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<div style="top:+0.2em; font-size:1.2em; padding:5px 5px 5px 10px; float:right;">'''''ISSN 2310-6301'''''</div>
<div id="issn">'''''ISSN 2310-6301'''''</div>
 
<div id="headerOne">As <b>life is more than 2D</b>, Proteopedia helps to bridge the gap between 3D structure and function of biomacromolecules.</div>
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<div id="headerTwo"><b>Proteopedia</b> presents this information in a user-friendly way as a '''collaborative & free 3D-encyclopedia of proteins & other biomolecules.'''
<b>As life is more than 2D</b>, Proteopedia helps to bridge the 3D relationships between function & structure of biomacromolecules
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<th style="padding: 10px;background-color: #33ff7b">Selected Pages</th>
<th style="padding: 10px;background-color: #dae4d9">Art on Science</th>
<th style="padding: 10px;background-color: #f1b840">Journals</th>
<th style="padding: 10px;background-color: #79baff">Education</th>
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<tr id="mainPageSections"><th class="mainPageSectionA">Selected Research Pages</th>
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<th class="mainPageSectionB">In Journals</th>
<td style="padding: 5px;"> {{Proteopedia:Featured SEL/{{#expr: {{#time:U}} mod {{Proteopedia:Number of SEL articles}}}}}}</td>
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<p>[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]]</p>
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<p>[[Proteopedia:Video_Guide|Video Guides]]</p>
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<p>[[Who knows]] ...</p>
[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]] <br>
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[[Proteopedia:Video_Guide|Video Guides]] <br>
 
[[Who knows]] ...
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<p>[[:Category:PDB Art|List of Art on Science pages in Proteopedia]]</p>
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<p>[[I3DC|What is an Interactive 3D Complement ('''I3DC''')? ]]</p>
[[I3DC|About Interactive 3D Complements - '''I3DCs''']] <br>
<p>[[Proteopedia:I3DC|List of I3DCs]]</p>
[[Proteopedia:I3DC|List of I3DCs]] <br>
<p>[[How to get an I3DC for your paper]]</p>
[[How to get an I3DC for your paper]]
 
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<p>[[Teaching Strategies Using Proteopedia]]</p>
[[Teaching strategies using Proteopedia]] <br>
<p>[[Teaching_Scenes%2C_Tutorials%2C_and_Educators%27_Pages|Examples of Pages for Teaching]]</p>
[[Teaching_Scenes%2C_Tutorials%2C_and_Educators%27_Pages|Examples of pages for teaching]] <br>
<p>[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]]</p>
[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]]
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<table width='100%' style="padding: 10px; background-color: #d7d8f9; font-size: 1.5em;"><tr>  
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<td>[[Proteopedia:About|About]]</td>
<td>[[Proteopedia:About|About]]</td>
<td>{{Template:Contact}}</td>
<td>[[Special:Contact|Contact]]</td>
<td>[[Template:MainPageNews|Hot News]]</td>
<td>[[Proteopedia:Table of Contents|Table of Contents]]</td>
<td>[[Proteopedia:Table of Contents|Table of Contents]]</td>
<td>[[Proteopedia:Structure Index|Structure Index]]</td>
<td>[[Proteopedia:Structure Index|Structure Index]]</td>
<td>[[Help:Contents|Help]]</td>
<td>[[Help:Contents|Help]]</td>
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Latest revision as of 15:44, 16 February 2026

ISSN 2310-6301
As life is more than 2D, Proteopedia helps to bridge the gap between 3D structure and function of biomacromolecules.
Proteopedia presents this information in a user-friendly way as a collaborative & free 3D-encyclopedia of proteins & other biomolecules.
Selected Research Pages In Journals Education
Bacteria float with nano-balloons.

ST Huber, D Terwiel, WH Evers, D Maresca, AJ Jakobi. Preprint 2022 doi: 10.1101/2022.05.08.489936
Many kinds of bacteria and archaea control their buoyancy to move to optimal positions in liquid environments. They do this by making nano-compartments called "gas vesicles", long "pipes" with closed ends filled with gases. In 2022, gas vesicle structure was solved, revealing self-assembling thin-walled cylinders of remarkable strength with gas-permeable pores and water-repelling (hydrophobic) interiors. Building on this structural knowledge, gas vesicles are being engineered to serve as biosensors that report via ultrasound.

>>> Visit I3DC Interactive Visualizations >>>

Structure of Anticancer Ruthenium Half-Sandwich Complex Bound to Glycogen Synthase Kinase 3ß

G Atilla-Gocumen, L Di Costanzo, E Meggers. J Biol Inorg Chem. 2010 doi: 10.1007/s00775-010-0699-x
A crystal structure of an organometallic half-sandwich ruthenium complex bound to glycogen synthase kinase 3ß (GSK-3ß) reveals that the inhibitor binds to the ATP binding site via an induced fit mechanism utilizing several hydrogen bonds and hydrophobic interactions. Importantly, the metal is not involved in any direct interaction with the protein kinase but fulfills a purely structural role.

>>> Visit this I3DC complement >>>

Touch-Sensitive Channel

Touching stretches cell membranes, opening mechanosensitive ion channels, leading to sensation by the nervous system. Pictured is the transmembrane region of a similar channel in bacteria. When closed, the narrow opening is lined by hydrophobic amino acid sidechains, making it non-conductive to ions.

>>> See more animations and explanation >>>

     

How to add content to Proteopedia
Video Guides
Who knows ...

About Interactive 3D Complements - I3DCs
List of I3DCs
How to get an I3DC for your paper

Teaching strategies using Proteopedia
Examples of pages for teaching
How to add content to Proteopedia

Proteopedia Page Contributors and Editors (what is this?)

Jaime Prilusky, Joel L. Sussman, Angel Herraez