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=='''Estrogen receptor beta/p-hydroxybenzene sulfonamide complexes (2yly)<ref>PMID: 21885279 </ref>'''==
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by Benjamin Homyak, Soo Lim Park, Marissa Burgess
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=='''YourMacromolecule'''==
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[[Student Projects for UMass Chemistry 423 Spring 2016]]
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<StructureSection load='2yly' size='350' side='right' caption='p-hydroxybenzenesulphonamides ERb receptor (PDB entry [[2yly]])' scene=''>
==Introduction==
==Introduction==
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<Structure load='1stp' size='300' frame='true' align='right' caption='pdbcode, Insert caption here' scene='Insert optional scene name here' />
 
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This is a sample scene created with SAT to <scene name="/12/3456/Sample/1">color</scene> by Group, and another to make <scene name="/12/3456/Sample/2">a transparent representation</scene> of the protein.
 
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<br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br>
 
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Estrogen receptors are proteins found on and inside of the cell. When activated by estrogen these receptors are important in sexual maturation and gestation. There are two types of estrogen receptors that exist which include nuclear estrogen receptors (ERα and ERβ), which are included in the nuclear receptor family of intracellular receptors, and membrane estrogen receptors.
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A series of p-hydroxybenzenesulphonamides ERβ receptor agonists discovered along with various compounds listed showed selectivity over the ERα receptor. Overall, they found that compound 11 showed better binding conformation determined by X-ray, and presents a better starting point for the journey to find a more selective ERβ agonist.
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Looking at the gonadal steroid hormone estradiol,1, action is performed through estrogen subtypes, ERα and ERβ. The detrimental effects of ERβ in comparison to the proliferative effects ERα are found to inhibit breast and endometrial tissue compared to ERα and could potentially be responsible for the immunomodulatory and neuropharmacalogical behavior of estradiol 1,2. The interest in the therapeutic benefits of selective ERβ agonists to combatant various conditions including endometriosis and inflammatory bowel disease.
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This is an overall scene with the beta sheets in purple and the alpha helices in ball and stick figures <scene name='48/483890/Ben_homyak_overall_structure/1'>Overall Structure</scene>
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Here is another scene with a rainbow diagram description of the whole molecule
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<scene name='48/483890/2yly_overall_diagram/3'>Rainbow diagram</scene>
==Overall Structure==
==Overall Structure==
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<Structure load='1a84' size='300' frame='true' align='right' caption='pdbcode, insert caption here' scene='Sandbox_Reserved_430/Intra-strand_phosphate/1' />
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The assembly composition of the 2yly protein is a homodimer. (Quaternary structure)
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==Binding Interactions==
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The DNA Binding domain is located in the C region, which is highly conserved. The ligand binding domain is located at the C terminus in the E and F regions. The ligand binding domain is often called the “three-layered anti-parallel α helical sandwich” because it contains 12 alpha helices along with one beta hairpin. Sites for dimerization and nuclear localization are located in the the D region, which is poorly conserved. Both ERα and ERβ have several splice variants, with ERα having over 20 and ERβ having 5.
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<Structure load='1a84' size='300' frame='true' align='right' caption='pdbcode, Insert caption here' scene='Insert optional scene name here' />
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==Additional Features==
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The 2yly protein's secondary structure consists of mostly alpha helices (148 residues) and only two beta strands (6 residues) on the outside of the receptor shown below with the alpha helices showing polar and non-polar parts of the chain. The beta sheets are shown in yellow in the second green scene.
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<Structure load='1a84' size='300' frame='true' align='right' caption='pdbcode, Insert caption here' scene='Insert optional scene name here' />
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==Quiz Question 1==
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- <scene name='48/483890/2yly_alpha_helicies/1'>Alpha Helices</scene>, and <scene name='48/483890/2yly_beta_sheets/1'>Beta Sheets</scene>
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<Structure load='1a84' size='300' frame='true' align='right' caption='pdbcode, Insert caption here' scene='Insert optional scene name here' />
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==Quiz Question 2==
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- Tertiary Structure
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<Structure load='1a84' size='300' frame='true' align='right' caption='pdbcode, Insert caption here' scene='Insert optional scene name here' />
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==See Also==
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- Polar- Pink, Hydrophobic- Grey <scene name='48/483890/2yly_polar_hydrophobic/1'>Polar and Nonpolar Groups</scene>
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*[[UvrABC]]
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*Glycogen Synthase Kinase 3 [http://www.proteopedia.org/wiki/index.php/GSK-3, Glycogen Synthase Kinase 3]
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- Surface groups (orange) vs. Buried groups (blue) <scene name='48/483890/2yly_surface_buried/1'>Check it out</scene>
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==Credits==
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==Binding Interactions==
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Introduction - name of team member
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Among the series of p-hydroxybenzene sulfonamide ERβ receptor agonists discovered, protein 2yly has been identified for great selectivity over the related ERα receptor. Protein 2yly was originally designed to form an interaction with the His 475 through the tertiary hydroxyl group. However, the hydroxyl group serves as a conformational lock to form an internal hydrogen bond with the <scene name='48/483890/Soolim_binding/1'>sulphonamide oxygen </scene> about 2.3 Å apart.<sup>[1]</sup>
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Overall Structure - name of team member
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Internally packed against the phenyl group is the cyclopropyl group with large <scene name='48/483890/Soolim_hydrophobic/1'>hydrophobic interactions</scene> (shown in gray) between Ile 373 and both the benzyl and chiral methyl groups. The sulphonamide oxygens come in close contact with Met 336 and the benzyl group of the ligand comes near His 475 but there are no coulombic interactions formed. Depending on the functional group placed either next to the tertiary hydroxyl group or on the benzyl ring, further Van der Waals interactions can be seen within the lipophilic pocket. In other words, depending on the polarity of the group attached to the sulphonamide, interactions with His 475 will be varied.
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Drug Binding Site - name of team member
 
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Additional Features - name of team member
 
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Quiz Question 1 - name of team member
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==See Also==
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*[[http://www.proteopedia.org/wiki/index.php/Estrogen_receptor Estrogen Receptor]]
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*[[http://www.proteopedia.org/wiki/index.php/1yy4 1yy4]]
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*[[http://www.proteopedia.org/wiki/index.php/1u3s 1u3s]]
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*[[http://www.proteopedia.org/wiki/index.php/1x78 1x78]]
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*[[http://www.proteopedia.org/wiki/index.php/1qkm 1qkn]]
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==Credits==
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Introduction - Benjamin Homyak
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Overall Structure - Marissa Burgess
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Quiz Question 2 - name of team member
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Drug Binding Site - Soo Lim Park
==References==
==References==
<references/>
<references/>

Current revision


This Sandbox is Reserved from January 19, 2016, through August 31, 2016 for use for Proteopedia Team Projects by the class Chemistry 423 Biochemistry for Chemists taught by Lynmarie K Thompson at University of Massachusetts Amherst, USA. This reservation includes Sandbox Reserved 425 through Sandbox Reserved 439.


Estrogen receptor beta/p-hydroxybenzene sulfonamide complexes (2yly)[1]

by Benjamin Homyak, Soo Lim Park, Marissa Burgess

Student Projects for UMass Chemistry 423 Spring 2016

p-hydroxybenzenesulphonamides ERb receptor (PDB entry 2yly)

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