User:Matheus Andrade Bettiol/Sandbox 1

From Proteopedia

(Difference between revisions)
Jump to: navigation, search
Line 38: Line 38:
Switch I and Switch II: These are two regions within the GTPase domain that undergo conformational changes upon GTP binding. In the following green links <span style="color:navy;background-color:white;font-weight:bold;">Switch I (in dark blue)</span> and <span style="color:blue;background-color:white;font-weight:bold;">Switch II (in blue)</span> can be seen in <scene name='97/973102/Switch1_and_2_gtp/1'>RhoA-GTP</scene> or <scene name='97/973102/Switch1_and_2_gdp/1'>RhoA-GDP</scene>. Their conformations dictate the ability of RhoA to interact with downstream effector proteins.
Switch I and Switch II: These are two regions within the GTPase domain that undergo conformational changes upon GTP binding. In the following green links <span style="color:navy;background-color:white;font-weight:bold;">Switch I (in dark blue)</span> and <span style="color:blue;background-color:white;font-weight:bold;">Switch II (in blue)</span> can be seen in <scene name='97/973102/Switch1_and_2_gtp/1'>RhoA-GTP</scene> or <scene name='97/973102/Switch1_and_2_gdp/1'>RhoA-GDP</scene>. Their conformations dictate the ability of RhoA to interact with downstream effector proteins.
-
Insertion Domain: This region contributes to the overall structure of the protein being characteristic of many GTPases in the Rho family and could play a role in protein-protein interactions.
+
<scene name='97/973102/C-terminal/1'>Hypervariable C-terminal</scene>: <span style="color:orange;background-color:white;font-weight:bold;">The C-terminal region (in blue)</span> of RhoA undergoes prenylation, a post-translational modification where a prenyl lipid group (such as farnesyl or geranylgeranyl) is attached. Prenylation allows RhoA to anchor to cell membranes, facilitating its localization and interaction with membrane-associated proteins.
-
 
+
-
C-terminal Prenylation Site: The C-terminal region of RhoA undergoes prenylation, a post-translational modification where a prenyl lipid group (such as farnesyl or geranylgeranyl) is attached. Prenylation allows RhoA to anchor to cell membranes, facilitating its localization and interaction with membrane-associated proteins.
+

Revision as of 02:48, 26 June 2023

3D rhoA GTP structure

Drag the structure with the mouse to rotate

References

  1. Jaffe AB, Hall A. Rho GTPases: biochemistry and biology. Annu Rev Cell Dev Biol. 2005;21:247-69. PMID:16212495 doi:10.1146/annurev.cellbio.21.020604.150721
  2. Bros M, Haas K, Moll L, Grabbe S. RhoA as a Key Regulator of Innate and Adaptive Immunity. Cells. 2019 Jul 17;8(7):733. PMID:31319592 doi:10.3390/cells8070733
  3. Hetmanski JH, Zindy E, Schwartz JM, Caswell PT. A MAPK-Driven Feedback Loop Suppresses Rac Activity to Promote RhoA-Driven Cancer Cell Invasion. PLoS Comput Biol. 2016 May 3;12(5):e1004909. PMID:27138333 doi:10.1371/journal.pcbi.1004909
  4. Schmidt SI, Blaabjerg M, Freude K, Meyer M. RhoA Signaling in Neurodegenerative Diseases. Cells. 2022 May 1;11(9):1520. PMID:35563826 doi:10.3390/cells11091520
  5. Xu H, Yang J, Gao W, Li L, Li P, Zhang L, Gong YN, Peng X, Xi JJ, Chen S, Wang F, Shao F. Innate immune sensing of bacterial modifications of Rho GTPases by the Pyrin inflammasome. Nature. 2014 Sep 11;513(7517):237-41. doi: 10.1038/nature13449. Epub 2014 Jun 11. PMID:24919149 doi:http://dx.doi.org/10.1038/nature13449
  6. Shimizu T, Ihara K, Maesaki R, Kuroda S, Kaibuchi K, Hakoshima T. An open conformation of switch I revealed by the crystal structure of a Mg2+-free form of RHOA complexed with GDP. Implications for the GDP/GTP exchange mechanism. J Biol Chem. 2000 Jun 16;275(24):18311-7. PMID:10748207 doi:10.1074/jbc.M910274199
  7. Schmidt SI, Blaabjerg M, Freude K, Meyer M. RhoA Signaling in Neurodegenerative Diseases. Cells. 2022 May 1;11(9):1520. PMID:35563826 doi:10.3390/cells11091520

Proteopedia Page Contributors and Editors (what is this?)

Matheus Andrade Bettiol

Personal tools