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Sandbox 50
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== Colipase Binding == | == Colipase Binding == | ||
When bile salts accumulate at the liid/water interface, adsoprtion of the enzyme on its substrates is prohibited. In order to overcome this inhibitory effect, colipase binds to HPL and anchors lipase at the interface coated with bile salts.<ref>http://onlinelibrary.wiley.com/doi/10.1111/j.1432-1033.1992.tb16926.x/pdf</ref> | When bile salts accumulate at the liid/water interface, adsoprtion of the enzyme on its substrates is prohibited. In order to overcome this inhibitory effect, colipase binds to HPL and anchors lipase at the interface coated with bile salts.<ref>http://onlinelibrary.wiley.com/doi/10.1111/j.1432-1033.1992.tb16926.x/pdf</ref> | ||
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When bound to colipase,HPL exists in its active, <scene name='Sandbox_50/Colipase_binding/1'>open configuration</scene>.<ref>http://www.pdb.org/pdb/explore/explore.do?structureId=1ETH</ref> Here chains A and C (blue and pink) are the chians from the original HPL protein, and chains B and D (green and yellow) are colipase peptides. | When bound to colipase,HPL exists in its active, <scene name='Sandbox_50/Colipase_binding/1'>open configuration</scene>.<ref>http://www.pdb.org/pdb/explore/explore.do?structureId=1ETH</ref> Here chains A and C (blue and pink) are the chians from the original HPL protein, and chains B and D (green and yellow) are colipase peptides. | ||
| + | Rate studies show that the disassociation constant of the lipase-colipase complex is 101.1 10−9 M. When the substrate is absent, the disassociation constant increases by several orders, indicating that disassociation of colipase from lipase increases when no substrates are present. These studies confirm that pancreatic lipase has many highly conserved residues, as horse, ox, pig, rat, dog, and chicken colipases all can activate HPL and have similar disassociation constants. | ||
Revision as of 19:50, 14 November 2011
| Please do NOT make changes to this Sandbox. Sandboxes 30-60 are reserved for use by Biochemistry 410 & 412 at Messiah College taught by Dr. Hannah Tims during Fall 2012 and Spring 2013. |
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