A modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes
Assembling multiple biological components into synthetic lipid vesicles is a limiting step in the manufacture of biomimetic cell-like structures. Here the authors use fusogenic proteoliposomes of opposite charge for fast assembly of a minimal electron transport chain consisting of F1F0 ATP-synthase...
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Nature Portfolio
2016
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oai:doaj.org-article:79ab5c276ed346169bc8cceb064fb0992021-12-02T17:32:22ZA modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes10.1038/ncomms130252041-1723https://doaj.org/article/79ab5c276ed346169bc8cceb064fb0992016-10-01T00:00:00Zhttps://doi.org/10.1038/ncomms13025https://doaj.org/toc/2041-1723Assembling multiple biological components into synthetic lipid vesicles is a limiting step in the manufacture of biomimetic cell-like structures. Here the authors use fusogenic proteoliposomes of opposite charge for fast assembly of a minimal electron transport chain consisting of F1F0 ATP-synthase and the proton pump bo3-oxidase.Robert R. IshmukhametovAidan N. RussellRichard M. BerryNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016) |
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Science Q Robert R. Ishmukhametov Aidan N. Russell Richard M. Berry A modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes |
description |
Assembling multiple biological components into synthetic lipid vesicles is a limiting step in the manufacture of biomimetic cell-like structures. Here the authors use fusogenic proteoliposomes of opposite charge for fast assembly of a minimal electron transport chain consisting of F1F0 ATP-synthase and the proton pump bo3-oxidase. |
format |
article |
author |
Robert R. Ishmukhametov Aidan N. Russell Richard M. Berry |
author_facet |
Robert R. Ishmukhametov Aidan N. Russell Richard M. Berry |
author_sort |
Robert R. Ishmukhametov |
title |
A modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes |
title_short |
A modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes |
title_full |
A modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes |
title_fullStr |
A modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes |
title_full_unstemmed |
A modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes |
title_sort |
modular platform for one-step assembly of multi-component membrane systems by fusion of charged proteoliposomes |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/79ab5c276ed346169bc8cceb064fb099 |
work_keys_str_mv |
AT robertrishmukhametov amodularplatformforonestepassemblyofmulticomponentmembranesystemsbyfusionofchargedproteoliposomes AT aidannrussell amodularplatformforonestepassemblyofmulticomponentmembranesystemsbyfusionofchargedproteoliposomes AT richardmberry amodularplatformforonestepassemblyofmulticomponentmembranesystemsbyfusionofchargedproteoliposomes AT robertrishmukhametov modularplatformforonestepassemblyofmulticomponentmembranesystemsbyfusionofchargedproteoliposomes AT aidannrussell modularplatformforonestepassemblyofmulticomponentmembranesystemsbyfusionofchargedproteoliposomes AT richardmberry modularplatformforonestepassemblyofmulticomponentmembranesystemsbyfusionofchargedproteoliposomes |
_version_ |
1718380316063694848 |