Rewiring Multidomain Protein Switches: Transforming a Fluorescent Zn2+ Sensor into a Light-Responsive Zn2+ Binding Protein

被引:9
|
作者
Aper, Stijn J. A.
Merkx, Maarten [1 ]
机构
[1] Eindhoven Univ Technol, Dept Biomed Engn, Biol Chem Lab, POB 513, NL-5600 MB Eindhoven, Netherlands
来源
ACS SYNTHETIC BIOLOGY | 2016年 / 5卷 / 07期
关键词
optogenetics; protein engineering; light switching; metal binding; fluorescent sensor; Vivid; ENERGY-TRANSFER; OPTICAL CONTROL; SPATIOTEMPORAL CONTROL; OPTOGENETIC CONTROL; FRET SENSORS; ZINC; DESIGN; ACTIVATION; INDUCTION; MECHANISM;
D O I
10.1021/acssynbio.6b00027
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Protein-based sensors and switches provide attractive tools for the real-time monitoring and control of molecular processes in complex biological environments. Fluorescent sensor proteins have been developed for a wide variety of small molecules, but the construction of genetically encoded light-responsive ligand binding proteins remains mostly unexplored. Here we present a generic approach to reengineer a previously developed FRET-based Zn2+ sensor into a light-activatable Zn2+ binding protein using a design strategy based on mutually exclusive domain interactions. These so-called VividZn proteins consist of two light-responsive Vivid domains that homodimerize upon illumination with blue light, thus preventing the binding of Zn2+ between two Zn2+ binding domains, Atoxl and WD4. Following optimization of the linker between WD4 and the N-terminus of one of the Vivid domains, VividZn variants were obtained that show a 9- to SS-fold decrease in Zn2+ affinity upon illumination, which is fully reversible following dark adaptation. The Zn2+ affinities of the switch could be rationally tuned between 1 pM and 2 nM by systematic variation of linker length and mutation of one of the Zn2+ binding residues. Similarly, introduction of mutations in the Vivid domains allowed tuning of the switching kinetics between 10 min and 7 h. Low expression levels in mammalian cells precluded the demonstration of light-induced perturbation of cytosolic Zn2+ levels. Nonetheless, our results firmly establish the use of intramolecular Vivid dimerization as an attractive light-sensitive input module to rationally engineer light-responsive protein switches based on mutually exclusive domain interactions.
引用
收藏
页码:698 / 709
页数:12
相关论文
共 50 条
  • [1] A sulfonamidoquinoline-derived Zn2+ fluorescent sensor with 1:1 Zn2+ binding stoichiometry
    Zhang, Changli
    Zhang, Yuming
    Chen, Yuncong
    Xie, Zhijun
    Liu, Zhipeng
    Dong, Xindian
    He, Weijiang
    Shen, Chen
    Guo, Zijian
    INORGANIC CHEMISTRY COMMUNICATIONS, 2011, 14 (01) : 304 - 307
  • [2] A selective, fluorescent sensor for Zn2+
    Chen, Y
    Zeng, DX
    CHEMPHYSCHEM, 2004, 5 (04) : 564 - 566
  • [3] Blue fluorescent protein analogs as chemosensors for Zn2+
    Fang, Xinxiu
    Li, Haolong
    Zhao, Guiyan
    Fang, Xuexun
    Xu, Jingwei
    Yang, Wei
    BIOSENSORS & BIOELECTRONICS, 2013, 42 : 308 - 313
  • [4] A new PET fluorescent sensor for Zn2+
    Fan, HL
    Peng, XJ
    Wu, YK
    Lu, EH
    Hou, J
    Zhang, HB
    Zhang, R
    Fu, XM
    JOURNAL OF LUMINESCENCE, 2005, 114 (02) : 125 - 130
  • [5] Newport Green, a fluorescent sensor of weakly bound cellular Zn2+: competition with proteome for Zn2+
    Karim, Mohammad Rezaul
    Petering, David H.
    METALLOMICS, 2016, 8 (02) : 201 - 210
  • [6] Fluorescent chemosensors for Zn2+
    Xu, Zhaochao
    Yoon, Juyoung
    Spring, David R.
    CHEMICAL SOCIETY REVIEWS, 2010, 39 (06) : 1996 - 2006
  • [7] Binding of Zn2+ to the plasma protein inter-α-inhibitor
    Blom, AM
    Thuveson, M
    Kilarski, W
    Fries, E
    CLINICA CHIMICA ACTA, 1999, 288 (1-2) : 37 - 46
  • [8] Ratiometric Fluorescent Sensor of Zn2+ by Hydroxyphenyl Benzimidazole
    Wu Yu-Fang
    Cui Ying-Na
    Li Shen-Min
    Jia Ying-Ping
    Yin Jing-Mei
    CHINESE JOURNAL OF INORGANIC CHEMISTRY, 2012, 28 (05) : 910 - 914
  • [9] Development of an Optical Zn2+ Probe Based on a Single Fluorescent Protein
    Qin, Yan
    Sammond, Deanne W.
    Braselmann, Esther
    Carpenter, Margaret C.
    Palmer, Amy E.
    ACS CHEMICAL BIOLOGY, 2016, 11 (10) : 2744 - 2751
  • [10] Elucidation of Zn2+ Binding in the Zn2+/H+ Antiporter YiiP
    Fan, Shujie
    Lopez-Redondo, Maria
    Stokes, David L.
    Beckstein, Oliver
    BIOPHYSICAL JOURNAL, 2021, 120 (03) : 72A - 72A