User:Brynn Baker/Sandbox1: Difference between revisions

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<scene name='10/1037516/R18/4'>R18</scene> lies at the C-terminal end of the main alpha helix and can adopt two different configurations. The “upper” configuration provides stronger interactions with various residues on the calcitonin receptor and is potentially what causes the helix to terminate around R18. Specifically, R18 interacts with the sidechain of D97 and the backbones of F99, P100, and F102. The latter three residues may also form van der Waals interactions and pi stacking with each other<ref name="Cao">PMID:35324283</ref>.
<scene name='10/1037516/R18/4'>R18</scene> lies at the C-terminal end of the main alpha helix and can adopt two different configurations. The “upper” configuration provides stronger interactions with various residues on the calcitonin receptor and is potentially what causes the helix to terminate around R18. Specifically, R18 interacts with the sidechain of D97 and the backbones of F99, P100, and F102. The latter three residues may also form van der Waals interactions and pi stacking with each other<ref name="Cao">PMID:35324283</ref>.
=== T9 Water Network ===
=== T9 Water Network ===
Threonine 9 is an essential residue for stabilization of amylin in the receptor. Threonine side chains are polar which allow them to hydrogen bond with other nearby polar groups, which can lead to extensive networks of interactions. This is seen in amylin at T9. T9 interacts with the main chain of Y191, M230, I380, and H381 of the calcitonin receptor and many surrounding water molecules, but it also interacts with the side chains of S159, N194, S195, H226, N233, and Q383. All of these interactions create a very strong interaction between amylin and the receptor. The water network also helps stabilize the active receptor conformation.  
Threonine 9 is an essential residue for stabilization of amylin in the receptor, as its side chain is polar which allows it to hydrogen bond with other nearby polar groups, leading to extensive networks of interactions. T9 interacts with the <scene name='10/1038871/T9_main_chain/8'>main chains of Y191, M230, I380, and H381</scene> of the calcitonin receptor and many surrounding water molecules, but it also interacts with the <scene name='10/1038871/T9_network/1'>side chain atoms of S159, N194, S195, H226, N233, and Q383</scene>. All of these interactions create a very strong interaction between amylin and the receptor. The water network also helps stabilize the active receptor conformation.  


== Disease ==
== Disease ==

Revision as of 21:06, 21 April 2024

Homo sapiens Amylin3 Receptor, AMYR3

Human Amylin3 Receptor (7TZF) Bound to Rat Amylin (yellow), G-Protein Complex (G-alpha = green, G-beta = blue, G-gamma = orange), Calcitonin (gray), and RAMP3 (tan).

Drag the structure with the mouse to rotate

References


Student Contributors

  • Brynn Baker
  • Emily Berkman
  • Sepp Hall

Proteopedia Page Contributors and Editors (what is this?)

Brynn Baker