Neurofibromin: Difference between revisions

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The <scene name='90/904326/Open_conformation/3'>open state</scene> of neurofibromin has one protomer in a open conformation and the other in a closed conformation. The protomer in the open conformation allows for the binding of Ras because of reorientation of the GRD and Sec14-PH domains. In the open conformation, the metal binding site found in the closed conformation is lost due to separation of the N-HEAT/ARM and the cysteine residue from the histidine residues founds in the GRD-Sec14-PH linker.  
The <scene name='90/904326/Open_conformation/3'>open state</scene> of neurofibromin has one protomer in a open conformation and the other in a closed conformation. The protomer in the open conformation allows for the binding of Ras because of reorientation of the GRD and Sec14-PH domains. In the open conformation, the metal binding site found in the closed conformation is lost due to separation of the N-HEAT/ARM and the cysteine residue from the histidine residues founds in the GRD-Sec14-PH linker.  
=====Transition Between Open and Closed Conformation=====
=====Transition Between Open and Closed Conformation=====
In the transition from the closed state to the open state, several of the domains of neurofibromin rotate to make the binding site of neurofibromin more accessible . This rotation is able to occur due to the rotation of three connective linkers, L1, L2, and L3. L1 is located between an alpha helix 48 in N-HEAT and an alpha helix 49 in GRD. G1190 is a potential hinge point when L1 rotates and pushes the alpha helixes outwards to move the Gap-related domain. L3 is located between the Sec14-PH domain and the C-HEAT/ARM and aids in the movement of the Sec14-PH domain. Without this rotation, the membrane binding sites are occluded and inaccessible. The proximity of L1 and L3 has to be close to facilitate the rotation of the domains.  
In the transition from the closed state to the open state, several of the domains of neurofibromin rotate to make the binding site of neurofibromin more accessible . This rotation is able to occur due to the rotation of three connective linkers, L1, L2, and L3. L1 is located between an alpha helix 48 in N-HEAT and an alpha helix 49 in GRD. G1190 is a potential hinge point when L1 rotates and pushes the alpha helixes outwards to move the Gap-related domain. L3 is located between the Sec14-PH domain and the C-HEAT/ARM and aids in the movement of the Sec14-PH domain. Without this rotation, the membrane binding sites are occluded and inaccessible. The proximity of L1 and L3 has to be close to facilitate the rotation of the domains. <ref name= ''Naschberger''>PMID:34707296</ref>
====SPRED-1 Protein====
====SPRED-1 Protein====
The SPRED-1 protein <scene name='90/904325/Nf1_ras_spred1/2'>localizes neurofibromin</scene> to the cell membrane in to allow it to bind to the membrane oriented Ras protein<ref name= ''Naschberger''>PMID:34707296</ref>. <scene name='90/904325/Spred_1/2'>SPRED-1</scene> interacts with the N-terminal domain of NF to guide it to the membrane from the cytosol, where its C terminal domain will determine its target <ref name= ''Dunzendorfer-Matt''>PMID:27313208</ref>.
The SPRED-1 protein <scene name='90/904325/Nf1_ras_spred1/2'>localizes neurofibromin</scene> to the cell membrane in to allow it to bind to the membrane oriented Ras protein<ref name= ''Naschberger''>PMID:34707296</ref>. <scene name='90/904325/Spred_1/2'>SPRED-1</scene> interacts with the N-terminal domain of NF to guide it to the membrane from the cytosol, where its C terminal domain will determine its target <ref name= ''Dunzendorfer-Matt''>PMID:27313208</ref>.

Revision as of 00:02, 21 April 2022

Neurofibromin (7pgs) Homo dimeric structure colored to differentiate dimers

Drag the structure with the mouse to rotate

References

Proteopedia Page Contributors and Editors (what is this?)

Jordyn K. Lenard, Ryan D. Adkins, OCA, Michal Harel, Jaime Prilusky