Sandbox Reserved 1774

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Central to the biological function of TSHR is its hinge motion which allows for transition between active and inactive states. 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>.
Central to the biological function of TSHR is its hinge motion which allows for transition between active and inactive states. 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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At the following link is an animation of TSHR transition between the two states: [[Image:TSHR_MorphBetterAngle.mp4|Figure 1]]. The following trends can be observed in the video or viewed through an <scene name='95/952702/Overlay/1'>overlay</scene> in the molecule viewer:
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At the following link is an animation of TSHR transition between the two states: [[Image:TSHR_MorphBetterAngle.mp4|Figure 1]]. The following trends can be observed in the video or viewed through an <scene name='95/952702/Overlay/2'>overlay</scene> in the molecule viewer:
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#Slinky-like deformation of the hinge region shifts the <scene name='95/952702/P10_movement/1'>N-terminus of the p10</scene> region 5 Angstroms over the course of the movement <ref name="Faust" />.
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#Slinky-like deformation of the hinge region shifts the <scene name='95/952702/P10_movement/2'>N-terminus of the p10</scene> region 5 Angstroms over the course of the movement <ref name="Faust" />.
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#Stretching of the hinge pulls on the linked helices in the transmembrane domain, shifting <scene name='95/952702/Helix7_movement/1'>helix 7</scene> about 4 Angstroms inward <ref name="Faust" />.
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#Stretching of the hinge pulls on the linked helices in the transmembrane domain, shifting <scene name='95/952702/Helix7_movement/2'>helix 7</scene> about 4 Angstroms inward <ref name="Faust" />.
=== Stabilizing Interactions in the Hinge ===
=== Stabilizing Interactions in the Hinge ===
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To understand stabilizing interactions which accommodate the hinge motion, the hinge region can be subdivided into the <scene name='95/952702/Hinge_helix_intro/2'>hinge helix</scene>, which lies at the intersection of the extracellular and transmembrane domains; <scene name='95/952702/Helix_1_intro/3'>helix 1</scene>, which sticks up and serves as a binding platform for the TSH ligand; the <scene name='95/952702/Linker_intro/3'>linker</scene> region, which connects helix 1 with the p10 region; and the <scene name='95/952702/P10_intro/1'>p10</scene> region, a conserved 10-amino acid sequence which connects to transmembrane helix 7 and undergoes most of the deformation <ref name="Faust" /> <ref name="Duan">PMID:35940204</ref>.
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To understand stabilizing interactions which accommodate the hinge motion, the hinge region can be subdivided into the <scene name='95/952702/Hinge_helix_intro/2'>hinge helix</scene>, which lies at the intersection of the extracellular and transmembrane domains; <scene name='95/952702/Helix_1_intro/3'>helix 1</scene>, which sticks up and serves as a binding platform for the TSH ligand; the <scene name='95/952702/Linker_intro/3'>linker</scene> region, which connects helix 1 with the p10 region; and the <scene name='95/952702/P10_intro/2'>p10</scene> region, a conserved 10-amino acid sequence which connects to transmembrane helix 7 and undergoes most of the deformation <ref name="Faust" /> <ref name="Duan">PMID:35940204</ref>.
Two key disulfide bridges within the hinge region help to maintain its structure and orientation <ref name="Duan" />.
Two key disulfide bridges within the hinge region help to maintain its structure and orientation <ref name="Duan" />.

Revision as of 22:43, 2 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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Thyroid Stimulating Hormone Receptor (TSHR)

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