Neurofibromin: Difference between revisions
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<StructureSection load='' scene='90/904325/Introductory_image_full/2' size='340' side='right' caption='Neurofibromin [https://www.rcsb.org/structure/7PGS (7pgs)] Homo dimeric structure colored to differentiate dimers'> | <StructureSection load='' scene='90/904325/Introductory_image_full/2' size='340' side='right' caption='Neurofibromin [https://www.rcsb.org/structure/7PGS (7pgs)] Homo dimeric structure colored to differentiate dimers'> | ||
== Introduction == | == Introduction == | ||
<scene name='90/904325/Introductory_image_full/1'>Neurofibromin</scene> (NF) is a cytoplasmic protein encoded by the ''NF1'' gene located on chromosome 17 <ref name= "Bergoug">PMID:33121128</ref>. It is localized to the cell membrane by the [https://en.wikipedia.org/wiki/SPRED1 SPRED 1] protein<ref name= "Naschberger">PMID:34707296</ref>. The neurofibromin protein in encoded by over 350 kb of DNA and contains 62 exons, 58 of which are constitutive<ref name= ''Trovó-Marqui''>PMID:16813595</ref>. NF suppresses the <scene name='90/904325/Ras_neurofibromin_overview/1'>Ras</scene> oncogene by increasing the rate of hydrolysis from <scene name='90/904325/Arginine_finger_and_gtp/3'>Ras bound to GTP</scene> (active) to <scene name='90/904325/Arginine_finger_and_gdp/4'>Ras bound to GDP</scene> (inactive)<ref name= ''Hall''>PMID:12213964</ref>. Increasing the rate of Ras inactivation decreases cell proliferation linked to cancer<ref name= | <scene name='90/904325/Introductory_image_full/1'>Neurofibromin</scene> (NF) is a cytoplasmic protein encoded by the ''NF1'' gene located on chromosome 17 <ref name= "Bergoug">PMID:33121128</ref>. It is localized to the cell membrane by the [https://en.wikipedia.org/wiki/SPRED1 SPRED 1] protein<ref name= "Naschberger">PMID:34707296</ref>. The neurofibromin protein in encoded by over 350 kb of DNA and contains 62 exons, 58 of which are constitutive<ref name= ''Trovó-Marqui''>PMID:16813595</ref>. NF suppresses the <scene name='90/904325/Ras_neurofibromin_overview/1'>Ras</scene> oncogene by increasing the rate of hydrolysis from <scene name='90/904325/Arginine_finger_and_gtp/3'>Ras bound to GTP</scene> (active) to <scene name='90/904325/Arginine_finger_and_gdp/4'>Ras bound to GDP</scene> (inactive)<ref name= ''Hall''>PMID:12213964</ref>. Increasing the rate of Ras inactivation decreases cell proliferation linked to cancer<ref name= "Cimino">PMID:29478615</ref>. | ||
== Structure == | == Structure == | ||
Neurofibromin is a large protein of 2818 amino acids <ref name="Bergoug"/> and is a homodimer that exists in two conformations. | Neurofibromin is a large protein of 2818 amino acids <ref name="Bergoug"/> and is a homodimer that exists in two conformations. | ||
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[[Image:domainsneurofibromin.png|500 px|thumb|Figure 1. Representation of the Domains of Neurofibromin. Shown are the most characterized domains, Gap-related and Sec14-PH, connected to the N and C-HEAT/ARMs. Each of the domains of Neurofibromin can be found in both of the monomers.]] | [[Image:domainsneurofibromin.png|500 px|thumb|Figure 1. Representation of the Domains of Neurofibromin. Shown are the most characterized domains, Gap-related and Sec14-PH, connected to the N and C-HEAT/ARMs. Each of the domains of Neurofibromin can be found in both of the monomers.]] | ||
====N-HEAT/ARM and C-HEAT/ARM==== | ====N-HEAT/ARM and C-HEAT/ARM==== | ||
[https://en.wikipedia.org/wiki/HEAT_repeat Heat domains] are domains found in cytoplasmic proteins that consist of four different proteins: [https://proteopedia.org/wiki/index.php/Huntingtin Huntingtin], [https://proteopedia.org/wiki/index.php/Elongation_factor elongation factor 3], [https://proteopedia.org/wiki/index.php/Protein_phosphatase protein phosphatase 2A], and TOR1. <ref name= ''Yoshimura''>DOI: 10.1242/jcs.185710</ref>. The [https://en.wikipedia.org/wiki/HEAT_repeat HEAT] / [https://en.wikipedia.org/wiki/Armadillo_repeat ARM] cores are made up of many alpha helices. The N-HEAT/ARM and C-HEAT/ARM are rigid, which makes them critical in the rearrangement of the Gap-related and Sec14-PH domains. In the <scene name='90/ | [https://en.wikipedia.org/wiki/HEAT_repeat Heat domains] are domains found in cytoplasmic proteins that consist of four different proteins: [https://proteopedia.org/wiki/index.php/Huntingtin Huntingtin], [https://proteopedia.org/wiki/index.php/Elongation_factor elongation factor 3], [https://proteopedia.org/wiki/index.php/Protein_phosphatase protein phosphatase 2A], and TOR1. <ref name= ''Yoshimura''>DOI: 10.1242/jcs.185710</ref>. The [https://en.wikipedia.org/wiki/HEAT_repeat HEAT] / [https://en.wikipedia.org/wiki/Armadillo_repeat ARM] cores are made up of many alpha helices. The N-HEAT/ARM and C-HEAT/ARM are rigid, which makes them critical in the rearrangement of the Gap-related and Sec14-PH domains. In the <scene name='90/904325/Heat/1'>closed conformation</scene>, the HEAT/ARM domains cover the GRD, preventing the binding of Ras through steric hinderance. <ref name= "Lupton">DOI 10.1038/s41594-021-00687-2</ref> | ||
