Journal:Cell:1

From Proteopedia

(Difference between revisions)
Jump to: navigation, search
Line 27: Line 27:
===Structural Movements===
===Structural Movements===
====Structural pertubations upon binding====
====Structural pertubations upon binding====
-
One of the more controversial aspects of cytokine signaling is whether receptor binding is sufficient to generate activity, or if it has to be accompanied by structural perturbations. The type I interferon complex is one of the only cytokine receptor complexes were the structures of all the components making up the biologically active complex were determined to high resolution in their free and bound forms. <scene name='User:David_Canner/Workbench3/Morph_1/6'>A comparison</scene> of the unbound NMR structure with the ternary complex structure of interferon shows a small expansion during complex formation.
+
One of the more controversial aspects of cytokine signaling is whether receptor binding is sufficient to generate activity, or if it has to be accompanied by structural perturbations. The type I interferon signaling complex is a rare example of a cytokine receptor complex were the structures of all the components making up the biologically active complex were determined to high resolution in both their free and bound forms. <scene name='User:David_Canner/Workbench3/Morph_1/6'>A comparison</scene> of the unbound NMR structure with the ternary complex structure of interferon shows a small expansion during complex formation.
Conversely, both IFNAR1 and IFNAR2 undergo significant domain movements upon binding. Using the D1 domain as anchor, a <scene name='User:David_Canner/Workbench3/Morph_2/10'>clear outwards movement of the D2 domain</scene> of IFNAR2 upon binding, on a scale of 6-12 Å, is observed (comparison of the unbound receptor ([[1n6u]]) with the binary IFNa2-IFNAR2 complex). However, also the superimposition of the IFNa2-IFNAR2 binary complex onto IFN-IFNAR2 in the ternary complexes <scene name='User:David_Canner/Workbench3/Morph3/7'>shows an additional domain movement</scene> of 6-9 Å, and even between the ternary IFNa and IFNw complexes a movement of 3-5 Å is observed. As D2 is engaged in crystal contacts in all three structures, the large variations in D2 may suggest some flexibility in the hinge of D1 and D2 in IFNAR2. Still, these movements could change the proximity or orientation of the ICDs and associated Jaks within the cell.
Conversely, both IFNAR1 and IFNAR2 undergo significant domain movements upon binding. Using the D1 domain as anchor, a <scene name='User:David_Canner/Workbench3/Morph_2/10'>clear outwards movement of the D2 domain</scene> of IFNAR2 upon binding, on a scale of 6-12 Å, is observed (comparison of the unbound receptor ([[1n6u]]) with the binary IFNa2-IFNAR2 complex). However, also the superimposition of the IFNa2-IFNAR2 binary complex onto IFN-IFNAR2 in the ternary complexes <scene name='User:David_Canner/Workbench3/Morph3/7'>shows an additional domain movement</scene> of 6-9 Å, and even between the ternary IFNa and IFNw complexes a movement of 3-5 Å is observed. As D2 is engaged in crystal contacts in all three structures, the large variations in D2 may suggest some flexibility in the hinge of D1 and D2 in IFNAR2. Still, these movements could change the proximity or orientation of the ICDs and associated Jaks within the cell.

Revision as of 09:26, 25 July 2011

Solved Structures of IFNAR1/2/IFN Complexes

Drag the structure with the mouse to rotate
  1. no reference


This page complements a publication in scientific journals and is one of the Proteopedia's Interactive 3D Complement pages. For aditional details please see I3DC.
Personal tools