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<html><IMG SRC="http://web.mit.edu/giving/spectrum/winter07/powering-up/images/biofuels/greg.jpg" ALT="gregory stephanopoulos" width="353" BORDER="0">
<html><IMG SRC="http://web.mit.edu/giving/spectrum/winter07/powering-up/images/biofuels/greg.jpg" ALT="gregory stephanopoulos" width="390" BORDER="0">
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Greg Stephanopoulos’ lab work includes efforts to create microbes that can help convert sugars from certain types of plants into ethanol.
Greg Stephanopoulos’ lab work includes efforts to create microbes that can help convert sugars from certain types of plants into ethanol.
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<html><IMG SRC="http://web.mit.edu/newsoffice/2006/peptide-grammar.jpg" BORDER="0">
<p><br>
<a href="http://web.mit.edu/newsoffice/2006/peptide-grammar.html">Anti-microbial 'grammar' posits new language of healing</a>
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<u><b>*Bio.in.for.mat.ics:</b></u> <i>(bI-O-"in-f&r-'ma-tiks)</i> The collection, classification, storage, and analysis of biochemical and biological information using computers, especially as applied in molecular genetics and genomics.
<html><IMG SRC="http://web.mit.edu/newsoffice/2006/biofuels.jpg" BORDER="0">
<p><br>
<a href="web.mit.edu/newsoffice/2006/biofuels.html">Engineered yeast improves ethanol production</a>
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<b><u>*Metabolic Engineering:</u></b> The rational redesign - typically using genetic engineering - of organisms to meet commercial objectives, by the modification of existing - or the introduction of entirely new - metabolic pathways.
<b><u>*Metabolic Engineering:</u></b> The rational redesign - typically using genetic engineering - of organisms to meet commercial objectives, by the modification of existing - or the introduction of entirely new - metabolic pathways.

Revision as of 13:43, 25 May 2007

Stephanopoulos Lab logo

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Welcome


Welcome to the Bioinformatics & Metabolic Engineering Laboratory at M.I.T. Our Research - led by Professor Greg Stephanopoulos of the Chemical Engineering Department - concentrates on a few diverse challenges in the fields of Metabolic Engineering and Bioinformatics*.


<html><IMG SRC="http://web.mit.edu/giving/spectrum/winter07/powering-up/images/biofuels/greg.jpg" ALT="gregory stephanopoulos" width="390" BORDER="0"> <br> Greg Stephanopoulos’ lab work includes efforts to create microbes that can help convert sugars from certain types of plants into ethanol. </html>

<html><IMG SRC="http://web.mit.edu/newsoffice/2006/peptide-grammar.jpg" BORDER="0"> <p><br> <a href="http://web.mit.edu/newsoffice/2006/peptide-grammar.html">Anti-microbial 'grammar' posits new language of healing</a> </html>

<html><IMG SRC="http://web.mit.edu/newsoffice/2006/biofuels.jpg" BORDER="0"> <p><br> <a href="web.mit.edu/newsoffice/2006/biofuels.html">Engineered yeast improves ethanol production</a> </html>

Open Positions

If you are interested in becoming a researcher in our laboratory, please read about the opportunities that are available immediately, or send an e-mail to gnswebpage-www@mit.edu.

*Metabolic Engineering: The rational redesign - typically using genetic engineering - of organisms to meet commercial objectives, by the modification of existing - or the introduction of entirely new - metabolic pathways.


*Bio.in.for.mat.ics: (bI-O-"in-f&r-'ma-tiks) The collection, classification, storage, and analysis of biochemical and biological information using computers, especially as applied in molecular genetics and genomics.



Address

Department of Chemical Engineering

Massachusetts Institute of Technology

77 Massachusetts Ave,

Room 56-469

Cambridge, MA 02139

MIT | HOME

Last Modified:
Monday, March 3, 2008 - by afi.


gnswebpage-www@mit.edu

Telephones

office | 617.258.0398

lab | 617.253.6591

lab | 617.258.0349

lab | 617.253.6521

fax | 617.253.3122