Programming chain-growth copolymerization of DNA hairpin tiles for in-vitro hierarchical supramolecular organization
Formation of biological filaments via intracellular supramolecular polymerization of proteins occurs under programmable and spatiotemporal control to maintain integrity. Here the authors devise a bioinspired isothermal chain-growth approach to programmably copolymerize DNA hairpin tiles into 1D nano...
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Nature Portfolio
2019
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oai:doaj.org-article:80b03b6f4f714d408acd5a296470c6932021-12-02T17:02:11ZProgramming chain-growth copolymerization of DNA hairpin tiles for in-vitro hierarchical supramolecular organization10.1038/s41467-019-09004-42041-1723https://doaj.org/article/80b03b6f4f714d408acd5a296470c6932019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09004-4https://doaj.org/toc/2041-1723Formation of biological filaments via intracellular supramolecular polymerization of proteins occurs under programmable and spatiotemporal control to maintain integrity. Here the authors devise a bioinspired isothermal chain-growth approach to programmably copolymerize DNA hairpin tiles into 1D nanofilaments.Honglu ZhangYu WangHuan ZhangXiaoguo LiuAntony LeeQiuling HuangFei WangJie ChaoHuajie LiuJiang LiJiye ShiXiaolei ZuoLihua WangLianhui WangXiaoyu CaoCarlos BustamanteZhongqun TianChunhai FanNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019) |
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Science Q |
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Science Q Honglu Zhang Yu Wang Huan Zhang Xiaoguo Liu Antony Lee Qiuling Huang Fei Wang Jie Chao Huajie Liu Jiang Li Jiye Shi Xiaolei Zuo Lihua Wang Lianhui Wang Xiaoyu Cao Carlos Bustamante Zhongqun Tian Chunhai Fan Programming chain-growth copolymerization of DNA hairpin tiles for in-vitro hierarchical supramolecular organization |
description |
Formation of biological filaments via intracellular supramolecular polymerization of proteins occurs under programmable and spatiotemporal control to maintain integrity. Here the authors devise a bioinspired isothermal chain-growth approach to programmably copolymerize DNA hairpin tiles into 1D nanofilaments. |
format |
article |
author |
Honglu Zhang Yu Wang Huan Zhang Xiaoguo Liu Antony Lee Qiuling Huang Fei Wang Jie Chao Huajie Liu Jiang Li Jiye Shi Xiaolei Zuo Lihua Wang Lianhui Wang Xiaoyu Cao Carlos Bustamante Zhongqun Tian Chunhai Fan |
author_facet |
Honglu Zhang Yu Wang Huan Zhang Xiaoguo Liu Antony Lee Qiuling Huang Fei Wang Jie Chao Huajie Liu Jiang Li Jiye Shi Xiaolei Zuo Lihua Wang Lianhui Wang Xiaoyu Cao Carlos Bustamante Zhongqun Tian Chunhai Fan |
author_sort |
Honglu Zhang |
title |
Programming chain-growth copolymerization of DNA hairpin tiles for in-vitro hierarchical supramolecular organization |
title_short |
Programming chain-growth copolymerization of DNA hairpin tiles for in-vitro hierarchical supramolecular organization |
title_full |
Programming chain-growth copolymerization of DNA hairpin tiles for in-vitro hierarchical supramolecular organization |
title_fullStr |
Programming chain-growth copolymerization of DNA hairpin tiles for in-vitro hierarchical supramolecular organization |
title_full_unstemmed |
Programming chain-growth copolymerization of DNA hairpin tiles for in-vitro hierarchical supramolecular organization |
title_sort |
programming chain-growth copolymerization of dna hairpin tiles for in-vitro hierarchical supramolecular organization |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/80b03b6f4f714d408acd5a296470c693 |
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