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Reinterpreting the Genetic Code: Non-Canonical Amino Acids in Protein Design, Evolution and Analysis - Caltech Tirrell Lab

Skip to main content. Professor David A. Tirrell. Reinterpreting the Genetic Code: Non-Canonical Amino Acids in Protein Design, Evolution and Analysis. The genetic code, elucidated in the 1960s through the work of Nirenberg, Ochoa, and Khorana, provides a set of molecular instructions for turning DNA into proteins. What if we could change the meaning of those instructions and decide for ourselves how to interpret the genetic code? Thursday, September 3, 2015 4:00 PM - 5:00 PM. Caltech - Tirrell Lab.

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Reinterpreting the Genetic Code: Non-Canonical Amino Acids in Protein Design, Evolution and Analysis - Caltech Tirrell Lab | tirrell-lab.caltech.edu Reviews
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Skip to main content. Professor David A. Tirrell. Reinterpreting the Genetic Code: Non-Canonical Amino Acids in Protein Design, Evolution and Analysis. The genetic code, elucidated in the 1960s through the work of Nirenberg, Ochoa, and Khorana, provides a set of molecular instructions for turning DNA into proteins. What if we could change the meaning of those instructions and decide for ourselves how to interpret the genetic code? Thursday, September 3, 2015 4:00 PM - 5:00 PM. Caltech - Tirrell Lab.
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Reinterpreting the Genetic Code: Non-Canonical Amino Acids in Protein Design, Evolution and Analysis - Caltech Tirrell Lab | tirrell-lab.caltech.edu Reviews

https://tirrell-lab.caltech.edu

Skip to main content. Professor David A. Tirrell. Reinterpreting the Genetic Code: Non-Canonical Amino Acids in Protein Design, Evolution and Analysis. The genetic code, elucidated in the 1960s through the work of Nirenberg, Ochoa, and Khorana, provides a set of molecular instructions for turning DNA into proteins. What if we could change the meaning of those instructions and decide for ourselves how to interpret the genetic code? Thursday, September 3, 2015 4:00 PM - 5:00 PM. Caltech - Tirrell Lab.

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Alumni - Caltech Tirrell Lab

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Skip to main content. Professor David A. Tirrell. Larry J. Dooling, Ph.D. 2016. Kai P Yuet, Ph.D. 2016, Stanford University. Brett M. Babin, Ph.D. 2016, Stanford University. Mark B. van Eldijk, Visiting Scientist 2014-2016, ChemConnection. John D. Bagert, Ph.D. 2015, Princeton University. Alborz Mahdavi, Ph.D. 2015, California Institute of Technology. Ayelet Lesman, Visiting Scientist 2011-2014, Weizmann Institute of Science. Cole DeForest, Visiting Scientist 2011-2013, University of Washington. Ayae Sug...

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CGSC Summer Seminar - Caltech Tirrell Lab

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Skip to main content. Professor David A. Tirrell. Metal-Catalyzed Cross-Couplings of Alkyl Electrophiles. Friday, September 11, 2015. 4:00 PM - 5:00 PM. Location: Noyes 153 (J. Holmes Sturdivant Lecture Hall). California Institute of Technology. CGSC Summer Seminar Series. For more information, please phone x4047 or email ckhaley@caltech.edu. 1200 E California Blvd, Pasadena CA 91125.

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Upcoming Events - Caltech Tirrell Lab

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Skip to main content. Professor David A. Tirrell. Friday, September 9, 2016. 4:00 PM - 5:00 PM. California Institute of Technology. CGSC Summer Seminar Series. Location: Noyes 153 (J. Holmes Sturdivant Lecture Hall). Monday, September 19, 2016. 4:00 PM - 5:00 PM. Gerald J. Meyer. University of North Carolina, Chapel Hill. Inorganic-Electrochemistry at Dye-Sensitized Photocatalytic Interfaces. Location: Noyes 147 (J. Holmes Sturdivant Lecture Hall). Thursday, September 22, 2016. 1:30 PM - 2:30 PM. Velipar...

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Recent Publications - Caltech Tirrell Lab

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Skip to main content. Professor David A. Tirrell. Bertozzi CR, Chang CJ, Davis BG, Olvera de la Cruz M, Tirrell DA, Zhao D. Grand Challenges in Chemistry for 2016 and Beyond. ACS Cent. Sci. 27;2(1):1-3. (2016). Dooling LJ, Buck ME, Zhang WB, Tirrell DA. Programming Molecular Association and Viscoelastic Behavior in Protein Networks. Adv Mat. 28(23):4651-7. (2016). Mahdavi A, Hamblin GD, Jindal GA, Bagert JD, Dong C, Sweredoski MJ, Hess S, Schuman EM, Tirrell DA. Chem Sci. 1;7(3):1797-1806. (2016). Biocon...

5

Lab Members - Caltech Tirrell Lab

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Skip to main content. Professor David A. Tirrell. Brett M. Babin. Bbabin AT caltech.edu. Ksburke AT caltech.edu. I am interested in studying cellular RNA-RNA interactions - particularly those involved in splicing and translation - by using fluorescence imaging techniques. Ldooling AT caltech.edu. One potential strategy for engineering artificial tissues and organs is to mimic. By controlling the spatial and temporal presentation of cell stimuli. Katharine Y. (Kat) Fang. Kyfang AT caltech.edu. I am intere...

