Sandbox Reserved 1706

From Proteopedia

(Difference between revisions)
Jump to: navigation, search
Line 12: Line 12:
Neurofibromin is a [https://en.wikipedia.org/wiki/Protein_dimer protein dimer] that exists in the<scene name='90/904311/Closed_conformation/3'>closed</scene> and <scene name='90/904311/Open_conformation/2'>open</scene> conformation. Each [https://en.wikipedia.org/wiki/Protomer protomer] contains a GRD, Sec14-PH, and a GAPex domain located on a HEAT N-C arm. Ras binds to the GRD site with Arg1276 being the critical residue for binding.
Neurofibromin is a [https://en.wikipedia.org/wiki/Protein_dimer protein dimer] that exists in the<scene name='90/904311/Closed_conformation/3'>closed</scene> and <scene name='90/904311/Open_conformation/2'>open</scene> conformation. Each [https://en.wikipedia.org/wiki/Protomer protomer] contains a GRD, Sec14-PH, and a GAPex domain located on a HEAT N-C arm. Ras binds to the GRD site with Arg1276 being the critical residue for binding.
===Closed conformation===
===Closed conformation===
-
In the<scene name='90/904311/Closed_conformation/3'>closed conformation</scene>, one protomer has its domains shifted by a 130 degree rotation of three separate linkers. That rotation places <scene name='90/904312/Closed_arg/1'>Arg1276 in the closed conformation</scene> in an orientation that <scene name='90/904312/Closed_zoom/1'>sterical hinders the binding between Ras and Arg1276</scene> in the GRD site (Figure 3). Making <scene name='90/904312/Closed_with_ras/1'>Ras binding in closed conformation</scene> sterically impossible in the <scene name='90/904311/Closed_conformation/3'>closed conformation</scene>
+
Ras is unable to bind to the GRD active site when both of the NF1 protomers are in the closed confirmation. In the<scene name='90/904311/Closed_conformation/3'>closed conformation</scene>, one protomer has its domains shifted by a 130 degree rotation of three separate linkers. That rotation places <scene name='90/904312/Closed_arg/1'>Arg1276 in the closed conformation</scene> in an orientation that <scene name='90/904312/Closed_zoom/1'>sterical hinders the binding between Ras and Arg1276</scene> in the GRD site (Figure 3). Also in this depiction Ras binding to the GRD site is inhibited by the N-HEAT ARM as it interferes at the GRD in Ras attempting to bind to the active site and is sterically hindered. Making <scene name='90/904312/Closed_with_ras/1'>Ras binding in closed conformation</scene> sterically impossible in the <scene name='90/904311/Closed_conformation/3'>closed conformation</scene>
. The <scene name='90/904311/Closed_conformation/3'>closed conformation</scene> can exist naturally without any form of stabilization but will also fall back to the <scene name='90/904311/Open_conformation/2'>open conformation</scene>.
. The <scene name='90/904311/Closed_conformation/3'>closed conformation</scene> can exist naturally without any form of stabilization but will also fall back to the <scene name='90/904311/Open_conformation/2'>open conformation</scene>.
====Zinc Stabilized====
====Zinc Stabilized====
The <scene name='90/904311/Closed_conformation/3'>closed conformation</scene> of Neurofibromin can be stabilized by a zinc ion to prevent the shift back to an <scene name='90/904311/Open_conformation/2'>open conformation</scene>. This binding is done between C1032, H1558, and H1576 within the N-HEAT domain, GRD-Sec14-PH linker L2 and is shown in figure #. When zinc stabilizes Neurofibromin, it will stay in the <scene name='90/904311/Closed_conformation/3'>closed conformation</scene> and continue to inhibit the binding of RAS.
The <scene name='90/904311/Closed_conformation/3'>closed conformation</scene> of Neurofibromin can be stabilized by a zinc ion to prevent the shift back to an <scene name='90/904311/Open_conformation/2'>open conformation</scene>. This binding is done between C1032, H1558, and H1576 within the N-HEAT domain, GRD-Sec14-PH linker L2 and is shown in figure #. When zinc stabilizes Neurofibromin, it will stay in the <scene name='90/904311/Closed_conformation/3'>closed conformation</scene> and continue to inhibit the binding of RAS.
===Open conformation===
===Open conformation===
-
In the <scene name='90/904311/Open_conformation/2'>open conformation</scene> one protomer is shifted due to a 90 rotation. This rotation allows for binding between RAS and the <scene name='90/904312/Arg_1276_open/10'>Arg1276</scene>
+
In the open state, one of the protomers remains in the closed confirmation inaccessible to Ras, while the other protomer is conformationally changed into the open form with Ras bound.
-
in the GRD site while in the <scene name='90/904311/Open_conformation/2'>open conformation</scene>. Allowing for the <scene name='90/904312/Arg_1276_open/11'>Arg1276 interaction with Ras in the open conformation</scene> to occur without any steric hindrance as shown in the <scene name='90/904311/Closed_conformation/3'>closed conformation</scene>.
+
In the <scene name='90/904311/Open_conformation/2'>open conformation</scene> the one protomer is shifted due to a 90 rotation. This rotation allows for binding between RAS and the <scene name='90/904312/Arg_1276_open/10'>Arg1276</scene>
 +
in the GRD site while in the <scene name='90/904311/Open_conformation/2'>open conformation</scene>. Allowing for the <scene name='90/904312/Arg_1276_open/11'>Arg1276 interaction with Ras in the open conformation</scene> to occur without any steric hindrance as shown in the <scene name='90/904311/Closed_conformation/3'>closed conformation</scene>. In the open state, one of the protomers remains in the closed confirmation inaccessible to Ras, while the other protomer is conformationally changed into the open form with Ras bound. It is important to mention, the GRD and Sec14-PH are reoriented away from one another and the GRD site is no longer sterically hindered and clashing with the N-HEAT ARM and is completely accessible for Ras to bind. To undergo the movement to the open confirmation, significant conformational changes exist within three separate linkers (L1, L2, L3).
===Conformational Change Linkers===
===Conformational Change Linkers===
The rotation of the domains between the <scene name='90/904311/Open_conformation/2'>open conformation</scene> and <scene name='90/904311/Closed_conformation/3'>closed conformation</scene> of Neurofibromin are conducted by three helical linkers named L1, L2, and L3. The <scene name='90/904312/Linker_closed/1'>linkers in the closed conformation</scene>
The rotation of the domains between the <scene name='90/904311/Open_conformation/2'>open conformation</scene> and <scene name='90/904311/Closed_conformation/3'>closed conformation</scene> of Neurofibromin are conducted by three helical linkers named L1, L2, and L3. The <scene name='90/904312/Linker_closed/1'>linkers in the closed conformation</scene>

Revision as of 05:39, 29 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

Neurofibromin 1

Neurofibromin Closed Conformation 7PGR

Drag the structure with the mouse to rotate
Personal tools