Sandbox Reserved 1705: Difference between revisions

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==== Tyrosine Phosphorylation Mechanism ====
==== Tyrosine Phosphorylation Mechanism ====
[[Image:ALK_Tyrosine_Phosphorylation.png|350 px|left|thumb|Figure 4. Tyrosine phosphorylation mechanism]]
[[Image:ALK_Tyrosine_Phosphorylation.png|350 px|left|thumb|Figure 4. Tyrosine phosphorylation mechanism]]


Dimerization of anaplastic lymphoma kinase activates the  <scene name='90/904309/Kinase_domain/2'>kinase domain</scene> of each monomer <ref name="Li">PMID:34819665</ref>. Next, the kinase domains phosphorylate the [https://en.wikipedia.org/wiki/Tyrosine_phosphorylation tyrosine residues] (Y1278, Y1282, and Y1283 <ref name="Hallberg">PMID:24060861</ref>) of the opposite monomer using the hydrolysis of ATP into ADP and Pi <ref name="Munck">PMID:34646012</ref>. These phosphorylated tyrosine residues recruit signal proteins via phosphorylation mechanisms similar to that of the IR. These signal proteins start signaling cascades through various signal pathways including the ERK, JAK, and PI3K pathways. These pathways signal for cell proliferation and survival (ex: begin transcription). The mechanism of tyrosine phosphorylation is a key step in the signal activation, transduction, and regulation of ALK enzymatic activity. This mechanism is similar to Class II RTKs, used by the IR in insulin signal activation and transduction. Mutations in catalytic tyrosine residues leads to non-functional ALK <ref name="Huang">PMID: 30400214</ref>. In the absence of a bound ligand, it is proposed that the kinase domain of ALK is instead cleaved by Caspase 3 (Casp 3,) which subsequently induces apoptosis <ref name="Palmer">PMID: 19459784</ref>.
Dimerization of anaplastic lymphoma kinase activates the  <scene name='90/904309/Kinase_domain/2'>kinase domain</scene> of each monomer <ref name="Li">PMID:34819665</ref>. Next, the kinase domains phosphorylate the [https://en.wikipedia.org/wiki/Tyrosine_phosphorylation tyrosine residues] (Y1278, Y1282, and Y1283 <ref name="Hallberg">PMID:24060861</ref>) of the opposite monomer using the hydrolysis of ATP into ADP and Pi <ref name="Munck">PMID:34646012</ref>. These phosphorylated tyrosine residues recruit signal proteins via phosphorylation mechanisms similar to that of the IR. These signal proteins start signaling cascades through various signal pathways including the ERK, JAK, and PI3K pathways. These pathways signal for cell proliferation and survival (ex: begin transcription). The mechanism of tyrosine phosphorylation is a key step in the signal activation, transduction, and regulation of ALK enzymatic activity. This mechanism is similar to Class II RTKs, used by the IR in insulin signal activation and transduction. Mutations in catalytic tyrosine residues leads to non-functional ALK <ref name="Huang">PMID: 30400214</ref>. In the absence of a bound ligand, it is proposed that the kinase domain of ALK is instead cleaved by Caspase 3 (Casp 3,) which subsequently induces apoptosis <ref name="Palmer">PMID: 19459784</ref>.





Latest revision as of 01:13, 19 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


PDB Files Used

7N00, 4ANQ,3LCS,2XP2

Student Contributors

  • Kaylin Todor
  • Rebekah White