Search Results - "Mayneord, Guy E."

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  1. 1

    Dynamic thylakoid stacking regulates the balance between linear and cyclic photosynthetic electron transfer by Wood, William H. J., MacGregor-Chatwin, Craig, Barnett, Samuel F. H., Mayneord, Guy E., Huang, Xia, Hobbs, Jamie K., Hunter, C. Neil, Johnson, Matthew P.

    Published in Nature plants (01-02-2018)
    “…Upon transition of plants from darkness to light the initiation of photosynthetic linear electron transfer (LET) from H 2 O to NADP + precedes the activation…”
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    Journal Article
  2. 2

    Cryo-EM structure of the spinach cytochrome b6 f complex at 3.6 Å resolution by Malone, Lorna A., Qian, Pu, Mayneord, Guy E., Hitchcock, Andrew, Farmer, David A., Thompson, Rebecca F., Swainsbury, David J. K., Ranson, Neil A., Hunter, C. Neil, Johnson, Matthew P.

    Published in Nature (London) (21-11-2019)
    “…The cytochrome b 6   f (cyt b 6   f  ) complex has a central role in oxygenic photosynthesis, linking electron transfer between photosystems I and II and…”
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    Journal Article
  3. 3

    Cryo-EM structure of the spinach cytochrome b 6  f complex at 3.6 Å resolution by Malone, Lorna A, Qian, Pu, Mayneord, Guy E, Hitchcock, Andrew, Farmer, David A, Thompson, Rebecca F, Swainsbury, David J K, Ranson, Neil A, Hunter, C Neil, Johnson, Matthew P

    Published in Nature (London) (21-11-2019)
    “…The cytochrome b  f (cytb  f ) complex has a central role in oxygenic photosynthesis, linking electron transfer between photosystems I and II and converting…”
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    Journal Article
  4. 4

    Author Correction: Dynamic thylakoid stacking regulates the balance between linear and cyclic photosynthetic electron transfer by Wood, William H. J., MacGregor-Chatwin, Craig, Barnett, Samuel F. H., Mayneord, Guy E., Huang, Xia, Hobbs, Jamie K., Hunter, C. Neil, Johnson, Matthew P.

    Published in Nature plants (01-06-2018)
    “…In the version of this Article originally published, the authors incorrectly labelled the timescale in Fig. 6b as milliseconds (ms) on the x axis and the…”
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    Journal Article
  5. 5
  6. 6

    Dissecting the cytochrome c 2 -reaction centre interaction in bacterial photosynthesis using single molecule force spectroscopy by Vasilev, Cvetelin, Mayneord, Guy E, Brindley, Amanda A, Johnson, Matthew P, Hunter, C Neil

    Published in Biochemical journal (09-08-2019)
    “…The reversible docking of small, diffusible redox proteins onto a membrane protein complex is a common feature of bacterial, mitochondrial and photosynthetic…”
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    Journal Article
  7. 7

    Single-molecule study of redox control involved in establishing the spinach plastocyanin-cytochrome b6f electron transfer complex by Mayneord, Guy E., Vasilev, Cvetelin, Malone, Lorna A., Swainsbury, David J.K., Hunter, C. Neil, Johnson, Matthew P.

    “…Small diffusible redox proteins play a ubiquitous role in bioenergetic systems, facilitating electron transfer (ET) between membrane bound complexes…”
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    Journal Article
  8. 8

    Cryo-EM structure of the spinach cytochrome b.sub.6 f complex at 3.6 A resolution by Malone, Lorna A, Qian, Pu, Mayneord, Guy E, Hitchcock, Andrew, Farmer, David A, Thompson, Rebecca F, Swainsbury, David J. K

    Published in Nature (London) (01-11-2019)
    “…The cytochrome b.sub.6 f (cytb.sub.6 f ) complex has a central role in oxygenic photosynthesis, linking electron transfer between photosystems I and II and…”
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    Journal Article
  9. 9
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  12. 12

    Investigating Electron Transfer Complexes Using Single Molecule Force Spectroscopy by Mayneord, Guy E

    Published 01-01-2019
    “…Small diffusible redox proteins play a ubiquitous role in facilitating electron transfer (ET) in respiration and photosynthesis by shuttling electrons between…”
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    Dissertation
  13. 13

    Single-molecule study of redox control involved in establishing the spinach plastocyanin-cytochrome b 6 f electron transfer complex by Mayneord, Guy E, Vasilev, Cvetelin, Malone, Lorna A, Swainsbury, David J K, Hunter, C Neil, Johnson, Matthew P

    “…Small diffusible redox proteins play a ubiquitous role in bioenergetic systems, facilitating electron transfer (ET) between membrane bound complexes…”
    Get full text
    Journal Article