User:Jarle Pahr/Expression: Difference between revisions
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Notes on gene/protein expression: | Notes on gene/protein expression: | ||
Nature milestones in gene expression: http://www.nature.com/milestones/geneexpression/index.html | |||
http://joshua-torlab.cshl.edu/pdf/Tolia-Joshua-Tor-NatMeth.pdf | http://joshua-torlab.cshl.edu/pdf/Tolia-Joshua-Tor-NatMeth.pdf | ||
http://www.mdpi.com/journal/biology/special_issues/gene_express | |||
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A highly efficient and robust cell-free protein synthesis system prepared from wheat embryos: Plants apparently contain a suicide system directed at ribosomes: http://www.ncbi.nlm.nih.gov/pmc/articles/PMC15369/#B27 | A highly efficient and robust cell-free protein synthesis system prepared from wheat embryos: Plants apparently contain a suicide system directed at ribosomes: http://www.ncbi.nlm.nih.gov/pmc/articles/PMC15369/#B27 | ||
Coding-sequence determinants of gene expression in Escherichia coli.: https://www.ncbi.nlm.nih.gov/pubmed/19359587/ | |||
http://www.biotechniques.com/BiotechniquesJournal/2013/April/Expression-analysis-of-rare-cellular-subsets-direct-RT-PCR-on-limited-cell-numbers-obtained-by-FACS-or-soft-agar-assays/biotechniques-342077.html | http://www.biotechniques.com/BiotechniquesJournal/2013/April/Expression-analysis-of-rare-cellular-subsets-direct-RT-PCR-on-limited-cell-numbers-obtained-by-FACS-or-soft-agar-assays/biotechniques-342077.html | ||
Dissecting specific and global transcriptional regulation of bacterial gene expression: http://www.nature.com/msb/journal/v9/n1/full/msb201314.html?WT.mc_id=%20TOC_MSB_13 | |||
Shared control of gene expression in bacteria by transcription factors and global physiology of the cell: http://www.nature.com/msb/journal/v9/n1/full/msb201270.html?WT.mc_id=%20TOC_MSB_13 | |||
Indirect and suboptimal control of gene expression is widespread in bacteria: http://www.nature.com/msb/journal/v9/n1/full/msb201316.html?WT.mc_id=%20TOC_MSB_13 | |||
=Bibliography= | |||
A compact, in vivo screen of all 6-mers reveals drivers of tissue-specific expression and guides synthetic regulatory element design: | |||
http://genomebiology.com/2013/14/7/R72/abstract | |||
Composability of regulatory sequences controlling transcription and translation in Escherichia coli: | |||
http://www.pnas.org/content/early/2013/08/07/1301301110.abstract |
Latest revision as of 08:48, 8 August 2013
Notes on gene/protein expression:
Nature milestones in gene expression: http://www.nature.com/milestones/geneexpression/index.html
http://joshua-torlab.cshl.edu/pdf/Tolia-Joshua-Tor-NatMeth.pdf
http://www.mdpi.com/journal/biology/special_issues/gene_express
Comparison of in vitro (cell-free) protein expression systems: http://www.piercenet.com/browse.cfm?fldID=4E53C1E3-5056-8A76-4E0E-DA9DEC1400D1
A highly efficient and robust cell-free protein synthesis system prepared from wheat embryos: Plants apparently contain a suicide system directed at ribosomes: http://www.ncbi.nlm.nih.gov/pmc/articles/PMC15369/#B27
Coding-sequence determinants of gene expression in Escherichia coli.: https://www.ncbi.nlm.nih.gov/pubmed/19359587/
Dissecting specific and global transcriptional regulation of bacterial gene expression: http://www.nature.com/msb/journal/v9/n1/full/msb201314.html?WT.mc_id=%20TOC_MSB_13
Shared control of gene expression in bacteria by transcription factors and global physiology of the cell: http://www.nature.com/msb/journal/v9/n1/full/msb201270.html?WT.mc_id=%20TOC_MSB_13
Indirect and suboptimal control of gene expression is widespread in bacteria: http://www.nature.com/msb/journal/v9/n1/full/msb201316.html?WT.mc_id=%20TOC_MSB_13
Bibliography
A compact, in vivo screen of all 6-mers reveals drivers of tissue-specific expression and guides synthetic regulatory element design: http://genomebiology.com/2013/14/7/R72/abstract
Composability of regulatory sequences controlling transcription and translation in Escherichia coli:
http://www.pnas.org/content/early/2013/08/07/1301301110.abstract