<codeBook xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xsi:schemaLocation="ddi:codebook:2_5 http://www.ddialliance.org/Specification/DDI-Codebook/2.5/XMLSchema/codebook.xsd" xmlns="ddi:codebook:2_5">
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      <titlStmt>
        <titl xml:lang="sv">Data on the manganese cluster's oxidation state via photoactivation of photosystem II microcrystals</titl>
        <parTitl xml:lang="en">Data on the manganese cluster's oxidation state via photoactivation of photosystem II microcrystals</parTitl>
        <IDNo agency="SND">2024-277-1</IDNo>
        <IDNo agency="DOI">https://doi.org/10.57804/j2cm-4298</IDNo>
      </titlStmt>
      <prodStmt>
        <producer xml:lang="en" abbr="SND">Swedish National Data Service</producer>
        <producer xml:lang="sv" abbr="SND">Svensk nationell datatjänst</producer>
      </prodStmt>
      <holdings URI="https://doi.org/10.57804/j2cm-4298">Landing page</holdings>
    </citation>
  </docDscr>
  <stdyDscr>
    <citation>
      <titlStmt>
        <titl xml:lang="sv">Data on the manganese cluster's oxidation state via photoactivation of photosystem II microcrystals</titl>
        <parTitl xml:lang="en">Data on the manganese cluster's oxidation state via photoactivation of photosystem II microcrystals</parTitl>
        <IDNo agency="SND">2024-277-1</IDNo>
        <IDNo agency="DOI">https://doi.org/10.57804/j2cm-4298</IDNo>
        <IDNo agency="DOI">10.1073/pnas.1915879117</IDNo>
      </titlStmt>
      <rspStmt>
        <AuthEnty xml:lang="en" affiliation="Uppsala University">Cheah, Mun Hon</AuthEnty>
        <AuthEnty xml:lang="sv" affiliation="Uppsala universitet">Cheah, Mun Hon</AuthEnty>
      </rspStmt>
      <prodStmt />
      <distStmt>
        <distrbtr xml:lang="en" abbr="SND" URI="https://snd.se">Swedish National Data Service</distrbtr>
        <distrbtr xml:lang="sv" abbr="SND" URI="https://snd.se">Svensk nationell datatjänst</distrbtr>
        <distDate xml:lang="en" date="2019-11-07" />
      </distStmt>
      <verStmt>
        <version elementVersion="1" elementVersionDate="2019-11-07" />
      </verStmt>
      <holdings URI="https://doi.org/10.57804/j2cm-4298">Landing page</holdings>
    </citation>
    <stdyInfo>
      <subject>
        <keyword xml:lang="en" vocab="YSO" vocabURI="http://www.yso.fi/onto/yso/p3658">chemical reactions</keyword>
        <keyword xml:lang="sv" vocab="YSO" vocabURI="http://www.yso.fi/onto/yso/p3658">kemiska reaktioner</keyword>
        <keyword xml:lang="en" vocab="YSO" vocabURI="http://www.yso.fi/onto/yso/p1635">manganese</keyword>
        <keyword xml:lang="sv" vocab="YSO" vocabURI="http://www.yso.fi/onto/yso/p1635">mangan</keyword>
      </subject>
      <abstract xml:lang="en" contentType="abstract">Knowledge of the manganese oxidation states of the oxygen-evolving Mn4CaO5 cluster in photosystem II (PSII) is crucial toward understanding the mechanism of biological water oxidation. There is a 4 decade long debate on this topic that historically originates from the observation of a multiline electron paramagnetic resonance (EPR) signal with effective total spin of S = 1/2 in the singly oxidized S2 state of this cluster. This signal implies an overall oxidation state of either Mn(III)3Mn(IV) or Mn(III)Mn(IV)3 for the S2 state. These 2 competing assignments are commonly known as "low oxidation (LO)" and "high oxidation (HO)" models of the Mn4CaO5 cluster. Recent advanced EPR and Mn K-edge X-ray spectroscopy studies converge upon the HO model. However, doubts about these assignments have been voiced, fueled especially by studies counting the number of flash-driven electron removals required for the assembly of an active Mn4CaO5 cluster starting from Mn(II) and Mn-free PSII. This process, known as photoactivation, appeared to support the LO model since the first oxygen is reported to evolve already after 7 flashes. In this study, we improved the quantum yield and sensitivity of the photoactivation experiment by employing PSII microcrystals that retained all protein subunits after complete manganese removal and by oxygen detection via a custom built thin-layer cell connected to a membrane inlet mass spectrometer. We demonstrate that 9 flashes by a nanosecond laser are required for the production of the first oxygen, which proves that the HO model provides the correct description of the Mn4CaO5 cluster's oxidation states. 

The dataset was originally published in DiVA and moved to SND in 2024.</abstract>
      <abstract xml:lang="sv" contentType="abstract">Se engelsk version av denna katalogpost för information om studien vilken datasetet relaterar till.

Datasetet har ursprungligen publicerats i DiVA och flyttades över till SND 2024.</abstract>
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    <method>
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    </method>
    <dataAccs>
      <useStmt>
        <restrctn xml:lang="en">Access to data through SND. Data are freely accessible.</restrctn>
        <restrctn xml:lang="sv">Åtkomst till data via SND. Data är fritt tillgängliga.</restrctn>
        <conditions elementVersion="info:eu-repo-Access-Terms vocabulary">openAccess</conditions>
      </useStmt>
    </dataAccs>
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    </othrStdyMat>
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