Sandbox Reserved 1694: Difference between revisions

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== Important amino acids==
== Important amino acids==
 
[[Image:DPIDxT.png | thumb]]
INPP1D54A does not have a catalytic triad though it has six important <scene name='89/892737/Catalytic_amino_acids/1'>catalytic amino acids</scene> (D54, E80, E79, D153, D317, T158) that promote catalysis in the reaction along with the metal ions that helped the protein function. These amino acids hold the metal ions in place and metal ions hold on to the water and substrate. Thr158 is a very important catalytic amino acid because it is going to do a nucleophilic attack on the water molecule (shown in the picture on the right) which will result in a cascade of other reactions to happen (series of bonds breaking and being made) eventually leading to a phosphate leaving group. Hence, why the function of the enzyme is to remove a phosphate group. Also, lithium is an uncompetitive inhibitor for this protein and when it binds to a metal site (metal site 3 in the lower image B) it causes the protein not to function properly.
INPP1D54A does not have a catalytic triad though it has six important <scene name='89/892737/Catalytic_amino_acids/1'>catalytic amino acids</scene> (D54, E80, E79, D153, D317, T158) that promote catalysis in the reaction along with the metal ions that helped the protein function. These amino acids hold the metal ions in place and metal ions hold on to the water and substrate. Thr158 is a very important catalytic amino acid because it is going to do a nucleophilic attack on the water molecule (shown in the picture on the right) which will result in a cascade of other reactions to happen (series of bonds breaking and being made) eventually leading to a phosphate leaving group. Hence, why the function of the enzyme is to remove a phosphate group. Also, lithium is an uncompetitive inhibitor for this protein and when it binds to a metal site (metal site 3 in the lower image B) it causes the protein not to function properly.



Revision as of 14:57, 9 December 2021

This Sandbox is Reserved from 10/01/2021 through 01/01//2022 for use in Biochemistry taught by Bonnie Hall at Grand View University, Des Moines, USA. This reservation includes Sandbox Reserved 1690 through Sandbox Reserved 1699.
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Inositol polyphosphate 1-Phosphatase (INPP1) D54A

Inositol Polyphosphate 1-Phosphatase structure (INPP1) D54A mutant in complex with inositol (1,4)-bisphosphate

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References