4.7 Article

Solution structure of Gaussia Luciferase with five disulfide bonds and identification of a putative coelenterazine binding cavity by heteronuclear NMR

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SCIENTIFIC REPORTS
卷 10, 期 1, 页码 -

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NATURE RESEARCH
DOI: 10.1038/s41598-020-76486-4

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  1. Japanese Society for the Promotion of Science (JSPS) KAKENHI [23651213, 26560432]
  2. institute for Global Innovation Research at TUAT
  3. Doctoral Scientific Research Foundation of Zhengzhou University of Light Industry [2018BSJJ020]
  4. Grants-in-Aid for Scientific Research [23651213, 26560432] Funding Source: KAKEN

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Gaussia luciferase (GLuc) is a small luciferase (18.2 kDa; 168 residues) and is thus attracting much attention as a reporter protein, but the lack of structural information is hampering further application. Here, we report the first solution structure of a fully active, recombinant GLuc determined by heteronuclear multidimensional NMR. We obtained a natively folded GLuc by bacterial expression and efficient refolding using a Solubility Enhancement Petide (SEP) tag. Almost perfect assignments of GLuc's H-1, C-13 and N-15 backbone signals were obtained. GLuc structure was determined using CYANA, which automatically identified over 2500 NOEs of which>570 were long-range. GLuc is an all-alpha-helix protein made of nine helices. The region spanning residues 10-18, 36-81, 96-145 and containing eight out of the nine helices was determined with a C-alpha-atom RMSD of 1.39 angstrom +/- 0.39 angstrom. The structure of GLuc is novel and unique. Two homologous sequential repeats form two anti-parallel bundles made by 4 helices and tied together by three disulfide bonds. The N-terminal helix 1 is grabbed by these 4 helices. Further, we found a hydrophobic cavity where several residues responsible for bioluminescence were identified in previous mutational studies, and we thus hypothesize that this is a catalytic cavity, where the hydrophobic coelenterazine binds and the bioluminescence reaction takes place.

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