Neurofibromin: Difference between revisions

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The Cysteine-Serine-rich domain (CSRD) and C-terminal domain (CTD) contain phosphorylation sites. The CSRD is able to be phosphorylated by protein kinases A and C. Phosphorylation by protein kinase C is a positive regulator of neurofibromin activity. The CTD is phosphorylated primarily by protein kinase C. This domain is a negative regulator of neurofibromin activity if particular residues are phosphorylated. It also plays an important role in tubulin binding, as it helps in the transition from metaphase to anaphase. CTD contains a nuclear localization signal as well.  
The Cysteine-Serine-rich domain (CSRD) and C-terminal domain (CTD) contain phosphorylation sites. The CSRD is able to be phosphorylated by protein kinases A and C. Phosphorylation by protein kinase C is a positive regulator of neurofibromin activity. The CTD is phosphorylated primarily by protein kinase C. This domain is a negative regulator of neurofibromin activity if particular residues are phosphorylated. It also plays an important role in tubulin binding, as it helps in the transition from metaphase to anaphase. CTD contains a nuclear localization signal as well.  
==RAS Complex==  
==RAS Complex==  
<scene name='90/904325/Ras_full_structure/2'>Full Ras protein with GTP ligand</scene>
===Mechanism of Ras Coupled with Neurofibromin===
===Mechanism of Ras Coupled with Neurofibromin===
The RasGAP interactions that occur when neurofibromin's <scene name='90/904325/Ras_nf1_complex/2'>GAP domain and Ras are bound</scene> have two critical catalytic components. The first is the <scene name='90/904325/Arginine_finger_and_gtp/1'>the arginine finger</scene> of the NF protein, which stabilizes the catalytic glutamine, as well as stabilizing the transition state of the phosphoryl transfer<ref name= ''Scheffzek''>PMID:30104198</ref>. The second component is the <scene name='90/904325/Arginine_finger_and_gdp/2'> catalytic glutamine </scene> of the Ras protein, which stabilizes the nucleophilic water as it attacks the third phosphate group in the GTP molecule as shown in Figure 1<ref name= ''Prive''>PMID:1565661</ref>.
The RasGAP interactions that occur when neurofibromin's <scene name='90/904325/Ras_nf1_complex/2'>GAP domain and Ras are bound</scene> have two critical catalytic components. The first is the <scene name='90/904325/Arginine_finger_and_gtp/1'>the arginine finger</scene> of the NF protein, which stabilizes the catalytic glutamine, as well as stabilizing the transition state of the phosphoryl transfer<ref name= ''Scheffzek''>PMID:30104198</ref>. The second component is the <scene name='90/904325/Arginine_finger_and_gdp/2'> catalytic glutamine </scene> of the Ras protein, which stabilizes the nucleophilic water as it attacks the third phosphate group in the GTP molecule as shown in Figure 1<ref name= ''Prive''>PMID:1565661</ref>.

Revision as of 18:57, 31 March 2022

Neurofibromin

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