Sandbox 50

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<scene name='Sandbox_50/N_and_c_terminus/1'>two well defined domains</scene>. The N-terminal domain is shown in blue and the C terminal domain is shown in green. The N terminal domain is characterized by an expected alpha/beta hydrolase fold, while the C terminal domain contains a beta sheet sandwich that is involved in colipase binding. The active site of HPL is highlighted in red to show its location in the N terminal domain of the A chain. Additionally, the <scene name='Sandbox_50/Aa_types/1'>charge distribution</scene> can be seen here where negatively charged amino acid residues are seen in red, and positively charged amino acids are seen in blue.
<scene name='Sandbox_50/N_and_c_terminus/1'>two well defined domains</scene>. The N-terminal domain is shown in blue and the C terminal domain is shown in green. The N terminal domain is characterized by an expected alpha/beta hydrolase fold, while the C terminal domain contains a beta sheet sandwich that is involved in colipase binding. The active site of HPL is highlighted in red to show its location in the N terminal domain of the A chain. Additionally, the <scene name='Sandbox_50/Aa_types/1'>charge distribution</scene> can be seen here where negatively charged amino acid residues are seen in red, and positively charged amino acids are seen in blue.
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The <scene name='Sandbox_50/Helix/2'>secondary structure</scene> of HPL contains 13 alpha helices and 28 strands of beta sheets, representing 22% and 30%, respectively, of the protein's residues. Hydrophic collapse contributes to much of the secondary and tertiary structures, as the
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The <scene name='Sandbox_50/Helix/2'>secondary structure</scene> of HPL contains 13 alpha helices and 28 strands of beta sheets, representing 22% and 30%, respectively, of the protein's residues. Hydrophic collapse contributes to much of the secondary and tertiary structures, as the <scene name='Sandbox_50/Hphobic_residues/2'>hydrophobic residues</scene> shown in grey are mostly facing towards the interior of the protein. Conversely, the <scene name='Sandbox_50/Polar_residues/2'>polar residues</scene> in pink point congregate more on the exterior and point outwards.
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<scene name='Sandbox_50/Hphobic_residues/2'>hydrophobic residues</scene> shown in grey are mostly facing towards the interior of the protein. Conversely, the <scene name='Sandbox_50/Polar_residues/2'>polar residues</scene> in pink point congregate more on the exterior and point outwards.
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Additional tertiary stability is provided by <scene name='Sandbox_50/Disulfide_bonds/1'>disulfide bonds</scene> between cysteine residues shown in yellow linkages. Cysteine residues not involved in disulfide bonds are shown as spheres.
Additional tertiary stability is provided by <scene name='Sandbox_50/Disulfide_bonds/1'>disulfide bonds</scene> between cysteine residues shown in yellow linkages. Cysteine residues not involved in disulfide bonds are shown as spheres.

Revision as of 20:13, 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.

Structure of Horse Pancreatic Lipase (PDB entry 1hpl)

Drag the structure with the mouse to rotate
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