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BEGIN:VEVENT
UID:2026091612182220140912T11000020140912T1200006aa9e04e93247@uic.edu
CATEGORIES:MEETING
STATUS:TENTATIVE
DTSTAMP:20190625T034745
DTSTART:20140912T110000
DTEND:20140912T120000
SUMMARY:David Terrell, California Institute of Technology, Division of Chemistry and Chemical Engineering
DESCRIPTION:Abstract:  Macromolecular chemistry has traditionally been divided into two fields, with biochemists and biochemical engineers working on proteins and nucleic acids while polymer chemists and materials scientists have concerned themselves with synthetic polymers. These two classes of macromolecules are profoundly different from one another; proteins and nucleic acids are uniform, well folded, and evolvable, whereas polymers are heterogeneous and for the most part adopt random-coil conformations. These differences in molecular structure and behavior have led to striking differences in the ways in which natural and synthetic polymers are used ? largely for information storage and transfer in biology, and largely as materials in the technological world. This lecture will describe an ongoing attempt to bridge the gap between polymers and proteins by using artificial genes to direct the synthesis of artificial proteins in bacterial cells, and to combine the physical and informational properties of macromolecules. | Event post: https://che.uic.edu/events?page_id=1653
LOCATION:1000 SEO 851 S. Morgan St.  Chicago IL 60612
CLASS:PRIVATE
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