Neurofibromin: Difference between revisions

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The Gap-related domain, or <scene name='90/904326/Grd_highlighted/1'>GRD</scene>, is the catalytic domain of neurofibromin. It ranges from residues 1196 to 1547. <ref name="Naschberger"/> Its main catalytic mechanism is the hydrolysis of GTP-bound Ras into GDP-bound Ras, which converts Ras from its active form into its inactive form. The GRD provides an arginine residue, known as the arginine finger, to Ras. The location of the Gap-related domain is shifted between the <scene name='90/904326/Grdopen/1'>open conformation</scene> and closed conformations of neurofibromin.
The Gap-related domain, or <scene name='90/904326/Grd_highlighted/1'>GRD</scene>, is the catalytic domain of neurofibromin. It ranges from residues 1196 to 1547. <ref name="Naschberger"/> Its main catalytic mechanism is the hydrolysis of GTP-bound Ras into GDP-bound Ras, which converts Ras from its active form into its inactive form. The GRD provides an arginine residue, known as the arginine finger, to Ras. The location of the Gap-related domain is shifted between the <scene name='90/904326/Grdopen/1'>open conformation</scene> and closed conformations of neurofibromin.
==== Sec-PH ====
==== Sec-PH ====
The <scene name='90/904326/Secph_highlighted/2'>Sec14-PH</scene> domain is the lipid-binding domain of neurofibromin, found in residues 1565 to 1835. <ref name="Naschberger"/> In the closed conformation of neurofibromin, the hydrophobic core is blocked by the Gap-related domain. The <scene name='90/904326/Secopen/1'>open conformation</scene> allows the hydrophobic core in the Sec cavity to be accessible and exposed. In neurofibromin, this cavity binds glycerophospholipids, which can induce conformational changes. <ref>DOI 10.1016/j.febslet.2012.06.006</ref> It is unclear if the Sec14-PH domain has a role in the RasGap activity of neurofibromin.  
The <scene name='90/904326/Secph_highlighted/2'>Sec14-PH</scene> domain is the lipid-binding domain of neurofibromin, found in residues 1565 to 1835. <ref name="Naschberger"/> In the closed conformation of neurofibromin, the hydrophobic core is blocked by the Gap-related domain. The <scene name='90/904326/Secopen/1'>open conformation</scene> allows the hydrophobic core in the Sec cavity to be accessible and exposed. In neurofibromin, this cavity binds [https://en.wikipedia.org/wiki/Glycerophospholipid glycerophospholipids], which can induce conformational changes. <ref>DOI 10.1016/j.febslet.2012.06.006</ref> It is unclear if the Sec14-PH domain has a role in the RasGap activity of neurofibromin.  
===Important Structural Features===
===Important Structural Features===
====Conformations====
====Conformations====
The two conformations that neurofibromin exists in are the open state and closed state. The conformational change of neurofibromin involves rearrangement of the domains.
The two conformations that neurofibromin exists in are the open state and closed state. The conformational change of neurofibromin involves rearrangement of the domains.
=====Closed Conformation=====
=====Closed Conformation=====
The <scene name='90/904326/Overview_of_domains/1'>closed state</scene> of neurofibromin has both protomers in a closed conformation, which inhibits the binding of Ras to the GRD of neurofibromin due to the HEAT/ARM blocking the GRD. A metal binding site between the N-HEAT/ARM domain and the GRD-Sec14-PH linker stabilize the closed conformation. This site is coordinated by three residues, C1032, H1558, and H1576, and a water molecule. (Figure 2). This binding site is preferential for zinc- zinc has been found to stabilize the closed conformation of neurofibromin. In the absence of zinc, neurofibromin is in the open conformation. <ref name="Naschberger"/>
The <scene name='90/904326/Overview_of_domains/1'>closed state</scene> of neurofibromin has both protomers in a closed conformation, which inhibits the binding of Ras to the GRD of neurofibromin due to the [https://en.wikipedia.org/wiki/HEAT_repeat HEAT] / [https://en.wikipedia.org/wiki/Armadillo_repeat ARM] core blocking the GRD. A metal binding site between the N-HEAT/ARM domain and the GRD-Sec14-PH linker stabilize the closed conformation. This site is coordinated by three residues, C1032, H1558, and H1576, and a water molecule. (Figure 2). This binding site is preferential for zinc- zinc has been found to stabilize the closed conformation of neurofibromin. In the absence of zinc, neurofibromin is in the open conformation. <ref name="Naschberger"/>
[[Image:greenTriad.png|200 px|thumb|Figure 2. Triad of Residues that keep Neurofibromin in the Closed Conformation.]]  
[[Image:greenTriad.png|200 px|thumb|Figure 2. Triad of Residues that keep Neurofibromin in the Closed Conformation.]]  
=====Open Conformation=====
=====Open Conformation=====

Revision as of 05:10, 21 April 2022

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

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References

Proteopedia Page Contributors and Editors (what is this?)

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