This old version of Proteopedia is provided for student assignments while the new version is undergoing repairs. Content and edits done in this old version of Proteopedia after March 1, 2026 will eventually be lost when it is retired in about June of 2026.
Apply for new accounts at the new Proteopedia. Your logins will work in both the old and new versions.
Sandbox Reserved 1127
From Proteopedia
(Difference between revisions)
| Line 27: | Line 27: | ||
cGMP is hydrolyzed in GMP. The catalytic chemical reaction deals with breaking a phosphodiester bound in cGMP between the 3'O of the guanoside and the phosphate of cGMP: cGMP + H20 => GMP. | cGMP is hydrolyzed in GMP. The catalytic chemical reaction deals with breaking a phosphodiester bound in cGMP between the 3'O of the guanoside and the phosphate of cGMP: cGMP + H20 => GMP. | ||
| - | The catalytic domain is able to bind ligands thanks to an <scene name='71/719868/Hydro/1'>hydrophobic pocket</scene> (<span style="color:magenta;background-color:black;font-weight:bold;">hydrophylic domain</span>. Moreover with this <scene name='71/719868/Conserve/1'>animation scene</scene> it appears the cGMP binding site in the catalytic domain is <span style="color:darkred;background-color:black;font-weight:bold;">more conserved</span>than the the rest of the domain that could be <span style="color:lightseagreen;background-color:black;font-weight:bold;">variable</span>. | + | The catalytic domain is able to bind ligands thanks to an <scene name='71/719868/Hydro/1'>hydrophobic pocket</scene> (<span style="color:magenta;background-color:black;font-weight:bold;">hydrophylic domain</span>. Moreover with this <scene name='71/719868/Conserve/1'>animation scene</scene> it appears the cGMP binding site in the catalytic domain is <span style="color:darkred;background-color:black;font-weight:bold;">more conserved</span>than the the rest of the domain that could be <span style="color:lightseagreen;background-color:black;font-weight:bold;">variable</span>. <span style="color:yellow;background-color:black;font-weight:bold;">Sildenafil is in yellow</span> |
Some residues could be affected by post traductional modifications : | Some residues could be affected by post traductional modifications : | ||
| Line 33: | Line 33: | ||
acylation : K364. | acylation : K364. | ||
ubiquitinylation : K714. | ubiquitinylation : K714. | ||
| - | The ubiquitinylation of <scene name='71/719868/K714/1'>K714</scene> | + | The <span style="color:fuchsia;background-color:black;font-weight:bold;">ubiquitinylation)</span> of <scene name='71/719868/K714/1'>K714</scene> and the <span style="color:gold;background-color:black;font-weight:bold;">phosphorylation</span> of <scene name='71/719868/S869/1'>S869</scene> (in yellow) are present in the catalytic site and the phosphorylation of S819 is involved in cGMP binding. |
== Inhibitors and medical application == | == Inhibitors and medical application == | ||
| Line 39: | Line 39: | ||
Inhibitors of PDE5 prevent cGMP from binding the catalytic site by competititve inhibition. They have more affinity for this domain than cGMP. | Inhibitors of PDE5 prevent cGMP from binding the catalytic site by competititve inhibition. They have more affinity for this domain than cGMP. | ||
Sildenafil (active substance of Viagra) binds to PDE5 catalytic domain through: | Sildenafil (active substance of Viagra) binds to PDE5 catalytic domain through: | ||
| - | ** | + | **<scene name='71/719868/Sildenafil/1'>hydrogen bonds</scene> made between <span style="color:lime;background-color:black;font-weight:bold;">Gln775 and Gln817 of PDE5</span> and <span style="color:red;background-color:black;font-weight:bold;">Sildenafil</span> |
| - | **Mg2+: coordination bond made with <scene name='71/719868/Mg/1'>Mg2+</scene> in catalytic site | + | **<span style="color:darkorange;background-color:black;font-weight:bold;">Mg2+</span>: coordination bond made with <scene name='71/719868/Mg/1'>Mg2+</scene> in catalytic site |
| - | **Zn2+: coordination bond made with <scene name='71/719868/Zn/1'>Zn2+</scene> in catalytic site | + | **<span style="color:aqua;background-color:black;font-weight:bold;">Zn2+</span>: coordination bond made with <scene name='71/719868/Zn/1'>Zn2+</scene> in catalytic site |
Revision as of 18:26, 30 January 2016
| This Sandbox is Reserved from 15/12/2015, through 15/06/2016 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1120 through Sandbox Reserved 1159. |
To get started:
More help: Help:Editing |
Human PDE5
| |||||||||||
