Evolutionary diversity of proton and water channels on the oxidizing side of photosystem II and their relevance to function

被引:20
作者
Hussein, Rana [1 ]
Ibrahim, Mohamed [1 ]
Bhowmick, Asmit [2 ]
Simon, Philipp S. [2 ]
Bogacz, Isabel [2 ]
Doyle, Margaret D. [2 ]
Dobbek, Holger [1 ]
Zouni, Athina [1 ]
Messinger, Johannes [3 ,4 ]
Yachandra, Vittal K. [2 ]
Kern, Jan F. [2 ]
Yano, Junko [2 ]
机构
[1] Humboldt Univ, Dept Biol, D-10099 Berlin, Germany
[2] Lawrence Berkeley Natl Lab, Mol Biophys & Integrated Bioimaging Div, Berkeley, CA 94720 USA
[3] Uppsala Univ, Dept Chem Angstrom, Mol Biomimet, SE-75120 Uppsala, Sweden
[4] Umea Univ, Dept Chem, SE-90187 Umea, Sweden
基金
美国国家卫生研究院;
关键词
Photosystem II; Water oxidation; Water transport; Oxygen evolving complex; Evolution; S-STATE CYCLE; MOLECULAR-DYNAMICS; CRYSTAL-STRUCTURE; SUBSTRATE WATER; MN4CA CLUSTER; BINDING-SITE; ACTIVE-SITE; OXIDATION; PROTEIN; RESOLUTION;
D O I
10.1007/s11120-023-01018-w
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
One of the reasons for the high efficiency and selectivity of biological catalysts arise from their ability to control the pathways of substrates and products using protein channels, and by modulating the transport in the channels using the interaction with the protein residues and the water/hydrogen-bonding network. This process is clearly demonstrated in Photosystem II (PS II), where its light-driven water oxidation reaction catalyzed by the Mn4CaO5 cluster occurs deep inside the protein complex and thus requires the transport of two water molecules to and four protons from the metal center to the bulk water. Based on the recent advances in structural studies of PS II from X-ray crystallography and cryo-electron microscopy, in this review we compare the channels that have been proposed to facilitate this mass transport in cyanobacteria, red and green algae, diatoms, and higher plants. The three major channels (O1, O4, and Cl1 channels) are present in all species investigated; however, some differences exist in the reported structures that arise from the different composition and arrangement of membrane extrinsic subunits between the species. Among the three channels, the Cl1 channel, including the proton gate, is the most conserved among all photosynthetic species. We also found at least one branch for the O1 channel in all organisms, extending all the way from Ca/O1 via the 'water wheel' to the lumen. However, the extending path after the water wheel varies between most species. The O4 channel is, like the Cl1 channel, highly conserved among all species while having different orientations at the end of the path near the bulk. The comparison suggests that the previously proposed functionality of the channels in T. vestitus (Ibrahim et al., Proc Natl Acad Sci USA 117:12624-12635, 2020; Hussein et al., Nat Commun 12:6531, 2021) is conserved through the species, i.e. the O1-like channel is used for substrate water intake, and the tighter Cl1 and O4 channels for proton release. The comparison does not eliminate the potential role of O4 channel as a water intake channel. However, the highly ordered hydrogen-bonded water wire connected to the Mn4CaO5 cluster via the O4 may strongly suggest that it functions in proton release, especially during the S-0 -> S-1 transition (Saito et al., Nat Commun 6:8488, 2015; Kern et al., Nature 563:421-425, 2018; Ibrahim et al., Proc Natl Acad Sci USA 117:12624-12635, 2020; Sakashita et al., Phys Chem Chem Phys 22:15831-15841, 2020; Hussein et al., Nat Commun 12:6531, 2021).
引用
收藏
页码:91 / 107
页数:17
相关论文
共 95 条
[1]   Novel Features of Eukaryotic Photosystem II Revealed by Its Crystal Structure Analysis from a Red Alga [J].
Ago, Hideo ;
Adachi, Hideyuki ;
Umena, Yasufumi ;
Tashiro, Takayoshi ;
Kawakami, Keisuke ;
Kamiya, Nobuo ;
Tian, Lirong ;
Han, Guangye ;
Kuang, Tingyun ;
Liu, Zheyi ;
Wang, Fangjun ;
Zou, Hanfa ;
Enami, Isao ;
Miyano, Masashi ;
Shen, Jian-Ren .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2016, 291 (11) :5676-5687
[2]   ConSurf 2016: an improved methodology to estimate and visualize evolutionary conservation in macromolecules [J].
Ashkenazy, Haim ;
Abadi, Shiran ;
Martz, Eric ;
Chay, Ofer ;
Mayrose, Itay ;
Pupko, Tal ;
Ben-Tal, Nir .
NUCLEIC ACIDS RESEARCH, 2016, 44 (W1) :W344-W350
[3]   Structural Basis of Cyanobacterial Photosystem II Inhibition by the Herbicide Terbutryn [J].
Broser, Matthias ;
Gloeckner, Carina ;
Gabdulkhakov, Azat ;
Guskov, Albert ;
Buchta, Joachim ;
Kern, Jan ;
Mueh, Frank ;
Dau, Holger ;
Saenger, Wolfram ;
Zouni, Athina .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (18) :15964-15972
[4]   POLY(ETHYLENE) GLYCOL MONOMETHYL ETHERS - AN ALTERNATIVE TO POLY(ETHYLENE) GLYCOLS IN PROTEIN CRYSTALLIZATION [J].
BRZOZOWSKI, AM ;
TOLLEY, SP .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1994, 50 :466-468
[5]   Mechanism of Water Delivery to the Active Site of Photosystem II along the S2 to S3 Transition [J].
Capone, Matteo ;
Narzi, Daniele ;
Bovi, Daniele ;
Guidoni, Leonardo .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2016, 7 (03) :592-596
[6]   X-Ray Free-Electron Lasers for the Structure and Dynamics of Macromolecules [J].
Chapman, Henry N. .
ANNUAL REVIEW OF BIOCHEMISTRY, VOL 88, 2019, 88 :35-58
[7]   CAVER 3.0: A Tool for the Analysis of Transport Pathways in Dynamic Protein Structures [J].
Chovancova, Eva ;
Pavelka, Antonin ;
Benes, Petr ;
Strnad, Ondrej ;
Brezovsky, Jan ;
Kozlikova, Barbora ;
Gora, Artur ;
Sustr, Vilem ;
Klvana, Martin ;
Medek, Petr ;
Biedermannova, Lada ;
Sochor, Jiri ;
Damborsky, Jiri .
PLOS COMPUTATIONAL BIOLOGY, 2012, 8 (10)
[8]   Reflections on substrate water and dioxygen formation [J].
Cox, Nicholas ;
Messinger, Johannes .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2013, 1827 (8-9) :1020-1030
[9]   Analysis of the structure of the PsbO protein and its implications [J].
De Las Rivas, J ;
Barber, J .
PHOTOSYNTHESIS RESEARCH, 2004, 81 (03) :329-343
[10]   The exchange of the fast substrate water in the S2 state of photosystem II is limited by diffusion of bulk water through channels - implications for the water oxidation mechanism [J].
de Lichtenberg, Casper ;
Kim, Christopher J. ;
Chernev, Petko ;
Debus, Richard J. ;
Messinger, Johannes .
CHEMICAL SCIENCE, 2021, 12 (38) :12763-12775