Lidstrom:Journal Club: Difference between revisions

From OpenWetWare
Jump to navigationJump to search
Line 13: Line 13:
| 2013/10/18 || ???? ||  || ????
| 2013/10/18 || ???? ||  || ????
|-
|-
| 2013/10/18 || Aaron ||  || ?????
| 2013/10/18 || Aaron ||  || Amanda
|-
|-
| 2013/10/11 || Mila ||  || ??????
| 2013/10/11 || Mila ||  || Mila
|-
|-
| 2013/10/04 || Alexey || [http://www.ncbi.nlm.nih.gov/pubmed/16612385 Ro DK et al. Production of the antimalarial drug precursor artemisinic acid in engineered yeast. ''Nature'' (2006)] || Alexey
| 2013/10/04 || Alexey || [http://www.ncbi.nlm.nih.gov/pubmed/16612385 Ro DK et al. Production of the antimalarial drug precursor artemisinic acid in engineered yeast. ''Nature'' (2006)] || ?????
|-
|-
| 2013/09/20 || Amanda || [http://www.ncbi.nlm.nih.gov/pubmed/19838166 Barrick et al. Genome evolution and adaptation in a long-term experiment with Escherichia coli. ''Nature'' (2009)] || Janet
| 2013/09/20 || Amanda || [http://www.ncbi.nlm.nih.gov/pubmed/19838166 Barrick et al. Genome evolution and adaptation in a long-term experiment with Escherichia coli. ''Nature'' (2009)] || Janet

Revision as of 11:46, 1 October 2013

Back to Lidstrom

The Lidstrom Lab journal club is held from 9:30-10:30 AM on Fridays in the 4th floor conference room.

Journal Club Schedule

Date Presenter Paper Snack Provider
2013/10/18 ???? ????
2013/10/18 Aaron Amanda
2013/10/11 Mila Mila
2013/10/04 Alexey Ro DK et al. Production of the antimalarial drug precursor artemisinic acid in engineered yeast. Nature (2006) ?????
2013/09/20 Amanda Barrick et al. Genome evolution and adaptation in a long-term experiment with Escherichia coli. Nature (2009) Janet
2013/09/13 Frances Nakagawa T et al. A catalytic role of XoxF1 as La3+-dependent methanol dehydrogenase in Methylobacterium extorquens strain AM1. PLoS One (2012) Bo
2013/09/06 Igor Dekas et al. Deep-sea archaea fix and share nitrogen in methane-consuming microbial consortia. Science (2009) Frances
2013/08/30 Mila Haroon et al. Anaerobic oxidation of methane coupled to nitrate reduction in a novel archaeal lineage. Nature (2013) Mila
2013/08/23 Amanda Blount et al. Historical contingency and the evolution of a key innovation in an experimental population of Escherichia coli. PNAS (2008) That Guy Dave
2013/08/16 Yanfen Schuetz R et al. Multidimensional optimality of microbial metabolism. Science (2012). Mila
2013/08/09 Nate Okubo Y et al. Alternative route for glyoxylate consumption during growth on two-carbon compounds by Methylobacterium extorquens AM1. J Bacteriol (2010). Janet
2013/08/02 Aaron Ettwig KF et al. Nitrite-driven anaerobic methane oxidation by oxygenic bacteria. Nature (2010). Amanda
2013/07/26 Alexey Ajikumar PK et al. Isoprenoid pathway optimization for Taxol precursor overproduction in Escherichia coli. Science (2010). Aaron
2013/07/19 Bo Erb TJ et al. Synthesis of C5-dicarboxylic acids from C2-units involving crotonyl-CoA carboxylase/reductase: the ethylmalonyl-CoA pathway. Proc Natl Acad Sci (2007). :(
2013/07/12 Frances Balasubramanian R et al. Oxidation of methane by a biological dicopper centre. Nature (2010). Amanda
2013/06/28 Aaron Chistoserdova L et al. C1 transfer enzymes and coenzymes linking methylotrophic bacteria and methanogenic Archaea. Science (1998). Frances