Smolke:Journal Club

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#paige pmid=22403384
#paige pmid=22403384
#douglas pmid=22344439
#douglas pmid=22344439
 +
#Zhang F, Carothers J, Keasling JD. Design of a dynamic sensor-regulator system for production of chemicals and fuels derived from fatty acids. Nature Biotechnology 2012, doi:10.1038/nbt.2149
 +
#Valderrama-Rincon JD et al. An engineered eukaryotic protein glycosylation pathway in Escherichia coli. Nature Chemical Biology 2012, doi:10.1038/nchembio.921
</biblio>
</biblio>
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*'''Wargacki et al.''':
*'''Wargacki et al.''':
*'''Paige et al. and Paige et. al.'''
*'''Paige et al. and Paige et. al.'''
-
*'''Douglas et. al.'''
+
*'''Douglas et al.'''
 +
*'''Zhang et al.''': Josh
 +
*'''Valderrama-Rincon et al.''': Josh
==Past Papers==
==Past Papers==

Revision as of 12:41, 27 March 2012

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Contents

Next Meeting

  • When: 1pm 4/5/12
  • Where: 3rd floor green atrium
  • Paper: TBD
  • Moderator: TBD

Suggested Future Papers

Feel free to use PMID for new paper suggestions

  1. The arsenic bacteria paper, the 8 technical comments, and the authors' reply.
  2. Poliseno L, Salmena L, Zhang J, Carver B, Haveman WJ, Pandolfi PP. A coding-independent function of gene and pseudogene mRNAs regulates tumour biology. Nature. 2010 Jun 24;465(7301):1033-8.
  3. Salmena L, Poliseno L, Tay Y, Kats L, Pandolfi PP. A ceRNA Hypothesis: The Rosetta Stone of a Hidden RNA Language? Cell. 2011 Jul 27
  4. Wargacki AJ, et al. An Engineered Microbial Platform for Direct Biofuel Production from Brown Macroalgae. Science. 2012 Jan 20;335(6066):308-13.
Error fetching PMID 21798953:
Error fetching PMID 22403384:
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  1. Error fetching PMID 21798953: [paige]
  2. Error fetching PMID 22403384: [paige]
  3. Error fetching PMID 22344439: [douglas]
  4. F, Carothers J, Keasling JD. Design of a dynamic sensor-regulator system for production of chemicals and fuels derived from fatty acids. Nature Biotechnology 2012, doi:10.1038/nbt.2149 [Zhang]
  5. JD et al. An engineered eukaryotic protein glycosylation pathway in Escherichia coli. Nature Chemical Biology 2012, doi:10.1038/nchembio.921 [Valderrama-Rincon]
All Medline abstracts: PubMed HubMed

Comments on Papers

Voting on Papers

  • Arsenic + comments:
  • Poliseno et al. and Salmena et al:
  • Wargacki et al.:
  • Paige et al. and Paige et. al.
  • Douglas et al.
  • Zhang et al.: Josh
  • Valderrama-Rincon et al.: Josh

Past Papers

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  18. Error fetching PMID 19131595: [lincoln]
  19. Error fetching PMID 19234448: [lam]
  20. Error fetching PMID 19279212: [nevozhay]
All Medline abstracts: PubMed HubMed

