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Engineered Arabidopsis Blue Light Receptor LOV Domain Variants with Improved Quantum Yield, Brightness, and Thermostability

Authors
Ko, SanghwanHwang, BoraNa, Jung-HyunLee, JisunJung, Sang Taek
Issue Date
30-10월-2019
Publisher
AMER CHEMICAL SOC
Keywords
flavin-binding fluorescent protein; directed evolution; fluorescence intensity; quantum yield
Citation
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, v.67, no.43, pp.12037 - 12043
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
Volume
67
Number
43
Start Page
12037
End Page
12043
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/62157
DOI
10.1021/acs.jafc.9b05473
ISSN
0021-8561
Abstract
Despite remarkable contribution of green fluorescent protein and its variants for better understanding of various biological functions, its application for anaerobic microorganisms has been limited because molecular oxygen is essential for chromophore formation. To overcome the limitation, we engineered a plant-derived light, oxygen, or voltage (LOV) domain containing flavin mononucleotide for enhanced spectral properties. The resulting LOV variants exhibited improved fluorescence intensity (20 and 70% higher for SH3 and 70% for BR1, respectively) compared to iLOV, an LOV variant isolated in a previous study, and the quantum yields of the LOV variants (0.40 for SH3 and 0.45 for BR1) were also improved relative to that of iLOV (Q = 0.37). In addition to fluorescence intensity, the identified mutations of SH3 enabled an improved thermostability of the protein. The engineered LOV variants with enhanced spectral properties could provide a valuable tool for fluorescent molecular probes under anaerobic conditions.
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