AppA protein BLUF domain

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Overall, the main function of the BLUF domain is to detect and respond to blue light. More specifically, in ''R. sphaeroides'', the BLUF domain is a blue light photo receptor involved in repressing the photosynthesis genes at the N-terminal region of the AppA protein<ref name="three" />. In ''E. gracilis'', the BLUF domain of PAC complexes serves as a blue light receptor in photophobic responses<ref name="six" />.
Overall, the main function of the BLUF domain is to detect and respond to blue light. More specifically, in ''R. sphaeroides'', the BLUF domain is a blue light photo receptor involved in repressing the photosynthesis genes at the N-terminal region of the AppA protein<ref name="three" />. In ''E. gracilis'', the BLUF domain of PAC complexes serves as a blue light receptor in photophobic responses<ref name="six" />.
</StructureSection>
</StructureSection>
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=3D structures of BLUF domain protein=
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=3D structures of AppA=
Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}}
Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}}
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[[2byc]] - RsBlue light receptor BLUF - ''Rhodobacter sphaeroides''<br />
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[[2byc]] RsBlue light receptor BLUF + FMN - ''Rhodobacter sphaeroides''<br />
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[[2bun]] – RsAppA BLUF domain – NMR <br />
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[[2bun]] – RsAppA BLUF domain + FAD – NMR <br />
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[[2iyg]], [[2iyi]] - RsAppA BLUF domain (mutant)<br />
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[[2iyg]], [[2iyi]] RsAppA BLUF domain (mutant) + FMN <br />
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[[1x0p]] - BLUF - ''Thermosynechococcus elongatus''<br />
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[[4heh]] – RsAppA SCHIC domain <br />
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[[4hh3]] – RsAppA SCHIC domain (mutant) + PpsR<br />
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[[4hh1]] – RsAppA + FMN<br />
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[[4hh0]] – RsAppA (mutant) + FMN<br />
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[[1x0p]] - BLUF + FAD - ''Thermosynechococcus elongatus''<br />
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[[1xoc]] – AppA + peptide - ''Bacillus subtilis''<br />
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[[4tsr]] – AppA (mutant) + inositol hexasulfate - ''Eschericia coli''<br />
=References=
=References=
<references />
<references />
[[Category:Topic Page]]
[[Category:Topic Page]]

Current revision

Structure of BLUF domain protein complex with FAD (PDB code 1x0p).

Drag the structure with the mouse to rotate

3D structures of AppA

Updated on 13-May-2021

2byc – RsBlue light receptor BLUF + FMN - Rhodobacter sphaeroides
2bun – RsAppA BLUF domain + FAD – NMR
2iyg, 2iyi – RsAppA BLUF domain (mutant) + FMN
4heh – RsAppA SCHIC domain
4hh3 – RsAppA SCHIC domain (mutant) + PpsR
4hh1 – RsAppA + FMN
4hh0 – RsAppA (mutant) + FMN
1x0p - BLUF + FAD - Thermosynechococcus elongatus
1xoc – AppA + peptide - Bacillus subtilis
4tsr – AppA (mutant) + inositol hexasulfate - Eschericia coli

References

  1. Masuda S, Bauer CE. AppA is a blue light photoreceptor that antirepresses photosynthesis gene expression in Rhodobacter sphaeroides. Cell. 2002 Sep 6;110(5):613-23. PMID:12230978
  2. 2.00 2.01 2.02 2.03 2.04 2.05 2.06 2.07 2.08 2.09 2.10 2.11 2.12 2.13 2.14 2.15 2.16 2.17 Kita A, Okajima K, Morimoto Y, Ikeuchi M, Miki K. Structure of a cyanobacterial BLUF protein, Tll0078, containing a novel FAD-binding blue light sensor domain. J Mol Biol. 2005 May 27;349(1):1-9. Epub 2005 Apr 9. PMID:15876364 doi:10.1016/j.jmb.2005.03.067
  3. van der Horst MA, Hellingwerf KJ. Photoreceptor proteins, "star actors of modern times": a review of the functional dynamics in the structure of representative members of six different photoreceptor families. Acc Chem Res. 2004 Jan;37(1):13-20. PMID:14730990 doi:10.1021/ar020219d
  4. 4.0 4.1 Masuda S, Bauer CE. AppA is a blue light photoreceptor that antirepresses photosynthesis gene expression in Rhodobacter sphaeroides. Cell. 2002 Sep 6;110(5):613-23. PMID:12230978
  5. Laan W, van der Horst MA, van Stokkum IH, Hellingwerf KJ. Initial characterization of the primary photochemistry of AppA, a blue-light-using flavin adenine dinucleotide-domain containing transcriptional antirepressor protein from Rhodobacter sphaeroides: a key role for reversible intramolecular proton transfer from the flavin adenine dinucleotide chromophore to a conserved tyrosine? Photochem Photobiol. 2003 Sep;78(3):290-7. PMID:14556317
  6. Hasegawa K, Masuda S, Ono TA. Spectroscopic analysis of the dark relaxation process of a photocycle in a sensor of blue light using FAD (BLUF) protein Slr1694 of the cyanobacterium Synechocystis sp. PCC6803. Plant Cell Physiol. 2005 Jan;46(1):136-46. Epub 2005 Jan 19. PMID:15659451 doi:10.1093/pcp/pci003
  7. 7.0 7.1 Iseki M, Matsunaga S, Murakami A, Ohno K, Shiga K, Yoshida K, Sugai M, Takahashi T, Hori T, Watanabe M. A blue-light-activated adenylyl cyclase mediates photoavoidance in Euglena gracilis. Nature. 2002 Feb 28;415(6875):1047-51. PMID:11875575 doi:10.1038/4151047a
  8. Yuan H, Anderson S, Masuda S, Dragnea V, Moffat K, Bauer C. Crystal structures of the Synechocystis photoreceptor Slr1694 reveal distinct structural states related to signaling. Biochemistry. 2006 Oct 24;45(42):12687-94. PMID:17042486 doi:10.1021/bi061435n

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