Immuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells

Detecting proteins and post-translational modifications is important for drug screens, but the number of proteins measurable simultaneously is limited. Here the authors use antibodies tagged with DNA barcodes and high-throughput sequencing to detect up to 70 (phospho-)proteins in stem cells.

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Autores principales: Jessie A. G. van Buggenum, Jan P. Gerlach, Sabine E. J. Tanis, Mark Hogeweg, Pascal W. T. C. Jansen, Jesse Middelwijk, Ruud van der Steen, Michiel Vermeulen, Hendrik G. Stunnenberg, Cornelis A. Albers, Klaas W. Mulder
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/aee29dc4444b4d96b9ebc997bd57935e
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spelling oai:doaj.org-article:aee29dc4444b4d96b9ebc997bd57935e2021-12-02T15:34:40ZImmuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells10.1038/s41467-018-04761-02041-1723https://doaj.org/article/aee29dc4444b4d96b9ebc997bd57935e2018-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-04761-0https://doaj.org/toc/2041-1723Detecting proteins and post-translational modifications is important for drug screens, but the number of proteins measurable simultaneously is limited. Here the authors use antibodies tagged with DNA barcodes and high-throughput sequencing to detect up to 70 (phospho-)proteins in stem cells.Jessie A. G. van BuggenumJan P. GerlachSabine E. J. TanisMark HogewegPascal W. T. C. JansenJesse MiddelwijkRuud van der SteenMichiel VermeulenHendrik G. StunnenbergCornelis A. AlbersKlaas W. MulderNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jessie A. G. van Buggenum
Jan P. Gerlach
Sabine E. J. Tanis
Mark Hogeweg
Pascal W. T. C. Jansen
Jesse Middelwijk
Ruud van der Steen
Michiel Vermeulen
Hendrik G. Stunnenberg
Cornelis A. Albers
Klaas W. Mulder
Immuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells
description Detecting proteins and post-translational modifications is important for drug screens, but the number of proteins measurable simultaneously is limited. Here the authors use antibodies tagged with DNA barcodes and high-throughput sequencing to detect up to 70 (phospho-)proteins in stem cells.
format article
author Jessie A. G. van Buggenum
Jan P. Gerlach
Sabine E. J. Tanis
Mark Hogeweg
Pascal W. T. C. Jansen
Jesse Middelwijk
Ruud van der Steen
Michiel Vermeulen
Hendrik G. Stunnenberg
Cornelis A. Albers
Klaas W. Mulder
author_facet Jessie A. G. van Buggenum
Jan P. Gerlach
Sabine E. J. Tanis
Mark Hogeweg
Pascal W. T. C. Jansen
Jesse Middelwijk
Ruud van der Steen
Michiel Vermeulen
Hendrik G. Stunnenberg
Cornelis A. Albers
Klaas W. Mulder
author_sort Jessie A. G. van Buggenum
title Immuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells
title_short Immuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells
title_full Immuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells
title_fullStr Immuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells
title_full_unstemmed Immuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells
title_sort immuno-detection by sequencing enables large-scale high-dimensional phenotyping in cells
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/aee29dc4444b4d96b9ebc997bd57935e
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