Cryo-EM structures from sub-nl volumes using pin-printing and jet vitrification
There is a need to further improve the automation of cryo-EM sample preparation to make it more easily accessible for non-specialists, reduce sample waste and increase reproducibility. Here, the authors present VitroJet, a single device, where sub-nl volumes of samples are deposited by pin printing...
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Nature Portfolio
2020
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oai:doaj.org-article:576baa0f76434676a7786827d52416e02021-12-02T15:52:52ZCryo-EM structures from sub-nl volumes using pin-printing and jet vitrification10.1038/s41467-020-16392-52041-1723https://doaj.org/article/576baa0f76434676a7786827d52416e02020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16392-5https://doaj.org/toc/2041-1723There is a need to further improve the automation of cryo-EM sample preparation to make it more easily accessible for non-specialists, reduce sample waste and increase reproducibility. Here, the authors present VitroJet, a single device, where sub-nl volumes of samples are deposited by pin printing thus eliminating the need for sample blotting, which is followed by jet vitrification, and they show that high-resolution structures can be obtained using four standard proteins.Raimond B. G. RavelliFrank J. T. NijpelsRene J. M. HenderikxGiulia WeissenbergerSanne ThewessemAbril GijsbersBart W. A. M. M. BeulenCarmen López-IglesiasPeter J. PetersNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020) |
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Science Q Raimond B. G. Ravelli Frank J. T. Nijpels Rene J. M. Henderikx Giulia Weissenberger Sanne Thewessem Abril Gijsbers Bart W. A. M. M. Beulen Carmen López-Iglesias Peter J. Peters Cryo-EM structures from sub-nl volumes using pin-printing and jet vitrification |
description |
There is a need to further improve the automation of cryo-EM sample preparation to make it more easily accessible for non-specialists, reduce sample waste and increase reproducibility. Here, the authors present VitroJet, a single device, where sub-nl volumes of samples are deposited by pin printing thus eliminating the need for sample blotting, which is followed by jet vitrification, and they show that high-resolution structures can be obtained using four standard proteins. |
format |
article |
author |
Raimond B. G. Ravelli Frank J. T. Nijpels Rene J. M. Henderikx Giulia Weissenberger Sanne Thewessem Abril Gijsbers Bart W. A. M. M. Beulen Carmen López-Iglesias Peter J. Peters |
author_facet |
Raimond B. G. Ravelli Frank J. T. Nijpels Rene J. M. Henderikx Giulia Weissenberger Sanne Thewessem Abril Gijsbers Bart W. A. M. M. Beulen Carmen López-Iglesias Peter J. Peters |
author_sort |
Raimond B. G. Ravelli |
title |
Cryo-EM structures from sub-nl volumes using pin-printing and jet vitrification |
title_short |
Cryo-EM structures from sub-nl volumes using pin-printing and jet vitrification |
title_full |
Cryo-EM structures from sub-nl volumes using pin-printing and jet vitrification |
title_fullStr |
Cryo-EM structures from sub-nl volumes using pin-printing and jet vitrification |
title_full_unstemmed |
Cryo-EM structures from sub-nl volumes using pin-printing and jet vitrification |
title_sort |
cryo-em structures from sub-nl volumes using pin-printing and jet vitrification |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/576baa0f76434676a7786827d52416e0 |
work_keys_str_mv |
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_version_ |
1718385571719544832 |