TY - JOUR
T1 - Crystal structure and redox properties of a novel cyanobacterial heme protein with a His/Cys heme axial ligation and a Per-Arnt-Sim (PAS)-like domain
AU - Motomura, Taiki
AU - Suga, Michihiro
AU - Hienerwadel, Rainer
AU - Nakagawa, Akiko
AU - Lai, Thanh Lan
AU - Nitschke, Wolfgang
AU - Kuma, Takahiro
AU - Sugiura, Miwa
AU - Boussac, Alain
AU - Shen, Jian Ren
N1 - Funding Information:
This work was supported by a program for Leading Graduate Schools, ?Next Generation Picobiology Pioneered by Photon Sciences? at the University of Hyogo, a program for promoting the enhancement of research universities at Okayama University; KAKENHI Grants JP24000018 (to J.-R. S.) and JP26840023, JP15H01642, JP16H06162, and JP16H06296 (to M. Suga) from Japan Society for the Promotion of Science; an Inamori Foundation grant (to M. Suga); Japan Science and Technology Agency (JST)-PRESTO Program 4018 (to M. Sugiura); and the Bioenergy Program of CEA-DSV (to T.-L. L. and A. B.). The authors declare that they have no conflicts of interest with the contents of this article. We thank the staff members at Beamlines BL41XU and BL44XU of SPring-8 for help in data collection, the staff members of CCP4 structure solution workshop for prediction of the extra ligands, and Shinichiro Yonekura for help in performing the immunoblot analysis. Winfried Leibl, Anja Krieger, Frauke Bay-mann, Ghada Ajlani, Pierre S?tif, Alain Desbois, and Fabrice Rappaport are gratefully acknowledged for investment in some periods of this work and for helpful suggestions.
Publisher Copyright:
© 2017 by The American Society for Biochemistry and Molecular Biology, Inc.
PY - 2017/6/9
Y1 - 2017/6/9
N2 - Photosystem II catalyzes light-induced water oxidation leading to the generation of dioxygen indispensable for sustaining aerobic life on Earth. The Photosystem II reaction center is composed of D1 and D2 proteins encoded by psbA and psbD genes, respectively. In cyanobacteria, different psbA genes are present in the genome. The thermophilic cyanobacterium Thermosynechococcus elongatus contains three psbA genes: psbA1, psbA2, and psbA3, and a new c-type heme protein, Tll0287, was found to be expressed in a strain expressing the psbA2 gene only, but the structure and function of Tll0287 are unknown. Here we solved the crystal structure of Tll0287 at a 2.0 Å resolution. The overall structure of Tll0287 was found to be similar to some kinases and sensor proteins with a Per-Arnt-Sim-like domain rather than to other c-type cytochromes. The fifth and sixth axial ligands for the heme were Cys and His, instead of the His/ Met or His/His ligand pairs observed for most of the c-type hemes. The redox potential, E12, of Tll0287 was 255 ± 20 mV versus normal hydrogen electrode at pH values above 7.5. Below this pH value, the E12 increased by ≈57 mV/pH unit at 15 °C, suggesting the involvement of a protonatable group with a pKred 7.2 ± 0.3. Possible functions of Tll0287 as a redox sensor under microaerobic conditions or a cytochrome subunit of an H2S-oxidizing system are discussed in view of the environmental conditions in which psbA2 is expressed, as well as phylogenetic analysis, structural, and sequence homologies.
AB - Photosystem II catalyzes light-induced water oxidation leading to the generation of dioxygen indispensable for sustaining aerobic life on Earth. The Photosystem II reaction center is composed of D1 and D2 proteins encoded by psbA and psbD genes, respectively. In cyanobacteria, different psbA genes are present in the genome. The thermophilic cyanobacterium Thermosynechococcus elongatus contains three psbA genes: psbA1, psbA2, and psbA3, and a new c-type heme protein, Tll0287, was found to be expressed in a strain expressing the psbA2 gene only, but the structure and function of Tll0287 are unknown. Here we solved the crystal structure of Tll0287 at a 2.0 Å resolution. The overall structure of Tll0287 was found to be similar to some kinases and sensor proteins with a Per-Arnt-Sim-like domain rather than to other c-type cytochromes. The fifth and sixth axial ligands for the heme were Cys and His, instead of the His/ Met or His/His ligand pairs observed for most of the c-type hemes. The redox potential, E12, of Tll0287 was 255 ± 20 mV versus normal hydrogen electrode at pH values above 7.5. Below this pH value, the E12 increased by ≈57 mV/pH unit at 15 °C, suggesting the involvement of a protonatable group with a pKred 7.2 ± 0.3. Possible functions of Tll0287 as a redox sensor under microaerobic conditions or a cytochrome subunit of an H2S-oxidizing system are discussed in view of the environmental conditions in which psbA2 is expressed, as well as phylogenetic analysis, structural, and sequence homologies.
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U2 - 10.1074/jbc.M116.746263
DO - 10.1074/jbc.M116.746263
M3 - Article
C2 - 28428249
AN - SCOPUS:85020714654
SN - 0021-9258
VL - 292
SP - 9599
EP - 9612
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 23
ER -