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      <title><![CDATA[Protein #Bioinformatics]]></title>
      <description><![CDATA[Protein #Bioinformatics

This year’s chemistry laureates Demis Hassabis and John Jumper have developed an AI model, #AlphaFold2, to solve a 50-year-old problem: predicting proteins’ complex structures.

#NobelPrize

𝗪𝗵𝗮𝘁 𝗶𝘀 𝗮 𝗣𝗿𝗼𝘁𝗲𝗶𝗻? Learn about the 3D shape and function of macromolecules from the Protein Data Bank (#PDB).


Introduction to #𝗰𝗿𝘆𝘀𝘁𝗮𝗹𝗹𝗼𝗴𝗿𝗮𝗽𝗵𝘆 through cartoons from…]]></description>
             <itunes:subtitle><![CDATA[Protein #Bioinformatics

This year’s chemistry laureates Demis Hassabis and John Jumper have developed an AI model, #AlphaFold2, to solve a 50-year-old problem: predicting proteins’ complex structures.

#NobelPrize

𝗪𝗵𝗮𝘁 𝗶𝘀 𝗮 𝗣𝗿𝗼𝘁𝗲𝗶𝗻? Learn about the 3D shape and function of macromolecules from the Protein Data Bank (#PDB).


Introduction to #𝗰𝗿𝘆𝘀𝘁𝗮𝗹𝗹𝗼𝗴𝗿𝗮𝗽𝗵𝘆 through cartoons from…]]></itunes:subtitle>
      <pubDate>Wed, 09 Oct 2024 18:36:57 GMT</pubDate>
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      <category>Bioinformatics</category>
      
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      <content:encoded><![CDATA[<p>Protein <a href='/tag/bioinformatics/'>#Bioinformatics</a><br><br>This year’s chemistry laureates Demis Hassabis and John Jumper have developed an AI model, <a href='/tag/alphafold2/'>#AlphaFold2</a>, to solve a 50-year-old problem: predicting proteins’ complex structures.<br><br><a href='/tag/nobelprize/'>#NobelPrize</a><br><br>𝗪𝗵𝗮𝘁 𝗶𝘀 𝗮 𝗣𝗿𝗼𝘁𝗲𝗶𝗻? Learn about the 3D shape and function of macromolecules from the Protein Data Bank (<a href='/tag/pdb/'>#PDB</a>).<br><np-embed url="https://youtu.be/qBRFIMcxZNM"><a href="https://youtu.be/qBRFIMcxZNM">https://youtu.be/qBRFIMcxZNM</a></np-embed><br><br>Introduction to #𝗰𝗿𝘆𝘀𝘁𝗮𝗹𝗹𝗼𝗴𝗿𝗮𝗽𝗵𝘆 through cartoons from the Royal Institution<br><np-embed url="https://youtu.be/gLsC4wlrR2A"><a href="https://youtu.be/gLsC4wlrR2A">https://youtu.be/gLsC4wlrR2A</a></np-embed><br><br>Protein Alphabet Shapes: <a href='/tag/howarthlab/'>#HowarthLab</a> <br><np-embed url="http://www.howarthgroup.org/alphabet"><a href="http://www.howarthgroup.org/alphabet">http://www.howarthgroup.org/alphabet</a></np-embed><br><a href="https://m.primal.net/LQLe.jpg" class="vbx-media" target="_blank"><img class="venobox" src="https://m.primal.net/LQLe.jpg"></a><br><a href="https://m.primal.net/LQLP.jpg" class="vbx-media" target="_blank"><img class="venobox" src="https://m.primal.net/LQLP.jpg"></a></p>
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      <itunes:summary><![CDATA[<p>Protein <a href='/tag/bioinformatics/'>#Bioinformatics</a><br><br>This year’s chemistry laureates Demis Hassabis and John Jumper have developed an AI model, <a href='/tag/alphafold2/'>#AlphaFold2</a>, to solve a 50-year-old problem: predicting proteins’ complex structures.<br><br><a href='/tag/nobelprize/'>#NobelPrize</a><br><br>𝗪𝗵𝗮𝘁 𝗶𝘀 𝗮 𝗣𝗿𝗼𝘁𝗲𝗶𝗻? Learn about the 3D shape and function of macromolecules from the Protein Data Bank (<a href='/tag/pdb/'>#PDB</a>).<br><np-embed url="https://youtu.be/qBRFIMcxZNM"><a href="https://youtu.be/qBRFIMcxZNM">https://youtu.be/qBRFIMcxZNM</a></np-embed><br><br>Introduction to #𝗰𝗿𝘆𝘀𝘁𝗮𝗹𝗹𝗼𝗴𝗿𝗮𝗽𝗵𝘆 through cartoons from the Royal Institution<br><np-embed url="https://youtu.be/gLsC4wlrR2A"><a href="https://youtu.be/gLsC4wlrR2A">https://youtu.be/gLsC4wlrR2A</a></np-embed><br><br>Protein Alphabet Shapes: <a href='/tag/howarthlab/'>#HowarthLab</a> <br><np-embed url="http://www.howarthgroup.org/alphabet"><a href="http://www.howarthgroup.org/alphabet">http://www.howarthgroup.org/alphabet</a></np-embed><br><a href="https://m.primal.net/LQLe.jpg" class="vbx-media" target="_blank"><img class="venobox" src="https://m.primal.net/LQLe.jpg"></a><br><a href="https://m.primal.net/LQLP.jpg" class="vbx-media" target="_blank"><img class="venobox" src="https://m.primal.net/LQLP.jpg"></a></p>
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