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Engineered transmembrane pores

delete2016-10-01
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M
Mariam Ayub
H
Hagan Bayley *
DOI:10.1016/j.cbpa.2016.08.005delete
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摘要

摘要

En 中文
Today, hundreds of researchers are working on nanopores, making an impact in both basic science and biotechnology. Proteins remain the most versatile sources of nanopores, based on our ability to engineer them with sub-nanometer precision. Recent work aimed at the construction and discovery of novel pores has included unnatural amino acid mutagenesis and the application of selection techniques. The diversity of structures has now been increased through the development of helix-based pores as well as the better-known beta barrels. New developments also include truncated pores, which pierce bilayers through lipid rearrangement, and hybrid pores, which do away with bilayers altogether. Pore dimers, which span two lipid bilayers, have been constructed and pores based on DNA nanostructures are gaining in importance. While nanopore DNA sequencing has received enthusiastic attention, protein pores have a wider range of potential applications, requiring specifications that will require engineering efforts to continue for years to come.
Keyword:
ALPHA-HEMOLYSIN
PROTEIN
MOLECULE
DNA
TRANSPORT
NANOPORES
CHANNELS
ARCHITECTURE
RECOGNITION
ASSEMBLIES
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Current Opinion in Chemical Biology
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论文数:
3.1K
被引数:
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机构

U
university of oxford
学者数:
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论文数: 8.6W
被引数: 137
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