Sandbox Reserved 1774

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== TSHR Activation ==
== TSHR Activation ==
=== Hinge Motion ===
=== Hinge Motion ===
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Central to the biological function of TSHR is its hinge motion which allows for transition between the <scene name='95/952702/Overlay/2'>active and inactive states</scene>. Deformation of the hinge region accommodates up-and-down rotation of the extracellular domain as a rigid body about an imaginary 55 degree axis. When the extracellular domain is upright, the receptor actively signals for thyroid hormone production. When the extracellular domain is hinged down, the receptor is inactive and no signaling activation occurs. Notably, transition between the two states occurs spontaneously; favoring of the active or inactive conformation is influenced by hinge interactions and ligand binding <ref name="Faust">PMID:35940205</ref>.
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Central to the biological function of TSHR is its hinge motion which allows for transition between the <scene name='95/952702/Overlay/2'>active and inactive states</scene>. Deformation of the hinge region accommodates up-and-down rotation of the extracellular domain as a rigid body about an imaginary 55 degree axis <ref name="Faust">PMID:35940205</ref>. When the extracellular domain is upright, the receptor actively signals for thyroid hormone production. When the extracellular domain is hinged down, the receptor is inactive and no signaling activation occurs. Notably, transition between the two states occurs spontaneously; favoring of the active or inactive conformation is influenced by hinge interactions and ligand binding <ref name="Faust">PMID:35940205</ref>.
Two observations help to explain how hinging of the extracellular domain can lead to signaling activation:
Two observations help to explain how hinging of the extracellular domain can lead to signaling activation:
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#The <scene name='95/952702/Linker_hinge_disulfide/3'>second disulfide bridge</scene> connects the hinge helix with the p10 region.
#The <scene name='95/952702/Linker_hinge_disulfide/3'>second disulfide bridge</scene> connects the hinge helix with the p10 region.
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The upright, active conformation of the hinge is stabilized by its respective interactions with the EC and TM domains <ref name="Faust" />.
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Interactions with the EC and TM domains help to stabilize the hinge in the upright, active conformation <ref name="Faust" />.
#A <scene name='95/952702/Hydrophobic_interaction/2'>hydrophobic interaction</scene> occurs between Y279 in the hinge helix and I486 in EC loop region 1, which protrudes from the TM helices.
#A <scene name='95/952702/Hydrophobic_interaction/2'>hydrophobic interaction</scene> occurs between Y279 in the hinge helix and I486 in EC loop region 1, which protrudes from the TM helices.
#An <scene name='95/952702/Ionic_interaction/3'>ionic interaction</scene> occurs between K660 in TM helix 7 and E409 in the p10 region.
#An <scene name='95/952702/Ionic_interaction/3'>ionic interaction</scene> occurs between K660 in TM helix 7 and E409 in the p10 region.
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If the stabilizing interactions are disrupted, TSHR function is affected. For instance, the mutation I496F has been observed to cause constitutive receptor activation and decreased sensitivity to the TSH ligand, suggesting that the bulkier phenylalanine strengthens the hydrophobic interaction too much, leading to overactivation. Contrastingly, TSHR underactivation results from disrupting the ionic interaction with an E409A mutation, which is associated with diminished receptor activation and TSH potency <ref name="Faust" />.
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If these stabilizing interactions are disrupted, TSHR function is affected. For instance, the mutation I496F has been observed to cause constitutive receptor activation and decreased sensitivity to the TSH ligand, suggesting that the bulkier phenylalanine strengthens the hydrophobic interaction too much, leading to overactivation. Contrastingly, TSHR underactivation results from disrupting the ionic interaction with an E409A mutation, which is associated with diminished receptor activation and TSH potency <ref name="Faust" />.
== Ligand Binding ==
== Ligand Binding ==

Revision as of 00:58, 7 April 2023

This Sandbox is Reserved from February 27 through August 31, 2023 for use in the course CH462 Biochemistry II taught by R. Jeremy Johnson at the Butler University, Indianapolis, USA. This reservation includes Sandbox Reserved 1765 through Sandbox Reserved 1795.
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