Sandbox Reserved 1072
From Proteopedia
(Difference between revisions)
| Line 7: | Line 7: | ||
===Catalase Peroxidases=== | ===Catalase Peroxidases=== | ||
| - | Catalase-peroxidases are enzymes that degrade hydrogen peroxide. Catalase converts two equivalents of hydrogen peroxide into water and oxygen via a two-step reaction cycle in which H<sub>2</sub>0<sub>2</sub> alternately oxidizes and reduces the heme iron at the active site. Within peroxidases, oxidation of heme iron involves a H<sub>2</sub>0<sub>2</sub> molecules, similar to that in the catalase-catalyzed reaction. Reduction of the heme iron, however, involves hydrogen donors such as NADH, not a second H<sub>2</sub>0<sub>2</sub> molcule | + | Catalase-peroxidases are enzymes that degrade hydrogen peroxide. Catalase converts two equivalents of hydrogen peroxide into water and oxygen via a two-step reaction cycle in which H<sub>2</sub>0<sub>2</sub> alternately oxidizes and reduces the heme iron at the active site. Within peroxidases, oxidation of heme iron involves a H<sub>2</sub>0<sub>2</sub> molecules, similar to that in the catalase-catalyzed reaction. Reduction of the heme iron, however, involves hydrogen donors such as NADH, not a second H<sub>2</sub>0<sub>2</sub> molcule <ref name="three">PMID: 12172540</ref>. Catalase-Peroxidases that have been characterized are either homodimers or homotetramers and contain a single heme ''b'' cofactor at the active site. Usually, the primary struture of the subunit can be divided into two halves that have a high level of sequence similarity, most likely due to a gene duplication event. |
==Structure== | ==Structure== | ||
| Line 26: | Line 26: | ||
There are 6 conserved key active site residues that surround the <scene name='69/694238/Heme/2'>heme</scene>. These <scene name='69/694238/Active_site/2'>active site</scene> residues are Arg 104, Trp 107, His 108, His 270, Asp 381 <ref name="one"/>. | There are 6 conserved key active site residues that surround the <scene name='69/694238/Heme/2'>heme</scene>. These <scene name='69/694238/Active_site/2'>active site</scene> residues are Arg 104, Trp 107, His 108, His 270, Asp 381 <ref name="one"/>. | ||
| - | In ''hm''CP, which share 55% and 69% identity with ''mt''CP, the heme is buried inside ''Hm''CP-N, and substrate access to the active site is through a narrow channel that prevents access of a large substrate | + | In ''hm''CP, which share 55% and 69% identity with ''mt''CP, the heme is buried inside ''Hm''CP-N, and substrate access to the active site is through a narrow channel that prevents access of a large substrate <ref name="three"/>. The location of the binding site for [http://en.wikipedia.org/wiki/Isoniazid isoniazid (INH)] is located near the ''δ meso'' heme edge, about 3.8 Å away from the heme iron. This binding site is found within what is considered to be the usual substrate access channel of peroxidases. The reaction between INH and the enzyme must occur from interaction in a binding site intended for the natural substrate <ref name="two">PMID: 12628252</ref>. Asp 137 plays a key role in the activation and binding of INH. Asp 137 creates energetically favorable interactions due to its ability to make hydrogen-bond interactions between its carboxylic acid side chain and the pyridinyl N1 of INH. |
| Line 65: | Line 65: | ||
| - | 3) Yamada, Y.; Fujiwara, T.; Sato, T.; Igarashi, N.; Tanaka, N. The 2.0 Å crystal structure of catalase-peroxidase from ''Haloarcula marismortui'' ''Natur Structural Biol.'' '''2002''', ''9'', 691-695. | ||
4) Zhao, X.; Yu, H.; Yu, S.; Wang, F.; Sacchettini, J. C.; Magliozzo, R. S.; Hydrogen Peroxide-Mediated Isoniazid Activation Catalyzed by ''Mycobacterium tuberculosis'' Catalase-Peroxidase (KatG) and Its S315T Mutant. ''Biochemistry.'' '''2006,''' ''45'', 4131-4140. | 4) Zhao, X.; Yu, H.; Yu, S.; Wang, F.; Sacchettini, J. C.; Magliozzo, R. S.; Hydrogen Peroxide-Mediated Isoniazid Activation Catalyzed by ''Mycobacterium tuberculosis'' Catalase-Peroxidase (KatG) and Its S315T Mutant. ''Biochemistry.'' '''2006,''' ''45'', 4131-4140. | ||
Revision as of 13:47, 14 April 2015
| This Sandbox is Reserved from 02/09/2015, through 05/31/2016 for use in the course "CH462: Biochemistry 2" taught by Geoffrey C. Hoops at the Butler University. This reservation includes Sandbox Reserved 1051 through Sandbox Reserved 1080. |
To get started:
More help: Help:Editing |
| |||||||||||
