Sandbox Reserved 1777: Difference between revisions
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==Stabilizing Interactions in Ternary Complex== | ==Stabilizing Interactions in Ternary Complex== | ||
<scene name='95/952706/Shoc2_mras_interaction/2'>MRAS binds to SHOC2</scene> exclusively through its concave LRRs<Ref name='Kwan'>Kwon, J.J., Hajian, B., Bian, Y. et al. Structure–function analysis of the SHOC2–MRAS–PP1C holophosphatase complex. Nature 609, 408–415 (2022).doi: 10.1038/s41586-022-04928-2. [https://doi.org/10.1038/s41586-022-04928-2. DOI:10.1038/s41586-022-04928-2] </Ref>, primarily by the descending loop and strands of LRR domains 2-10. <scene name='95/952706/Shoc2_pp1c_interaction/3'>PP1C binds</scene> with the ascending loops of the SHOC2 LRR regions, and is further engaged through the N-terminal region of SHOC2 containing the <scene name='95/952706/Shoc2_rvxf/1'>RVxF motif</scene> <Ref name= 'Jajian'>Kwon, J., Jajian, B., Bian, Y. et al. Comprehensive structure-function evaluation of the SHOC2 holophosphatase reveals disease mechanisms and therapeutic opportunities. In: Proceedings of the American Association for Cancer Research Annual Meeting 2022. [https://aacrjournals.org/cancerres/article/82/12_Supplement/LB029/699443. DOI: 10.1158/1538-7445.AM2022-LB029]. </Ref>. The initial forming of the complex begins with SHOC2-PP1C engagement, then is completed and stabilized by the GTP-loaded MRAS binding '''(apparently described differently elsewhere?)''' <Ref name="Jajian" />. Once associated with SHOC2, <scene name='95/952706/Mras_pp1c_interaction/2'>MRAS binds to PP1C</scene>. Binding to MRAS localizes the other two proteins to the RAS signaling regions of the membrane to begin cellular signaling | <scene name='95/952706/Shoc2_mras_interaction/2'>MRAS binds to SHOC2</scene> exclusively through its concave LRRs<Ref name='Kwan'>Kwon, J.J., Hajian, B., Bian, Y. et al. Structure–function analysis of the SHOC2–MRAS–PP1C holophosphatase complex. Nature 609, 408–415 (2022).doi: 10.1038/s41586-022-04928-2. [https://doi.org/10.1038/s41586-022-04928-2. DOI:10.1038/s41586-022-04928-2] </Ref>, primarily by the descending loop and strands of LRR domains 2-10. <scene name='95/952706/Shoc2_pp1c_interaction/3'>PP1C binds</scene> with the ascending loops of the SHOC2 LRR regions, and is further engaged through the N-terminal region of SHOC2 containing the <scene name='95/952706/Shoc2_rvxf/1'>RVxF motif</scene> <Ref name= 'Jajian'>Kwon, J., Jajian, B., Bian, Y. et al. Comprehensive structure-function evaluation of the SHOC2 holophosphatase reveals disease mechanisms and therapeutic opportunities. In: Proceedings of the American Association for Cancer Research Annual Meeting 2022. [https://aacrjournals.org/cancerres/article/82/12_Supplement/LB029/699443. DOI: 10.1158/1538-7445.AM2022-LB029]. </Ref>. The initial forming of the complex begins with SHOC2-PP1C engagement, then is completed and stabilized by the GTP-loaded MRAS binding '''(apparently described differently elsewhere?)''' <Ref name="Jajian" />. Once associated with SHOC2, <scene name='95/952706/Mras_pp1c_interaction/2'>MRAS binds to PP1C</scene>. Binding to MRAS localizes the other two proteins to the RAS signaling regions of the membrane to begin cellular signaling<ref name="Kwan" />. | ||
==Active Site== | ==Active Site== | ||
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The SHOC2-MRAS-PP1C complex's key role in the regulation of the MAPK-RAF pathway means that minor changes in its structure or function can have drastic biological consequences. Unregulated activation of the MAPK pathway is one of the most common causes of human cancer due to unchecked cell division and proliferation '''(REF)'''. Mutations that stabilize the interactions of the SMP complex enhances PP1C phosphatase activity <Ref name="Jajian" />, leading to increased RAF signaling and accelerated cell division. | The SHOC2-MRAS-PP1C complex's key role in the regulation of the MAPK-RAF pathway means that minor changes in its structure or function can have drastic biological consequences. Unregulated activation of the MAPK pathway is one of the most common causes of human cancer due to unchecked cell division and proliferation '''(REF)'''. Mutations that stabilize the interactions of the SMP complex enhances PP1C phosphatase activity <Ref name="Jajian" />, leading to increased RAF signaling and accelerated cell division. | ||
The unregulated MAPK pathway is also responsible for a multitude of developmental disorders commonly known as [https://dceg.cancer.gov/research/what-we-study/rasopathies#:~:text=RASopathies%20are%20a%20group%20of,to%20grow%20and%20work%20properly. RASopathies] <Ref name="Lavoie" />. One such RASopathy caused by the mutation of a RAF kinase is known as [https://www.mayoclinic.org/diseases-conditions/noonan-syndrome/symptoms-causes/syc-20354422 Noonan Syndrome] (NS), which enhances complex formation by stabilizing the interactions of each member | The unregulated MAPK pathway is also responsible for a multitude of developmental disorders commonly known as [https://dceg.cancer.gov/research/what-we-study/rasopathies#:~:text=RASopathies%20are%20a%20group%20of,to%20grow%20and%20work%20properly. RASopathies] <Ref name="Lavoie" />. One such RASopathy caused by the mutation of a RAF kinase is known as [https://www.mayoclinic.org/diseases-conditions/noonan-syndrome/symptoms-causes/syc-20354422 Noonan Syndrome] (NS), which enhances complex formation by stabilizing the interactions of each member<ref name="Kwan" />. NS is a genetic disorder that can prevent normal development in different parts of the body in a variety of ways. NS patients often have unusual facial characteristics, short stature, a variety of heart defects and disease, and other physical problems and developmental delays<Ref name= 'van der Burgt'> van der Burgt, I. Noonan syndrome. Orphanet J Rare Dis 2, 4 (2007). doi: 10.1186/1750-1172-2-4 [https://doi.org/10.1186/1750-1172-2-4. DOI: 10.1186/1750-1172-2-4]. </Ref>. | ||
</StructureSection> | </StructureSection> | ||
== References == | == References == | ||
<references/> | <references/> | ||
Revision as of 21:20, 10 April 2023
| This Sandbox is Reserved from February 27 through August 31, 2023 for use in the course CH462 Biochemistry II taught by R. Jeremy Johnson at the Butler University, Indianapolis, USA. This reservation includes Sandbox Reserved 1765 through Sandbox Reserved 1795. |
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