Sandbox 40

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Introduction <StructureSection load='1hpl' size='500' side='right' caption='Structure of Horse Pancreatic Lipase (PDB entry [[1hpl]])' scene=''>Lipase, as its name suggests, is an enzyme responsible for the cleavage of types of lipid molecules. There are different types of lipases, many of which work in similar ways. For instance, Human Pancreatic Lipase, or HPL, splits triglycerides, the main lipids in the human diet, into glycerol and three fatty acids. The structure shown at right is that of Horse Pancreatic Lipase. It consists of two identical subunits, totaling 449 amino acids each.
Introduction <StructureSection load='1hpl' size='500' side='right' caption='Structure of Horse Pancreatic Lipase (PDB entry [[1hpl]])' scene=''>Lipase, as its name suggests, is an enzyme responsible for the cleavage of types of lipid molecules. There are different types of lipases, many of which work in similar ways. For instance, Human Pancreatic Lipase, or HPL, splits triglycerides, the main lipids in the human diet, into glycerol and three fatty acids. The structure shown at right is that of Horse Pancreatic Lipase. It consists of two identical subunits, totaling 449 amino acids each.
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The <scene name='Sandbox_40/Qm_lipase_secondary_structures/1'>secondary structures</scene> of lipase (just one subunit) include 102 residues which create 13 alpha helices, shown in black, and 139 residues involved in beta sheets totaling 28 strands, shown in red.
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The <scene name='Sandbox_40/Qm_lipase_secondary_structures/1'>secondary structures</scene> of lipase (just one subunit) include 102 residues which create 13 alpha helices, shown in black, and 139 residues involved in beta sheets totaling 28 strands, shown in red. Lipase of course consists of both
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<scene name='Sandbox_40/Lipase_qm/2'>TextToBeDisplayed</scene>
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<scene name='Sandbox_40/Lipase_qm/2'>polar and nonpolar residues</scene>. The polar residues in this scene are shown in a light blue shade, and the nonpolar are in a dark red. From this representation, it can be assumed that there is a higher quantity of polar residues than nonopolar.

Revision as of 01:46, 9 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 of Horse Pancreatic Lipase (PDB entry 1hpl)

Drag the structure with the mouse to rotate
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