Team:ESBS-Strasbourg/Project/Reference
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- | <li><p | + | <li><p ALIGN="LEFT">Baker, T. A., R. T. Sauer, et al. (2005). "Versatile modes of |
- | + | peptide recognition by the AAA+ adaptor protein SspB." <u>Nat Struct Mol Biol</u> <b>12</b>(6): 520-5.</p></li> | |
- | + | <li><p ALIGN="LEFT">Fussenegger, M., M. Tigges, et al. (2009). "A tunable synthetic | |
- | + | mammalian oscillator." <u>Nature</u> <b>457</b>(7227): | |
- | + | 309-12.</p></li> | |
- | + | <li><p ALIGN="LEFT">Goldberg, A. L. (2003). "Protein degradation and protection | |
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- | <li><p | + | |
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against misfolded or damaged proteins." <u>Nature</u> <b>426</b>(6968): | against misfolded or damaged proteins." <u>Nature</u> <b>426</b>(6968): | ||
895-9.</p></li> | 895-9.</p></li> | ||
- | <li><p | + | <li><p ALIGN="LEFT">Gregersen, N., C. B. Pedersen, et al. (2003). "Misfolding, |
+ | degradation, and aggregation of variant proteins. The molecular pathogenesis of | ||
+ | short chain acyl-CoA dehydrogenase (SCAD) deficiency." <u>J Biol Chem</u> <b>278</b>(48): 47449-58.</p></li> | ||
+ | <li><p ALIGN="LEFT">Grossman, A. D. and K. L. Griffith (2008). "Inducible protein | ||
degradation in Bacillus subtilis using heterologous peptide tags and adaptor | degradation in Bacillus subtilis using heterologous peptide tags and adaptor | ||
proteins to target substrates to the protease ClpXP." <u>Mol Microbiol</u> <b>70</b>(4): 1012-25.</p></li> | proteins to target substrates to the protease ClpXP." <u>Mol Microbiol</u> <b>70</b>(4): 1012-25.</p></li> | ||
- | <li><p | + | <li><p ALIGN="LEFT">Houry, W. A., U. A. Wojtyra, et al. (2003). "The N-terminal zinc |
+ | binding domain of ClpX is a dimerization domain that modulates the chaperone | ||
+ | function." <u>J Biol Chem</u> <b>278</b>(49): 48981-90.</p></li> | ||
+ | <li><p ALIGN="LEFT">Hughes, J., F. T. Landgraf, et al. (2001). "Recombinant | ||
+ | holophytochrome in Escherichia coli." <u>FEBS Lett</u> <b>508</b>(3): | ||
+ | 459-62.</p></li> | ||
+ | <li><p ALIGN="LEFT">Kohchi, T., K. Mukougawa, et al. (2006). "Metabolic engineering | ||
+ | to produce phytochromes with phytochromobilin, phycocyanobilin, or | ||
+ | phycoerythrobilin chromophore in Escherichia coli." <u>FEBS Lett</u> <b>580</b>(5): 1333-8.</p></li> | ||
+ | <li><p ALIGN="LEFT">Maurizi, M. R., R. Grimaud, et al. (1998). "Enzymatic and | ||
+ | structural similarities between the Escherichia coli ATP-dependent proteases, | ||
+ | ClpXP and ClpAP." <u>J Biol Chem</u> <b>273</b>(20): | ||
+ | 12476-81.</p></li> | ||
+ | <li><p ALIGN="LEFT">Moffat, K. and A. Moglich (2010). "Engineered photoreceptors as | ||
+ | novel optogenetic tools." <u>Photochem Photobiol Sci</u> <b>9</b>(10): | ||
+ | 1286-300.</p></li> | ||
+ | <li><p ALIGN="LEFT">Moroder, L. and C. Renner (2006). "Azobenzene as conformational | ||
+ | switch in model peptides." <u>Chembiochem</u> <b>7</b>(6): | ||
+ | 868-78.</p></li> | ||
+ | <li><p ALIGN="LEFT">Morrison, D. A. and S. Ahlawat (2009). "ClpXP degrades SsrA-tagged | ||
+ | proteins in Streptococcus pneumoniae." <u>J Bacteriol</u> <b> | ||
+ | 191</b>(8): 2894-8.</p></li> | ||
+ | <li><p ALIGN="LEFT">Quail, P. H., R. Khanna, et al. (2004). "A novel molecular | ||
recognition motif necessary for targeting photoactivated phytochrome signaling | recognition motif necessary for targeting photoactivated phytochrome signaling | ||
to specific basic helix-loop-helix transcription factors." <u>Plant Cell</u> <b>16</b>(11): 3033-44.</p></li> | to specific basic helix-loop-helix transcription factors." <u>Plant Cell</u> <b>16</b>(11): 3033-44.</p></li> | ||
