Sandbox Reserved 1600: Difference between revisions

From Proteopedia
Jump to navigationJump to search
No edit summary
No edit summary
Line 10: Line 10:
Cytochrome bd oxidase plays a key role in protecting [https://en.wikipedia.org/wiki/Gram-negative_bacteria gram-negative bacteria], more specifically [https://en.wikipedia.org/wiki/Heterotroph heterotrophs], from high oxidative stress (ie. preventing free radicals in intracellular space in prokaryotes). <ref name=”Jünemann”>PMID:9332500</ref> Other organisms, like humans, have mechanisms that do the same thing but are more intricate due to the organism’s higher levels of complexity.  
Cytochrome bd oxidase plays a key role in protecting [https://en.wikipedia.org/wiki/Gram-negative_bacteria gram-negative bacteria], more specifically [https://en.wikipedia.org/wiki/Heterotroph heterotrophs], from high oxidative stress (ie. preventing free radicals in intracellular space in prokaryotes). <ref name=”Jünemann”>PMID:9332500</ref> Other organisms, like humans, have mechanisms that do the same thing but are more intricate due to the organism’s higher levels of complexity.  


The ''Geobacillus thermodenitrificans'' organism utilizes the bd oxidase mechanism. The oxygen enters the enzyme through the selective <scene name='83/832926/Potential_oxygen_entry_site/1'>oxygen entry site</scene> that funnels the extracellular oxygen to <scene name='83/838655/Bd_oxidase_heme_d/1'>Heme D</scene> in the active site. The electrons for the reaction are provided by ubiquinone molecule bound to the <scene name='83/838655/Bdoxidase_q_loop/2'>Q loop</scene>. The protons for the reaction are provided by one of two <scene name='83/838655/Bdoxidase_proton_pathways/1'>potential proton pathways</scene>, either the <scene name='83/838655/Bdoxidase_cyda_pathway/6'>CydA pathway</scene>or <scene name='83/838655/Bdoxidase_cydb_pathway/3'>CydB pathway</scene>. Both of the proton pathways utilize the intracellular water molecules for the proton source, and shuttle them to <scene name='83/838655/Bd_oxidase_heme_b_595/1'>Heme B595</scene>.
The ''Geobacillus thermodenitrificans'' is a facultative aerobic thermophilic bacterium that utilizes the bd oxidase mechanism. The oxygen enters the enzyme through the selective <scene name='83/832926/Potential_oxygen_entry_site/1'>oxygen entry site</scene> that funnels the extracellular oxygen to <scene name='83/838655/Bd_oxidase_heme_d/1'>Heme D</scene> in the active site. The electrons for the reaction are provided by ubiquinone molecule bound to the <scene name='83/838655/Bdoxidase_q_loop/2'>Q loop</scene>. The protons for the reaction are provided by one of two <scene name='83/838655/Bdoxidase_proton_pathways/1'>potential proton pathways</scene>, either the <scene name='83/838655/Bdoxidase_cyda_pathway/6'>CydA pathway</scene>or <scene name='83/838655/Bdoxidase_cydb_pathway/3'>CydB pathway</scene>. Both of the proton pathways utilize the intracellular water molecules for the proton source, and shuttle them to <scene name='83/838655/Bd_oxidase_heme_b_595/1'>Heme B595</scene>.


= Biological Importance of Reducing O₂ =
= Biological Importance of Reducing O₂ =

Revision as of 19:03, 20 April 2020

bd oxidase; Geobacillus thermodenitrificans

bd oxidase (PDB: 5doq)

Drag the structure with the mouse to rotate

References


Student Contributors

Emma H Harris

Carson E Middlebrook