah C. Mash; M. Margarita Behrens; Joseph R. Ecker Nature Publishing Group (NPG) 2041-1723 20411723 |
shingle_title_1 | Robust single-cell DNA methylome profiling with snmC-seq2 |
shingle_title_2 | Robust single-cell DNA methylome profiling with snmC-seq2 |
shingle_title_3 | Robust single-cell DNA methylome profiling with snmC-seq2 |
shingle_title_4 | Robust single-cell DNA methylome profiling with snmC-seq2 |
timestamp | 2025-06-30T23:36:52.728Z |
titel | Robust single-cell DNA methylome profiling with snmC-seq2 |
titel_suche | Robust single-cell DNA methylome profiling with snmC-seq2 |
topic | W V TA-TD U |
uid | ipn_articles_6335550 |