- | <li><p | + | <li><p ALIGN="LEFT">Rosen, M. K., D. W. Leung, et al. (2008). "Genetically encoded |
- | + | photoswitching of assembly through the Cdc42-WASP-Arp2/3 complex pathway." | |
- | + | <u>Proc Natl Acad Sci U S A</u> <b>105</b>(35): 12797-802.</p></li> | |
- | <li><p | + | <li><p ALIGN="LEFT">Sauer, R. T., T. A. Baker, et al. (2009). "Engineering synthetic |
+ | adaptors and substrates for controlled ClpXP degradation." <u>J Biol Chem</u> <b>284</b>(33): 21848-55.</p></li> | ||
+ | <li><p ALIGN="LEFT">Sauer, R. T., T. A. Baker, et al. (2009). "Structures of | ||
+ | asymmetric ClpX hexamers reveal nucleotide-dependent motions in a AAA+ | ||
+ | protein-unfolding machine." <u>Cell</u> <b>139</b>(4): | ||
+ | 744-56.</p></li> | ||
+ | <li><p ALIGN="LEFT">Sauer, R. T., T. A. Baker, et al. (2010). "Control of substrate | ||
gating and translocation into ClpP by channel residues and ClpX binding." | gating and translocation into ClpP by channel residues and ClpX binding." | ||
- | <u>J Mol Biol</u> <b> | + | <u>J Mol Biol</u> <b>39 </b>(5): 707-18.</p></li> |
- | <li><p | + | <li><p ALIGN="LEFT">Sauer, R. T., T. A. Baker, et al. (2005). "Rebuilt AAA + motors |
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reveal operating principles for ATP-fuelled machines." <u>Nature</u> <b>437</b>(7062): 1115-20.</p></li> | reveal operating principles for ATP-fuelled machines." <u>Nature</u> <b>437</b>(7062): 1115-20.</p></li> | ||
- | <li><p | + | <li><p ALIGN="LEFT">Sauer, R. T., T. A. Baker, et al. (2006). "Engineering |
controllable protein degradation." <u>Mol Cell</u> <b>22</b>(5): | controllable protein degradation." <u>Mol Cell</u> <b>22</b>(5): | ||
- | 701-7.</p></li> | + | 701-7.</font></p></li> |
- | <li><p | + | <font> |
- | of the SspB adaptor to the ClpXP protease causes changes in substrate delivery." | + | <li><p ALIGN="LEFT">Sauer, R. T., T. A. Baker, et al. (2007). "Altered tethering of |
+ | the SspB adaptor to the ClpXP protease causes changes in substrate delivery." | ||
<u>J Biol Chem</u> <b>282</b>(15): 11465-73.</p></li> | <u>J Biol Chem</u> <b>282</b>(15): 11465-73.</p></li> | ||
- | <li><p | + | <li><p ALIGN="LEFT">Schafer, E., T. Kunkel, et al. (1993). "In vitro formation of a |
- | + | photoreversible adduct of phycocyanobilin and tobacco apophytochrome B." <u>Eur J | |
- | + | Biochem</u> <b>215</b>(3): 587-94. </p></li> | |
- | <li><p | + | <li><p ALIGN="LEFT">Su, Z., H. Li, et al. (2010). "A protease-based strategy for the |
- | + | controlled release of therapeutic peptides." <u>Angew Chem Int Ed Engl</u> <b>49</b>(29): 4930-3.</p></li> | |
- | + | <li><p ALIGN="LEFT">Voigt, C. A., A. Levskaya, et al. (2005). "Synthetic biology: | |
- | <li><p | + | engineering Escherichia coli to see light." <u>Nature</u> <b> |
- | + | 438</b>(7067): 441-2.</p></li> | |
- | + | <li><p ALIGN="LEFT">Voigt, C. A., A. Levskaya, et al. (2009). "Spatiotemporal | |
- | <li><p | + | control of cell signalling using a light-switchable protein interaction." |
+ | <u>Nature</u> <b>461</b>(7266): 997-1001.</p></li> | ||
+ | <li><p ALIGN="LEFT">Zuber, P. and Y. Zhang (2007). "Requirement of the zinc-binding | ||
domain of ClpX for Spx proteolysis in Bacillus subtilis and effects of disulfide | domain of ClpX for Spx proteolysis in Bacillus subtilis and effects of disulfide | ||
- | stress on ClpXP activity." <u>J Bacteriol</u> <b>189</b>(21): | + | stress on ClpXP activity." <u>J Bacteriol</u> <b>189</b>(21):7669-80.</p></li> |
- | 7669-80.</font></p></li></ul> | + | </font></p></li></ul> |
Revision as of 19:01, 26 October 2010
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