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6I20

Flavin Analogue Sheds Light on Light-Oxygen-Voltage Domain Mechanism

Summary for 6I20
Entry DOI10.2210/pdb6i20/pdb
DescriptorAureochrome1-like protein, FLAVIN MONONUCLEOTIDE, 1,2-ETHANEDIOL, ... (8 entities in total)
Functional Keywordslov domain, fmn, dark grown, fluorescence, light sensing, transcription factor pas domain, ochronomas danica, transcription
Biological sourceOchromonas danica
More
Total number of polymer chains4
Total formula weight62143.62
Authors
Rizkallah, P.J.,Kalvaitis, M.E.,Allemann, R.K.,Mart, R.J.,Johnson, L.A. (deposition date: 2018-10-31, release date: 2019-05-29, Last modification date: 2024-05-15)
Primary citationKalvaitis, M.E.,Johnson, L.A.,Mart, R.J.,Rizkallah, P.,Allemann, R.K.
A Noncanonical Chromophore Reveals Structural Rearrangements of the Light-Oxygen-Voltage Domain upon Photoactivation.
Biochemistry, 58:2608-2616, 2019
Cited by
PubMed Abstract: Light-oxygen-voltage (LOV) domains are increasingly used to engineer photoresponsive biological systems. While the photochemical cycle is well documented, the allosteric mechanism by which formation of a cysteinyl-flavin adduct leads to activation is unclear. Via replacement of flavin mononucleotide (FMN) with 5-deazaflavin mononucleotide (5dFMN) in the Aureochrome1a (Au1a) transcription factor from Ochromonas danica, a thermally stable cysteinyl-5dFMN adduct was generated. High-resolution crystal structures (<2 Å) under different illumination conditions with either FMN or 5dFMN chromophores reveal three conformations of the highly conserved glutamine 293. An allosteric hydrogen bond network linking the chromophore via Gln293 to the auxiliary A'α helix is observed. With FMN, a "flip" of the Gln293 side chain occurs between dark and lit states. 5dFMN cannot hydrogen bond through the C5 position and proved to be unable to support Au1a domain dimerization. Under blue light, the Gln293 side chain instead "swings" away in a conformation distal to the chromophore and not previously observed in existing LOV domain structures. Together, the multiple side chain conformations of Gln293 and functional analysis of 5dFMN provide new insight into the structural requirements for LOV domain activation.
PubMed: 31082213
DOI: 10.1021/acs.biochem.9b00255
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.37 Å)
Structure validation

226707

數據於2024-10-30公開中

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