Aged Out

  1. Shen, Claire R., Lan, Ethan I., Dekishima, Yasumasa, Baez, Antonino, Cho, Kwang Myung, Liao, James C. High titer anaerobic 1-butanol synthesis in Escherichia coli enabled by driving forces. Appl. Environ. Microbiol. 2011 0: AEM.03034-10
  2. Bond-Watts BB, Bellerose RJ and Chang MC. Enzyme mechanism as a kinetic control element for designing synthetic biofuel pathways. Nature Chemical Biology. April 2011. 222-227.
  3. Paige, J.S., et al. RNA Mimics of Green Fluorescent Protein. Science 29 July 2011: 333, 642-646.
  4. Wochner A, Attwater J, Coulson A, Holliger P. Ribozyme-catalyzed transcription of an active ribozyme. Science. 2011 Apr 8;332(6026):209-12.
  5. baker pmid=22194412
  6. Brown ME, Walker MC, Nakashige TG, Iavarone AT, Chang MC. Discovery and characterization of heme enzymes from unsequenced bacteria: Application to microbial lignin degradation. JACS 2011, 133, 18006-18009. dx.doi.org/10.1021/ja203972q
  7. Porter DL, Levine BL, Kalos M, Bagg A, June CH. Chimeric Antigen Receptor-Modified T Cells in Chronic Lymphoid Leukemia. N Engl J Med. 2011 Aug 10.
  8. Milias-Argeitis A, Summers S, Stewart-Ornstein J, Zuleta I, Pincus D, El-Samad H, Khammash M, Lygeros J. In silico feedback for in vivo regulation of a gene expression circuit. Nature Biotechnology. November 2011.
  9. Schwanhäusser B, Busse D, Li N, Dittmar G, Schuchhardt J, Wolf J, Chen W, Selbach M. Global quantification of mammalian gene expression control. Nature. 2011 May 19;473(7347):337-42.
  10. Isaacs, F.J., et al. Precise Manipulation of Chromosomes in Vivo Enables Genome-Wide Codon Replacement. Science 15 July 2011: 333 (6040), 348-353.
  11. Huo YX, Cho KM, Rivera JG, Monte E, Shen CR, Yan Y, Liao JC. Conversion of proteins into biofuels by engineering nitrogen flux. Nat Biotechnol. 2011 Mar 6.
  12. Gevorg Grigorya, Yong Ho Kim, Rudresh Acharya, Kevin Axelrod, Rishabh M. Jain, Lauren Willis, Marija Drndic, James M. Kikkawa, William F. DeGrado. Computational Design of Virus-Like Protein Assemblies on Carbon Nanotube Surfaces. Science 332, 1071 (2011);DOI: 10.1126/science.1198841
  13. Fisher MA, McKinley KL, Bradley LH, Viola SR, Hecht MH. De novo designed proteins from a library of artificial sequences function in Escherichia coli and enable cell growth. PLoS One. 2011 Jan 4; 6(1). PMID: 21245923
  14. Marlière P, Patrouix J, Döring V, Herdewijn P, Tricot S, Cruveiller S, Bouzon M, Mutzel R. Chemical Evolution of a Bacterium's Genome. Angew Chem Int Ed Engl. 2011 Jun 27. doi: 10.1002/anie.201100535.
  15. Greiss S, and Chin JW. Expanding the Genetic Code of an Animal. J Am Chem Soc. 2011 Aug 8
  16. Poelwijk FJ, de Vos MG, Tans SJ. Tradeoffs and Optimality in the Evolution of Gene Regulation. Cell, 5 August 2011
  17. Wang, H, Claveau, D, Vaillancourt, JP, Roemer, T, Meredith, TC. High-frequency transposition for determining antibacterial mode of action. Nat Chem Biol. 2011 Sept 04. doi:10.1038/nchembio.643
  18. Leonard E, Ajikumar PK, Thayer K, Xiao WH, Mo JD, Tidor B, et al. Combining metabolic and protein engineering of a terpenoid biosynthetic pathway for overproduction and selectivity control. Proc Natl Acad Sci U S A.107(31):13654-9. PMCID: 2922259.
  19. Matzas M, Stahler PF, Kefer N, Siebelt N, Boisguerin V, Leonard JT, et al. High-fidelity gene synthesis by retrieval of sequence-verified DNA identified using high-throughput pyrosequencing. Nat Biotechnol.28(12):1291-4.
  20. Kosuri S, Eroshenko N, Leproust EM, Super M, Way J, Li JB, et al. Scalable gene synthesis by selective amplification of DNA pools from high-fidelity microchips. Nat Biotechnol.28(12):1295-9.
  21. Peter Y Watson and Martha J Fedor. The glmS riboswitch integrates signals from activating and inhibitory metabolites in vivo. Nature Structural & Molecular Biology March 2011: 18 (3), 359-363.
  22. Lartigue C, Vashee S, Algire MA, Chuang RY, Benders GA, Ma L, et al. Creating bacterial strains from genomes that have been cloned and engineered in yeast. Science. 2009;325(5948):1693-6.
  23. Iliopoulos D, Hirsch HA, Struhl K. An epigenetic switch involving NF-kappaB, Lin28, Let-7 MicroRNA, and IL6 links inflammation to cell transformation. Cell. 2009;139(4):693-706. PMCID: 2783826.
  24. Agresti JJ, Antipov E, Abate AR, Ahn K, Rowat AC, Baret JC, et al. Ultrahigh-throughput screening in drop-based microfluidics for directed evolution. Proc Natl Acad Sci U S A.107(9):4004-9. PMCID: 2840095.
  25. Verhounig A, Karcher D, Bock R. Inducible gene expression from the plastid genome by a synthetic riboswitch. Proc Natl Acad Sci U S A.107(14):6204-9. PMCID: 2852001.
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All Medline abstracts: PubMed HubMed
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