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Magnetoreception of Photoactivated Cryptochrome 1 in Electrochemistry and Electron Transfer
Author(s) -
Zheng Zeng,
Jianjun Wei,
Yiyang Liu,
Wendi Zhang,
Taylor Mabe
Publication year - 2018
Publication title -
acs omega
Language(s) - English
Resource type - Journals
ISSN - 2470-1343
DOI - 10.1021/acsomega.8b00645
Subject(s) - cryptochrome , magnetoreception , electron transfer , electrochemistry , chemistry , nanotechnology , neuroscience , photochemistry , materials science , physics , biology , electrode , quantum mechanics , circadian rhythm , earth's magnetic field , circadian clock , magnetic field
Cryptochromes are flavoproteins whose photochemistry is important for crucial functions associated with phototropism and circadian clocks. In this report, we, for the first time, observed a magnetic response of the cryptochrome 1 (CRY1) immobilized at a gold electrode with illumination of blue light. These results present the magnetic field-enhanced photoinduced electron transfer of CRY1 to the electrode by voltammetry, exhibiting magnetic responsive rate constant and electrical current changes. A mechanism of the electron transfer, which involves photoinduced radicals in the CRY, is sensitive to the weak magnetic field; and the long-lived free radical FAD •- is responsible for the detected electrochemical Faradaic current. As a photoreceptor, the finding of a 5.7% rate constant change in electron transfer corresponding to a 50 μT magnetic field may be meaningful in regulation of magnetic field signaling and circadian clock function under an electromagnetic field.

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