Sandbox Reserved 1627: Difference between revisions

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===At the Cellular Level===
===At the Cellular Level===
In the human body, the conformation change from the inactive to active state upon insulin binding has a time constant of six minutes. Once insulin binds and the beta subunits are brought within close proximity, autophosphorylation of the beta subunits begins. Phosphorylation at these sites reaches a maximal level in about one minute, and lasts for approximately six to ten minutes. One insulin receptor substrate has a half-life of 3.5 minutes where it is able to be phosphorylated by the tyrosine kinases of the beta subunit and then act as a central hub to activate further downstream signaling pathways that eventually bring glucose receptors to the surface of the cell to allow for diffusion of glucose into the cell. Once insulin binds to the alpha subunit, the receptor remains active for approximately ten minutes before the insulin is degraded and the receptor returns to its inactive conformation. This time frame puts a perspective on how long it takes for the human body to store excess glucose in their blood stream from a recent meal as glycogen for later use as fuel. <ref name="Tatulian" />
The conformation change from the inactive to active state upon insulin binding has a time constant of six minutes. Autophosphorylation of the beta subunits reaches a maximal level in about one minute, and lasts for approximately six to ten minutes. One insulin receptor substrate has a half-life of 3.5 minutes where it is able to be phosphorylated by the tyrosine kinases of the beta subunit and then act as a central hub for further downstream signaling pathways. Once insulin binds to the alpha subunit, the receptor remains active for approximately ten minutes before the insulin is degraded and the receptor returns to its inactive conformation. This time frame puts a perspective on how long it takes for the human body to store excess glucose in their blood stream from a recent meal as glycogen for later use as fuel. <ref name="Tatulian" />





Revision as of 19:23, 15 April 2020

Homo sapiens Insulin Receptor

An interactive view of the human insulin receptor. (PDB Codes 6SOF)

Drag the structure with the mouse to rotate

References


Student Contributors

  • Harrison Smith
  • Alyssa Ritter