Sandbox 48

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Lipase has one Metal ion, <scene name='Sandbox_48/Lipase_interactions_with_ca/1'>Ca</scene>, with which it associates. The residues that associate with this calcium ion are indicated with a yellow halos. This ion is too far away from the active site to be a part of catalysis. No absolute requirement for Calcium has been found, but it is conserved faithfully in both horse and human papain, so it is likely in all of these types of enzymes. The shape of the calcium binding site is distorted pentagonal bipyramidal as it interactw with main chain O atoms of Glu187 and Arg190, a side chain O atom of Asp192, and both side chain O atoms of Asp195, as shown.
Lipase has one Metal ion, <scene name='Sandbox_48/Lipase_interactions_with_ca/1'>Ca</scene>, with which it associates. The residues that associate with this calcium ion are indicated with a yellow halos. This ion is too far away from the active site to be a part of catalysis. No absolute requirement for Calcium has been found, but it is conserved faithfully in both horse and human papain, so it is likely in all of these types of enzymes. The shape of the calcium binding site is distorted pentagonal bipyramidal as it interactw with main chain O atoms of Glu187 and Arg190, a side chain O atom of Asp192, and both side chain O atoms of Asp195, as shown.
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Lipase can be complexed with <scene name='Sandbox_48/Lipase_w_inhibitor_c11_alkyl_p/2'>the inhibitor C11 alkyl phosphonate</scene> and have hydrogen bonded with <scene name='Sandbox_48/Lipase_w_inhibitor_c11_contact/1'>these residues</scene>.
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Lipase can be complexed with <scene name='Sandbox_48/Lipase_w_inhibitor_c11_alkyl_p/2'>the inhibitor C11 alkyl phosphonate</scene> and have hydrogen bonded with <scene name='Sandbox_48/Lipase_w_inhibitor_c11_contact/1'>these residues</scene>. Here lipase is pictured with colipase and its covalent inhibitor, C11 alkyl phosphonate. It fits in a hydrophobic groove to mimic that of the true substrate of lipase, triglycerides. Some are trying to find drugs that inhibit lipase in order to combat obesity. Although this inhibitor is not necessarily a candidate, its structure has aided researchers in developing a true inhibitor.
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Bourne, Y; Martinez, C; Kerfelec, B; Lombardo, D; Chapus, C; Cambillau, C. ''Horse pancreatic lipase. The crystal structure refined at 2.3 A resolution''. J Mol Biol. 1994 May 20;238(5):709-32.
Bourne, Y; Martinez, C; Kerfelec, B; Lombardo, D; Chapus, C; Cambillau, C. ''Horse pancreatic lipase. The crystal structure refined at 2.3 A resolution''. J Mol Biol. 1994 May 20;238(5):709-32.
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Egloff, MP; Marguet, F; Buono, G; Verger, R; Cambillau, C; van Tilbeurgh, H. ''The 2.46 A resolution structure of the pancreatic lipase-colipase complex inhibited by a C11 alkyl phosphonate''. Biochemistry. 1995 Mar 7;34(9):2751-62.
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</StructureSection>
</StructureSection>

Revision as of 05:26, 13 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.

Introduction

Structure (PDB entry 1hpl)

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