Sandbox Reserved 1600: Difference between revisions

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==Electron Source==
==Electron Source==


An electron source is needed in order for the redox reaction of O₂ to occur. Cytochrome bd oxidase uses the quinol molecule ubiquinone as an electron donor. The chemical structure of ubiquinone is shown in Fig. 2. [[Image:Ubiquinone.jpg|200 px|right|thumb|Figure 2. Chemical structure of ubiquinone.]] As shown in the overall <scene name='83/838655/Bdoxidase_qloop/1'>structure</scene>, the <scene name='83/838655/Bdoxidase_q_loop/2'>Q loop</scene> is on the extracellular surface and provides a binding site for ubiquinone <ref name = ”Safarian” />. As mentioned in the Active Site section, Heme <scene name='83/838655/Bdoxidase_qloop_zoom/2'>B558</scene> is closest in proximity to the Q loop and thus is the suggested electron acceptor. This suggestion is further supported by the conservation of Trp374 (Fig. 1) often found as intermediate electron receptors in biological electron transfer chains <ref name =”Safarian” />.   
An electron source is needed in order for the redox reaction of O₂ to occur. Cytochrome bd oxidase uses the quinol molecule ubiquinone as an electron donor. The chemical structure of ubiquinone is shown in Fig. 2. [[Image:Ubiquinone.jpg|200 px|right|thumb|Figure 2. Chemical structure of ubiquinone.]] As shown in the overall <scene name='83/838655/Bdoxidase_qloop/1'>structure</scene>, the <scene name='83/838655/Bdoxidase_q_loop/2'>Q loop</scene> is on the extracellular surface and provides a binding site for ubiquinone <ref name = ”Safarian” />. As mentioned in the Active Site section, Heme <scene name='83/838655/Bdoxidase_qloop_zoom/2'>B558</scene> is closest in proximity to the Q loop and thus is the suggested electron acceptor. This suggestion is further supported by the conservation of <scene name='83/838655/Trp374/1'>Trp374</scene> often found as intermediate electron receptors in biological electron transfer chains <ref name =”Safarian” />.   


==Potential Proton Pathways==
==Potential Proton Pathways==

Revision as of 18:16, 17 April 2020

bd oxidase; Geobacillus thermodenitrificans

bd oxidase 5DOQ

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References


Student Contributors

Emma H Harris

Carson E Middlebrook