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On the nature of organic and inorganic centers that bifurcate electrons, coupling exergonic and endergonic oxidation-reduction reactions.

Publication ,  Journal Article
Peters, JW; Beratan, DN; Schut, GJ; Adams, MWW
Published in: Chemical communications (Cambridge, England)
April 2018

Bifurcating electrons to couple endergonic and exergonic electron-transfer reactions has been shown to have a key role in energy conserving redox enzymes. Bifurcating enzymes require a redox center that is capable of directing electron transport along two spatially separate pathways. Research into the nature of electron bifurcating sites indicates that one of the keys is the formation of a low potential oxidation state to satisfy the energetics required of the endergonic half reaction, indicating that any redox center (organic or inorganic) that can exist in multiple oxidation states with sufficiently separated redox potentials should be capable of electron bifurcation. In this Feature Article, we explore a paradigm for bifurcating electrons down independent high and low potential pathways, and describe redox cofactors that have been demonstrated or implicated in driving this unique biochemistry.

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Published In

Chemical communications (Cambridge, England)

DOI

EISSN

1364-548X

ISSN

1359-7345

Publication Date

April 2018

Volume

54

Issue

33

Start / End Page

4091 / 4099

Related Subject Headings

  • Organic Chemistry
  • 40 Engineering
  • 34 Chemical sciences
  • 03 Chemical Sciences
 

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Peters, J. W., Beratan, D. N., Schut, G. J., & Adams, M. W. W. (2018). On the nature of organic and inorganic centers that bifurcate electrons, coupling exergonic and endergonic oxidation-reduction reactions. Chemical Communications (Cambridge, England), 54(33), 4091–4099. https://doi.org/10.1039/c8cc01530a
Peters, John W., David N. Beratan, Gerrit J. Schut, and Michael W. W. Adams. “On the nature of organic and inorganic centers that bifurcate electrons, coupling exergonic and endergonic oxidation-reduction reactions.Chemical Communications (Cambridge, England) 54, no. 33 (April 2018): 4091–99. https://doi.org/10.1039/c8cc01530a.
Peters JW, Beratan DN, Schut GJ, Adams MWW. On the nature of organic and inorganic centers that bifurcate electrons, coupling exergonic and endergonic oxidation-reduction reactions. Chemical communications (Cambridge, England). 2018 Apr;54(33):4091–9.
Peters, John W., et al. “On the nature of organic and inorganic centers that bifurcate electrons, coupling exergonic and endergonic oxidation-reduction reactions.Chemical Communications (Cambridge, England), vol. 54, no. 33, Apr. 2018, pp. 4091–99. Epmc, doi:10.1039/c8cc01530a.
Peters JW, Beratan DN, Schut GJ, Adams MWW. On the nature of organic and inorganic centers that bifurcate electrons, coupling exergonic and endergonic oxidation-reduction reactions. Chemical communications (Cambridge, England). 2018 Apr;54(33):4091–4099.
Journal cover image

Published In

Chemical communications (Cambridge, England)

DOI

EISSN

1364-548X

ISSN

1359-7345

Publication Date

April 2018

Volume

54

Issue

33

Start / End Page

4091 / 4099

Related Subject Headings

  • Organic Chemistry
  • 40 Engineering
  • 34 Chemical sciences
  • 03 Chemical Sciences