Lipase: Difference between revisions

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The carbonyl reforms with the glycerol backbone segment acting as the leaving group (Reaction 2).   
The carbonyl reforms with the glycerol backbone segment acting as the leaving group (Reaction 2).   


[[Image:M0218.stg02.gif|center|]]
[[Image:M0218.stg02r.gif|center|]]
A water molecule then donates a proton to the histidine, creating a reactive hydroxyl anion. The hydroxyl anion can then attack the carbonyl carbon of the lipid, forming another negatively charged tetrahedral intermediate which is stabilized in the oxyanion hole (Reaction 3).   
A water molecule then donates a proton to the histidine, creating a reactive hydroxyl anion. The hydroxyl anion can then attack the carbonyl carbon of the lipid, forming another negatively charged tetrahedral intermediate which is stabilized in the oxyanion hole (Reaction 3).   



Revision as of 20:59, 21 July 2015

Structure of Pancreatic Lipase (PDB entry 1akn)

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3D Structures of Lipase

Updated on 21-July-2015

References