Sandbox Reserved 1180: Difference between revisions

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==Structural Considerations==
==Structural Considerations==
The class B GPCRs, of which GCGR is a member, are different from other Class A GPCRs in several ways.  The first is that class B GPCRs contain a protrusion known as a 'stalk,' which is a three α-helical turn elongation of the N-terminus that protrudes past the extracellular (EC) membrane.  Structural integrity of this domain in GCGR is essential to ligand binding affinity. (Fig's 1 and 2)  
The class B GPCRs, of which GCGR is a member, are different from other Class A GPCRs in several ways.  The first is that class B GPCRs contain a protrusion known as a 'stalk,' which is a three α-helical turn elongation of the N-terminus that protrudes past the extracellular (EC) membrane.  Structural integrity of this domain in GCGR is essential to ligand binding affinity. (Fig's 1 and 2)  
<scene name='72/721552/Ligand_binding_interactions/1'>Ligand Binding Interactions and Crucial Disulfide Bond</scene>


Secondly, the extracellular loop 1 (ECL1) is 3-4 times longer than comparable loops in class A GPCRs, and also affects ligand binding affinity. (Fig. 3)<ref name= "Siu 2013"/>  
Secondly, the extracellular loop 1 (ECL1) is 3-4 times longer than comparable loops in class A GPCRs, and also affects ligand binding affinity. (Fig. 3)<ref name= "Siu 2013"/>  

Revision as of 22:01, 20 April 2016

7TM structure of human class B GPCR 4L6R

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