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<div style="top:+0.2em; font-size:1.2em; padding:5px 5px 5px 10px; float:right;">'''''ISSN 2310-6301'''''</div>
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      <div style="position:relative; top:0.2em; font-size:1.2em; padding:5px 5px 5px 10px; float:right;"><b><i>ISSN 2310-6301</i></b></div>


<span style="border:none; margin:0; padding:0.3em; color:#000; font-style: italic; font-size: 1.4em;">
      <span style="border:none; margin:0; padding:0.3em; color:#000; font-style:italic; font-size:1.4em; display:block;">
<b>As life is more than 2D</b>, Proteopedia helps to bridge the gap between 3D structure & function of biomacromolecules
        <b>As life is more than 2D</b>, Proteopedia helps to bridge the gap between 3D structure &amp; function of biomacromolecules
</span>
      </span>


<span style="border:none; margin:0; padding:0.3em; color:#000; font-style: italic; font-size: 1.1em;max-width:80%;display:block;">
      <span style="border:none; margin:0; padding:0.3em; color:#000; font-style:italic; font-size:1.1em; max-width:80%; display:block;">
<b>Proteopedia</b> presents this information in a user-friendly way as a '''collaborative & free 3D-encyclopedia of proteins & other biomolecules.'''
        <b>Proteopedia</b> presents this information in a user-friendly way as a <b>collaborative &amp; free 3D-encyclopedia of proteins &amp; other biomolecules.</b>
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    <th style="padding:10px; background-color:#33ff7b;">Selected Research Pages</th>
    <th style="padding:10px; background-color:#f1b840;">In Journals</th>
    <th style="padding:10px; background-color:#79baff;">Education</th>
  </tr>


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    <td style="padding:10px; vertical-align:top;">
      <p>[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]]</p>
      <p>[[Proteopedia:Video_Guide|Video Guides]]</p>
      <p>[[Who knows]] ...</p>
    </td>


<!-- headers ... -->
    <td style="padding:10px; vertical-align:top;">
      <p>[[I3DC|About Interactive 3D Complements - '''I3DCs''']]</p>
      <p>[[Proteopedia:I3DC|List of I3DCs]]</p>
      <p>[[How to get an I3DC for your paper]]</p>
    </td>


<tr>
    <td style="padding:10px; vertical-align:top;">
  <th style="padding:10px;background-color:#33ff7b">Selected Research Pages</th>
      <p>[[Teaching strategies using Proteopedia]]</p>
  <th style="padding:10px;background-color:#f1b840">In Journals</th>
      <p>[[Teaching_Scenes%2C_Tutorials%2C_and_Educators%27_Pages|Examples of pages for teaching]]</p>
  <th style="padding:10px;background-color:#79baff">Education</th>
      <p>[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]]</p>
</tr>
    </td>
  </tr>


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    <td style="padding:5px; vertical-align:top;">{{Proteopedia:Featured SEL/{{#expr: {{#time:U}} mod {{Proteopedia:Number of SEL articles}}}}}}</td>
    <p>[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]]</p>
     <td style="padding:5px; vertical-align:top;">{{Proteopedia:Featured JRN/{{#expr: {{#time:U}} mod {{Proteopedia:Number of JRN articles}}}}}}</td>
    <p>[[Proteopedia:Video_Guide|Video Guides]]</p>
     <td style="padding:5px; vertical-align:top;">{{Proteopedia:Featured EDU/{{#expr: {{#time:U}} mod {{Proteopedia:Number of EDU articles}}}}}}</td>
     <p>[[Who knows]] ...</p>
   </tr>
  </td>
  <td style="padding:10px; vertical-align:top;">
    <p>[[I3DC|About Interactive 3D Complements - '''I3DCs''']]</p>
    <p>[[Proteopedia:I3DC|List of I3DCs]]</p>
     <p>[[How to get an I3DC for your paper]]</p>
  </td>
  <td style="padding:10px; vertical-align:top;">
    <p>[[Teaching strategies using Proteopedia]]</p>
    <p>[[Teaching_Scenes%2C_Tutorials%2C_and_Educators%27_Pages|Examples of pages for teaching]]</p>
    <p>[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]]</p>
   </td>
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  <td style="padding:5px;">{{Proteopedia:Featured JRN/{{#expr: {{#time:U}} mod {{Proteopedia:Number of JRN articles}}}}}}</td>
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          <td>[[Proteopedia:About|About]]</td>
 
          <td>[[Special:Contact|Contact]]</td>
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          <td>[[Template:MainPageNews|Hot News]]</td>
 
          <td>[[Proteopedia:Table of Contents|Table of Contents]]</td>
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          <td>[[Proteopedia:Structure Index|Structure Index]]</td>
<table width='100%' style="padding: 10px; background-color: #d7d8f9; font-size: 1.5em;"><tr>  
          <td>[[Help:Contents|Help]]</td>
<td>[[Proteopedia:About|About]]</td>
        </tr>
<td>[[Special:Contact|Contact]]</td>
      </table>
<td>[[Template:MainPageNews|Hot News]]</td>
    </td>
<td>[[Proteopedia:Table of Contents|Table of Contents]]</td>
  </tr>
<td>[[Proteopedia:Structure Index|Structure Index]]</td>
<td>[[Help:Contents|Help]]</td>
</tr></table>
</td></tr>
</table>
</table>

Revision as of 15:54, 30 September 2025

ISSN 2310-6301
     
       As life is more than 2D, Proteopedia helps to bridge the gap between 3D structure & 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

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

Coronavirus Spike Protein Membrane Fusion

by Eric Martz
SARS-CoV-2 spike protein "spears" the host membrane with a fusion peptide and drags the virus envelope membrane transmembrane domain close to the host membrane, initiating fusion. This moves the virus RNA genome into the host cell, initiating infection.
>>> Visit this page >>>

Geobacter pili: surprising function.

Y Gu, V Srikanth, AI Salazar-Morales, R Jain, JP O'Brien, SM Yi, RK Soni, FA Samatey, SE Yalcin, NS Malvankar. Nature 2021 doi: 10.1038/s41586-021-03857-w
Geobacter pili were long thought to be electrically conductive protein nanowires composed of PilA-N. Nanowires are crucial to the energy metabolism of bacteria flourishing in oxygen-deprived environments. To everyone's surprise, in 2019, the long-studied nanowires were found to be linear polymers of multi-heme cytochromes, not pili. The first cryo-EM structure of pili (2021) reveals a filament made of dimers of PilA-N and PilA-C, shown. Electrical conductivity of pili is much lower than that of cytochrome nanowires. Evidence suggests that PilA-NC filaments are periplasmic pseudopili crucial for exporting cytochrome nanowires onto the cell surface, rather than the pili serving as nanowires themselves.

>>> Visit I3DC Interactive Visualizations >>>

Make Your Own Electrostatic Potential Maps

Positive (+) and Negative (-) charges on the surface of a protein molecule play crucial roles in its interactions with other molecules, and hence in its functions. Electrostatic potential maps coloring the surface of a protein molecule are a popular way to visualize the distribution of surface charges. Easy to use free software is available to to create these surface maps. Above is an integral membrane potassium channel protein. One of its 4 identical chains is removed so you can see the Negative (-) protein surface contacting the 3 K+ ions.

>>> See Examples and Get Instructions >>>

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