In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by the oxygen-evolving complex (OEC) in photosystem II (PS II). Recently, we reported the room-temperature structures of PS II in the four (semi)stable S-states, S1, S2, S3, and S0, showing that a water molecule is inserted during the S2 -> S3 transition, as a new bridging O(H)-ligand between Mn1 and Ca. To understand the sequence of events leading to the formation of this last stable intermediate state before O2 formation, we recorded diffraction and Mn X-ray emission spectroscopy (XES) data at several time points during the S2 -> S3 transition. At the electron acceptor site, changes due to the two-electron redox chemistry at the quinones, ...
Photosynthetic water oxidation, where water is oxidized to dioxygen, is a fundamental chemical react...
Photosynthetic water oxidation, where water is oxidized to dioxygen, is a fundamental chemical react...
The mechanism for photosynthetic O2 evolution by photosystem II is currently a topic of intense deba...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
Recently two atomic resolution crystal structures of Photosystem II, in the double flashed, nominal ...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
Photosystem II (PS II), found in oxygenic photosynthetic organisms, catalyses the most energetically...
Photosynthetic water oxidation, where water is oxidized to dioxygen, is a fundamental chemical react...
Photosynthetic water oxidation, where water is oxidized to dioxygen, is a fundamental chemical react...
The mechanism for photosynthetic O2 evolution by photosystem II is currently a topic of intense deba...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
Recently two atomic resolution crystal structures of Photosystem II, in the double flashed, nominal ...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
Photosystem II (PS II), found in oxygenic photosynthetic organisms, catalyses the most energetically...
Photosynthetic water oxidation, where water is oxidized to dioxygen, is a fundamental chemical react...
Photosynthetic water oxidation, where water is oxidized to dioxygen, is a fundamental chemical react...
The mechanism for photosynthetic O2 evolution by photosystem II is currently a topic of intense deba...