Mechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells

Several proteins are expressed at too low abundance in the Escherichia coli (E. coli) proteome to be detected by standard methods. Here, the authors create a microfluidics-based platform enabling single-molecule counting of low-abundance proteins by mechanically slowing-down their diffusion in live...

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Autores principales: Burak Okumus, Dirk Landgraf, Ghee Chuan Lai, Somenath Bakshi, Juan Carlos Arias-Castro, Sadik Yildiz, Dann Huh, Raul Fernandez-Lopez, Celeste N. Peterson, Erdal Toprak, Meriem El Karoui, Johan Paulsson
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/8a1232042ef1474fa593b28506b6483e
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spelling oai:doaj.org-article:8a1232042ef1474fa593b28506b6483e2021-12-02T14:38:55ZMechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells10.1038/ncomms116412041-1723https://doaj.org/article/8a1232042ef1474fa593b28506b6483e2016-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms11641https://doaj.org/toc/2041-1723Several proteins are expressed at too low abundance in the Escherichia coli (E. coli) proteome to be detected by standard methods. Here, the authors create a microfluidics-based platform enabling single-molecule counting of low-abundance proteins by mechanically slowing-down their diffusion in live E. coli.Burak OkumusDirk LandgrafGhee Chuan LaiSomenath BakshiJuan Carlos Arias-CastroSadik YildizDann HuhRaul Fernandez-LopezCeleste N. PetersonErdal ToprakMeriem El KarouiJohan PaulssonNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Burak Okumus
Dirk Landgraf
Ghee Chuan Lai
Somenath Bakshi
Juan Carlos Arias-Castro
Sadik Yildiz
Dann Huh
Raul Fernandez-Lopez
Celeste N. Peterson
Erdal Toprak
Meriem El Karoui
Johan Paulsson
Mechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells
description Several proteins are expressed at too low abundance in the Escherichia coli (E. coli) proteome to be detected by standard methods. Here, the authors create a microfluidics-based platform enabling single-molecule counting of low-abundance proteins by mechanically slowing-down their diffusion in live E. coli.
format article
author Burak Okumus
Dirk Landgraf
Ghee Chuan Lai
Somenath Bakshi
Juan Carlos Arias-Castro
Sadik Yildiz
Dann Huh
Raul Fernandez-Lopez
Celeste N. Peterson
Erdal Toprak
Meriem El Karoui
Johan Paulsson
author_facet Burak Okumus
Dirk Landgraf
Ghee Chuan Lai
Somenath Bakshi
Juan Carlos Arias-Castro
Sadik Yildiz
Dann Huh
Raul Fernandez-Lopez
Celeste N. Peterson
Erdal Toprak
Meriem El Karoui
Johan Paulsson
author_sort Burak Okumus
title Mechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells
title_short Mechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells
title_full Mechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells
title_fullStr Mechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells
title_full_unstemmed Mechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells
title_sort mechanical slowing-down of cytoplasmic diffusion allows in vivo counting of proteins in individual cells
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/8a1232042ef1474fa593b28506b6483e
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