==== GRD domain ==== | ==== GRD domain ==== | ||
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/ | The <scene name='90/904325/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==== | ||
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== Disease Relevance == | == Disease Relevance == | ||
Mutations to the neurofibromin protein are implicated in the progression of Neurofibromatosis type 1. Neurofibromatosis type 1 is a condition where cancer develops by inactivating the Ras suppression effects of NF, allowing Ras to behave as an oncogene. Neurofibromatosis type 1 is an autosomal dominant disorder that affects 1 in 3,000 people. The ''NF'' gene has the highest mutation rate of any human gene, adding to the prevalence of cancers related to neurofibromin mutations<ref name= "Lupton"/>. Furthermore, these mutations consist heavily of [https://en.wikipedia.org/wiki/Mutation#By_inheritance ''de novo''] mutations<ref name= ''Abramowicz''>PMID:25182393</ref>. NF1 primarily causes tumors in the [https://en.wikipedia.org/wiki/Central_nervous_system_disease#Structural_defects central] and peripheral nervous systems, but often has a multisystem expression including tumors in the dermatologic, cardiovascular, gastrointestinal, and orthopedic systems<ref name= | Mutations to the neurofibromin protein are implicated in the progression of Neurofibromatosis type 1. Neurofibromatosis type 1 is a condition where cancer develops by inactivating the Ras suppression effects of NF, allowing Ras to behave as an oncogene. Neurofibromatosis type 1 is an autosomal dominant disorder that affects 1 in 3,000 people. The ''NF'' gene has the highest mutation rate of any human gene, adding to the prevalence of cancers related to neurofibromin mutations<ref name= "Lupton"/>. Furthermore, these mutations consist heavily of [https://en.wikipedia.org/wiki/Mutation#By_inheritance ''de novo''] mutations<ref name= ''Abramowicz''>PMID:25182393</ref>. NF1 primarily causes tumors in the [https://en.wikipedia.org/wiki/Central_nervous_system_disease#Structural_defects central] and peripheral nervous systems, but often has a multisystem expression including tumors in the dermatologic, cardiovascular, gastrointestinal, and orthopedic systems <ref name="Cimino"/>. The wide range of presentations is consistent with the multiplicity of mutations observed in the causative protein<ref name= ''Ly''>PMID:31582003</ref>. This multiplicity derives from the immense size and homo dimeric nature of the neurofibromin protein that allows for otherwise innocuous mutations to wreak havoc on the conformations of the protein as well as its ability to bind to the Ras protein given that the positioning of NF relative to Ras is highly important. | ||
==Downstream Effects== | ==Downstream Effects== | ||
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[[Image:signaling_pathway_for_ras.jpg|600 px|thumb|left|Figure 3: Downstream proliferation of Ras signals have a variety of impacts, including gene regulation, cell proliferation, and cell growth; By cybertory - This file was derived from: Signal transduction v1.png, CC BY-SA 3.0, https://commons.wikimedia.org/w/index.php?curid=12081090]] | [[Image:signaling_pathway_for_ras.jpg|600 px|thumb|left|Figure 3: Downstream proliferation of Ras signals have a variety of impacts, including gene regulation, cell proliferation, and cell growth; By cybertory - This file was derived from: Signal transduction v1.png, CC BY-SA 3.0, https://commons.wikimedia.org/w/index.php?curid=12081090]] | ||
==Neurofibromin 3D structures== | |||
Neurofibromin; Domains – gap-related domain (GRD) 846-1530; Sec14 homology domain (Sec-PH) 1566-1837 | |||
Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}} | |||
[[1nf1]] – hNF GRD – human <br /> | |||
[[7moc]], [[7mp5]], [[7mp6]], [[7pgp]], [[7pgq]], [[7pgr]], [[7pgs]], [[7pgt]], [[7pgu]], [[7r03]], [[8e20]], [[8edl]], [[8edm]], [[8edn]], [[8edo]] – hNF – Cryo EM<br /> | |||
[[7r04]] – hNF + GDP derivative – Cryo EM<br /> | |||
[[2d4q]] – hNF Sec-PH<br /> | |||
[[3peg]] – hNF Sec-PH (mutant) <br /> | |||
[[2e2x]] – hNF Sec-PH + phosphoethanolamine<br /> | |||
[[3p7z]], [[3pg7]] – hNF Sec-PH (mutant) + phosphoethanolamine<br /> | |||
[[6ob2]], [[6ob3]] – hNF GRD + GTPase KRas + GNP<br /> | |||
[[6v65]], [[6v6f]] – hNF GRD + GTPase KRas + SPRED1 + GNP<br /> | |||
</StructureSection> | </StructureSection> | ||
== References == | == References == | ||
<references/> | <references/> | ||
[[Category:Topic Page]] | |||
Latest revision as of 08:24, 24 March 2026
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References
Proteopedia Page Contributors and Editors (what is this?)
Jordyn K. Lenard, Ryan D. Adkins, OCA, Michal Harel, Jaime Prilusky


