Sandbox Wabash 14 Fumarase
From Proteopedia
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From running this experiment, the researchers determined no significant difference between the specific activity of the wild-type fumarase (116.2 +/- 14.0 µ/mg) and the <scene name='72/726381/Asn_129/1'>H129N</scene> mutant (143.7 +/- 10.0 µ/mg). Conversely, the <scene name='72/726381/Asn_188/1'>H188N</scene> mutant displayed a sharp drop in specific activity (0.55 +/- 0.044 µ/mg). Because the H188N mutant had such a drastic impact on specific activity, it now seems clear that site A is the active site. | From running this experiment, the researchers determined no significant difference between the specific activity of the wild-type fumarase (116.2 +/- 14.0 µ/mg) and the <scene name='72/726381/Asn_129/1'>H129N</scene> mutant (143.7 +/- 10.0 µ/mg). Conversely, the <scene name='72/726381/Asn_188/1'>H188N</scene> mutant displayed a sharp drop in specific activity (0.55 +/- 0.044 µ/mg). Because the H188N mutant had such a drastic impact on specific activity, it now seems clear that site A is the active site. | ||
- | In the active site of fumarase, there are several important residues; that being said, the most vital are a water molecule <scene name='72/726381/H2o_and_his_188/ | + | In the active site of fumarase, there are several important residues; that being said, the most vital are a water molecule <scene name='72/726381/H2o_and_his_188/2'>(W-26) and H188</scene>, which act as the 2 aforementioned bases. The presence of H188, which participates in a short hydrogen bond with W-26, makes the water a stronger base. As a result, the water gets protonated by the C3 of the substrate, L-malate. When W-26 is protonated, it is more able to stabilize the double-negative charge on the aci-carboxylate at the C4 along with several other residues in the active site such as H188, T187, N141, N326, and K324. By stabilizing the reaction intermediate as such, fumarase is an effective enzyme catalyst. That being said, it is worth noting that the enzyme still functioned at a minimal rate in the absence of H188. This is likely because in the proposed mechanism, W-26 would still be able to protonate C3 of the substrate in the absence of H188, although it would be less favorable. As a result, W-26 seems to be the more important of the two bases involved. |
==References== | ==References== | ||
<references/> | <references/> |
Revision as of 18:58, 29 February 2016
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