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  <title><![CDATA[2017 VWR Seminar: Building Chromatin: Assembly and Evolution of Nucleosomes]]></title>
  <body><![CDATA[<p><strong>Karolin Luger</strong><br />
<strong>HHMI Investigator<br />
Jennie-Smoly-Caruthers Endowed Chair of Chemistry and Biochemistry<br />
University of Colorado</strong></p>

<p>Abrstact:</p>

<p>Nucleosome assembly in the wake of DNA replication is a key process that regulates cell identity and survival. Chromatin assembly factor 1 (CAF-1) is a H3-H4 histone chaperone that associates with the replisome and orchestrates chromatin assembly following DNA synthesis. Little is known about the mechanism and structure of this key complex. We investigate CAF-1 &ndash; histone binding modes and describe an intriguing &lsquo;snap-on&rsquo; mechanism by which CAF-1 assembles nucleosomes.</p>

<p>In contrast to eukaryotes, many archaea have histone-based chromatin that does not require assembly factors. I will present the structure of archaeal chromatin, and discuss possible implications for the origins of the eukaryotic nucleosome.</p>

<p>&nbsp;</p>

<p><strong><em>A lunch reception will follow the seminar in EBB 5029 at 12 PM.</em></strong></p>
]]></body>
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      <value><![CDATA[<p><strong>Karolin Luger</strong><br />
<strong>HHMI Investigator<br />
Jennie-Smoly-Caruthers Endowed Chair of Chemistry and Biochemistry<br />
University of Colorado</strong></p>

<p>Abrstact:</p>

<p>Nucleosome assembly in the wake of DNA replication is a key process that regulates cell identity and survival. Chromatin assembly factor 1 (CAF-1) is a H3-H4 histone chaperone that associates with the replisome and orchestrates chromatin assembly following DNA synthesis. Little is known about the mechanism and structure of this key complex. We investigate CAF-1 &ndash; histone binding modes and describe an intriguing &lsquo;snap-on&rsquo; mechanism by which CAF-1 assembles nucleosomes.</p>

<p>In contrast to eukaryotes, many archaea have histone-based chromatin that does not require assembly factors. I will present the structure of archaeal chromatin, and discuss possible implications for the origins of the eukaryotic nucleosome.</p>

<p>&nbsp;</p>

<p><strong><em>A lunch reception will follow the seminar in EBB 5029 at 12 PM.</em></strong></p>
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