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Conformable self-assembling amyloid protein coatings with genetically programmable functionality

delete2020-05-22
delete45
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OA
AI
Y
Yingfeng Li
K
Ke Li
X
Xinyu Wang
M
Mengkui Cui
彭革 (Peng Ge)
张俊虎 (Junhu Zhang)
Q
Qiu, Feng
钟超 (Chao Zhong) *
DOI:10.1126/sciadv.aba1425delete
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Abstract

Abstract

En 中文
Functional coating materials have found broad technological applications in diverse fields. Despite recent advances, few coating materials simultaneously achieve robustness and substrate independence while still retaining the capacity for genetically encodable functionalities. Here, we report Escherichia coli biofilm-inspired protein nanofiber coatings that simultaneously exhibit substrate independence, resistance to organic solvents, and programmable functionalities. The intrinsic surface adherence of CsgA amyloid proteins, along with a benign solution-based fabrication approach, facilitates forming nanofiber coatings on virtually any surface with varied compositions, sizes, shapes, and structures. In addition, the typical amyloid structures endow the nanofiber coatings with outstanding robustness. On the basis of their genetically engineerable functionality, our nanofiber coatings can also seamlessly participate in functionalization processes, including gold enhancement, diverse protein conjugations, and DNA binding, thus enabling a variety of proof-of-concept applications, including electronic devices, enzyme immobilization, and microfluidic bacterial sensors. We envision that our coatings can drive advances in electronics, biocatalysis, particle engineering, and biomedicine.
Keywords:
SURFACE MODIFICATION
PEPTIDE
NANOFILM
BINDING
FILM
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Journal

Science Advances cover
Science Advances
IF:
12.5
Papers:
2.0W
Citations:
18.1W

Organization

S
ShanghaiTech University
Scholars:
9.6K
Papers: 5.9K
Citations: 1.6W
J
Jilin University
Scholars:
8.7W
Papers: 5.5W
Citations: 8.9K