Journal:Acta Cryst F:S2053230X25005254
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<jmol> | <jmol> | ||
<jmolButton> | <jmolButton> | ||
- | <script>select *:A.CA; trace .25; moveto /* time, axisAngle */ 1.0 { -487 873 31 81.77} /* zoom, translation */ 107.57 12.67 -5.78 /* center, rotationRadius */ {-16.0325 -36.4115 14.2045} 61.710163 /* navigation center, translation, depth */ {0 0 0} 0 0 0 /* cameraDepth, cameraX, cameraY */ 3.0 0.0 0.0;set zshade on; set zShadePower 2; set perspectiveDepth true;</script> | + | <script>select *:A.CA; trace .25; moveto /* time, axisAngle */ 1.0 { -487 873 31 81.77} /* zoom, translation */ 107.57 12.67 -5.78 /* center, rotationRadius */ {-16.0325 -36.4115 14.2045} 61.710163 /* navigation center, translation, depth */ {0 0 0} 0 0 0 /* cameraDepth, cameraX, cameraY */ 3.0 0.0 0.0;set zshade on; set zShadePower 2; set perspectiveDepth true; |
+ | select (74:A.CA); label "\u03b2-trefold 1"; font label 15 sans; set labeloffset 20 10; color label black; | ||
+ | select (232:A.CA); label "\u03b2-trefold 2"; font label 15 sans; set labeloffset -20 10; color label black; | ||
+ | select (375:A.CA); label "\u03b2-trefold 3"; font label 15 sans; set labeloffset 20 10; color label black; | ||
+ | select (473:A.CA); label "\u03b2-trefold 4"; font label 15 sans; set labeloffset 10 0; color label black;</script> | ||
<text>Zoom in</text> | <text>Zoom in</text> | ||
</jmolButton> | </jmolButton> | ||
- | </jmol>. These differences are mostly found in loop regions, especially in the regions comprising <scene name='10/1084959/016_fig_04_dimer/ | + | </jmol>. These differences are mostly found in loop regions, especially in the regions comprising <scene name='10/1084959/016_fig_04_dimer/22'>3 conformationally variable regions</scene> in β-trefoil domains, Focus on residues region one <scene name='10/1084959/016_fig_04_dimer/19'>49 to 60</scene>; region two <scene name='10/1084959/016_fig_04_dimer/20'>274 to 281</scene>; and region three <scene name='10/1084959/016_fig_04_dimer/21'>395 to 405</scene>. |
<br> | <br> | ||
Fascin1 would only bind actin monomers if there is a proper spatial alignment of its major actin-binding sites. The structural differences between the ‘active’ and ‘inactive’ conformations of Fascin1 are subtle, limited to variations in loop and strand geometry that do not drastically alter the overall fold of the protein. Our results indicate that the protein`s structural flexibility is due to a salt bridge network established between its charged residues. These interactions introduce a certain rigidity into the protein that may or may not be beneficial for the actin binding activity. Specifically, we did not observe the presence of salt bridges between β-trefoil domains 1 and 4, which constitute the ABS1. This absence points to a dynamic region that requires flexibility for the initial contact with actin filaments. | Fascin1 would only bind actin monomers if there is a proper spatial alignment of its major actin-binding sites. The structural differences between the ‘active’ and ‘inactive’ conformations of Fascin1 are subtle, limited to variations in loop and strand geometry that do not drastically alter the overall fold of the protein. Our results indicate that the protein`s structural flexibility is due to a salt bridge network established between its charged residues. These interactions introduce a certain rigidity into the protein that may or may not be beneficial for the actin binding activity. Specifically, we did not observe the presence of salt bridges between β-trefoil domains 1 and 4, which constitute the ABS1. This absence points to a dynamic region that requires flexibility for the initial contact with actin filaments. |
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