Sandbox Reserved 1705: Difference between revisions

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=== Ligand Binding===
=== Ligand Binding===
The ligands recognized by anaplastic lymphoma kinase are FAM150 in a monomeric fashion and <scene name='90/904310/Ligand/1'>AUG</scene> in a dimeric fashion. It's biologically preferred ligand is AUG, a 128 monomer peptide ligand. The binding of ALK to it's ligand results in homodimerization and a conformational change. Prior to the ligand binding to anaplastic lymphoma kinase, the extracellular domain is oriented vertically and perpendicularly to the plasma membrane. Once the ligand is <scene name='90/904310/Dimer_ligand_complex/3'>bound</scene>, ALK undergoes a conformational change and folds over so that the positively charged residues on the portion of the protein previously oriented vertically is now interacting with the negatively charged residues on the plasma membrane. The residues of ALK and it's ligand interact through the formation of <scene name='90/904310/Dimer-ligand-interface/4'>salt bridges</scene>. This conformational change via ligand binding induces the auto-activation of the kinase domain, in which the domains use the tyrosine phosphorylation mechanism to phosphorylate tyrosine residues on the opposite monomer. [[Image:ALK Conformational Change Gif.gif|850 px|left|thumb|Figure 2: Gif-image of the conformational change occurring in the extracellular region of Anaplastic Lymphoma Kinase once the AUG ligand has bound to the ligand binding site. This change is stabilized through contacts of the AUG and the plasma membrane. The video was made using stop motion animation techniques, then converted to gif format using EZgif.]]  
The ligands recognized by anaplastic lymphoma kinase are FAM150 in a monomeric fashion and <scene name='90/904310/Ligand/1'>AUG</scene> in a dimeric fashion. It's biologically preferred ligand is AUG, a 128 monomer peptide ligand. The binding of ALK to it's ligand results in homodimerization and a conformational change. Prior to the ligand binding to anaplastic lymphoma kinase, the extracellular domain is oriented vertically and perpendicularly to the plasma membrane (Step 1, Figure 2). Once the ligand is <scene name='90/904310/Dimer_ligand_complex/3'>bound</scene> (Step 2, Figure 2), ALK undergoes a conformational change and folds over so that the positively charged residues on the portion of the protein previously oriented vertically is now interacting with the negatively charged residues on the plasma membrane (Step 3, Figure 2). The residues of ALK and it's ligand interact through the formation of <scene name='90/904310/Dimer-ligand-interface/4'>salt bridges</scene>. It has been hypothesized that the GlyR region plays a role in the flexibility needed to complete the conformational change. This conformational change via ligand binding induces the auto-activation of the kinase domain, in which the domains use the tyrosine phosphorylation mechanism to phosphorylate tyrosine residues on the opposite monomer. [[Image:ALK Conformational Change Gif.gif|850 px|left|thumb|Figure 2: Gif-image of the conformational change occurring in the extracellular region of Anaplastic Lymphoma Kinase once the AUG ligand has bound to the ligand binding site. This change is stabilized through contacts of the AUG and the plasma membrane. The video was made using stop motion animation techniques, then converted to gif format using EZgif.]]  


==== Tyrosine Phosphorylation Mechanism ====
==== Tyrosine Phosphorylation Mechanism ====

Revision as of 15:09, 12 April 2022

This Sandbox is Reserved from February 28 through September 1, 2022 for use in the course CH462 Biochemistry II taught by R. Jeremy Johnson at the Butler University, Indianapolis, USA. This reservation includes Sandbox Reserved 1700 through Sandbox Reserved 1729.
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Anaplastic Lymphoma Kinase

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References


Student Contributors

  • Kaylin Todor
  • Rebekah White