Sandbox Reserved 1710

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== Structure ==
== Structure ==
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Neurofibromin is a <caption='Identical Protomers of Neurofibromin' scene name='90/904315/Homodimer/3'>homodimer</scene> made up of two identical chains. There are two conformations that classify neurofibromin known as its open and closed conformations. These conformations allow neurofibromin to associate with the protein Ras and perform its function of Ras regulation. The transformation between the overall closed conformation and open conformation of neurofibromin signifies a transition between an active neurofibromin protein and an inactive neurofibromin protein. There are two important domains involved in the transition between the open and closed conformations, the <scene name='90/905640/Grd_domains/2'>GRD</scene> domain and the <scene name='90/904315/Sec14ph_domain/2'>Sec14-PH</scene> domain. Although neurofibromin is a homodimer with two identical protomers, only one protomer needs to have its GRD and Sec14-PH domains rotated in the open conformation in order for it to be able to perform its function.
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Neurofibromin is a <scene name='90/904315/Homodimer/3'>homodimer</scene> made up of two identical chains. There are two conformations that classify neurofibromin known as its open and closed conformations. These conformations allow neurofibromin to associate with the protein Ras and perform its function of Ras regulation. The transformation between the overall closed conformation and open conformation of neurofibromin signifies a transition between an active neurofibromin protein and an inactive neurofibromin protein. There are two important domains involved in the transition between the open and closed conformations, the <scene name='90/905640/Grd_domains/2'>GRD</scene> domain and the <scene name='90/904315/Sec14ph_domain/2'>Sec14-PH</scene> domain. Although neurofibromin is a homodimer with two identical protomers, only one protomer needs to have its GRD and Sec14-PH domains rotated in the open conformation in order for it to be able to perform its function.
=== Closed Conformation ===
=== Closed Conformation ===

Revision as of 20:36, 28 March 2022

This Sandbox is Reserved from February 28 through September 1, 2022 for use in the course CH462 Biochemistry II taught by R. Jeremy Johnson at the Butler University, Indianapolis, USA. This reservation includes Sandbox Reserved 1700 through Sandbox Reserved 1729.
To get started:
  • Click the edit this page tab at the top. Save the page after each step, then edit it again.
  • show the Scene authoring tools, create a molecular scene, and save it. Copy the green link into the page.
  • Add a description of your scene. Use the buttons above the wikitext box for bold, italics, links, headlines, etc.

More help: Help:Editing

Human Neurofibromin - The Tumor Suppressor Gene

Neurofibromin in the Closed Conformation

Drag the structure with the mouse to rotate

References

  1. Naschberger A, Baradaran R, Rupp B, Carroni M. The structure of neurofibromin isoform 2 reveals different functional states. Nature. 2021 Nov;599(7884):315-319. doi: 10.1038/s41586-021-04024-x. Epub 2021, Oct 27. PMID:34707296 doi:http://dx.doi.org/10.1038/s41586-021-04024-x
  2. Trovo-Marqui AB, Tajara EH. Neurofibromin: a general outlook. Clin Genet. 2006 Jul;70(1):1-13. doi: 10.1111/j.1399-0004.2006.00639.x. PMID:16813595 doi:http://dx.doi.org/10.1111/j.1399-0004.2006.00639.x
  3. Lupton CJ, Bayly-Jones C, D'Andrea L, Huang C, Schittenhelm RB, Venugopal H, Whisstock JC, Halls ML, Ellisdon AM. The cryo-EM structure of the human neurofibromin dimer reveals the molecular basis for neurofibromatosis type 1. Nat Struct Mol Biol. 2021 Dec;28(12):982-988. doi: 10.1038/s41594-021-00687-2., Epub 2021 Dec 9. PMID:34887559 doi:http://dx.doi.org/10.1038/s41594-021-00687-2
  4. Abramowicz A, Gos M. Neurofibromin in neurofibromatosis type 1 - mutations in NF1gene as a cause of disease. Dev Period Med. 2014 Jul-Sep;18(3):297-306. PMID:25182393
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