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Click Chemistry: March 2013

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Sunday, March 31, 2013. Coupling biocatalysis and click chemistry. Chem Commun., 2013,49, 2625-2627. 1,2,3-triazoles: pharmacophores and ligands. Impressive driving force and selectivity. Links to this post. Friday, March 29, 2013. Azide chemistry, energetic chemistry, hazardous chemistry, click chemistry. Synthesis. Scanning any issue of JACS or JOC, one would see a bunch. From competition. Extensiv...

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Click Chemistry: May 2012

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Sunday, May 27, 2012. Protein methylation study by click chemistry. Bioorthogonal Profiling of Protein Methylation Using Azido Derivative of S-Adenosyl-L-methionine,. Minkui Luo, et al,. J Am Chem. Soc. 2012, 134, 5909-5915. A few key points:. 1 Protein methytransferase transfers methyl group from S-Adenosyl-L-methionine (SAM) to specific proteins. Links to this post. Sunday, May 20, 2012. 4 Protein bind...

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Click Chemistry: October 2011

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Saturday, October 29, 2011. Ten years of click chemistry summed up. Two recent special issues were dedicated to click chemistry and bioorthogonal chemistry. 1 Chemistry – An Asian Journal, Volume 6, Issue 10,. Special Issue: Celebrating the 10th Anniversary of Click Chemistry. October 4, 2011. Guest Editors: Qian Wang, Craig Hawker. 2 Accounts of Chemical Research, Volume 44, Issue 9, Pages 651-840.

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Click Chemistry: June 2013

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Saturday, June 29, 2013. Dr Sharpless goes even further. People are not very good at making medicines, he says. Life is short. While conventional drug-discovery is a long and uncertain process. So why not put nature, which is much more patient and sophisticated at doing the job, to work directly? Links to this post. Subscribe to: Posts (Atom). In situ click chemistry. Journal of chemical education. David...

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Click Chemistry: January 2014

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Saturday, January 11, 2014. Phosphate-modified nucleotides, DNA sequencing, etc. Well, in those years after 2000, the raging race was on for new DNA sequencing platforms. We know click chemistry concept came into publications around that time as well. WO 2009/091847 (PCT/US2009/031027); WO 2009/105077 (PCT/US2008/008612); US 2001/0165652. Chem Comm, 12/20/2013 Advance Article for 2014. Links to this post.

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Click Chemistry: November 2012

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Wednesday, November 21, 2012. Click chemistry in solving protein 3-D structures. Long live protein chemistry! Links to this post. Sunday, November 11, 2012. Versita plans ambitious Click Chemistry Publication. Versita, Emerging Science Publishers", has planned an electronic journal for click chemistry. In its statement, it intends to be :. Journal Editor Dominic V. McGrath, Universityof Arizona, USA.

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Click Chemistry: June 2012

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Wednesday, June 27, 2012. Click chemistry on hair 2. Here is the click chemistry to be applied in the salons :). Links to this post. Monday, June 25, 2012. Click chemistry on hair 1. Poly Chem. 2012, 3, 1461. Finally, click chemistry goes to cosmetic industry, the fastest-growing industry of all? Well, sure thing is that you do need fast, mild, high-yielding, failure-proof, safe reactions. Click chemistr...

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Click Chemistry: February 2012

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Sunday, February 5, 2012. Nanoparticle heteroconjugation via click chemistry. ACS Nano 2012, 6(1) 310. Describes nanoparticle heteroconjunction, summarized in the following graph:. A few key points:. 1 Conjugation of Nanoparticle is less reported. 2 Many factors against NP conjugation: large size, slow movement, fewer functional groups, lower effective FG concentration, etc. Links to this post.

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Click Chemistry: Phosphate-modified nucleotides, DNA sequencing, etc

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Saturday, January 11, 2014. Phosphate-modified nucleotides, DNA sequencing, etc. Well, in those years after 2000, the raging race was on for new DNA sequencing platforms. We know click chemistry concept came into publications around that time as well. WO 2009/091847 (PCT/US2009/031027); WO 2009/105077 (PCT/US2008/008612); US 2001/0165652. Chem Comm, 12/20/2013 Advance Article for 2014. Valery V. Fokin.

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Click Chemistry: January 2013

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Everything about Click Chemistry. Chemistry is the Central Science. Let Click Chemistry be the entry. Tuesday, January 1, 2013. In situ click chemistry 10 years mark. Happy New Year 2013. C&EN did a brief piece "revisiting 2002" and took a look at in situ click chemistry. Original publication by Scripps Group in Angew Chem Int 2002, 1053. Acetylcholinesterase directs the synthesis of its own potent inhibitor when induced-and-fit. Ten years have seem a few successes but limited adoption. Links to this post.

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Reinterpreting the Genetic Code: Non-Canonical Amino Acids in Protein Design, Evolution and Analysis - Caltech Tirrell Lab

Skip to main content. Professor David A. Tirrell. Reinterpreting the Genetic Code: Non-Canonical Amino Acids in Protein Design, Evolution and Analysis. The genetic code, elucidated in the 1960s through the work of Nirenberg, Ochoa, and Khorana, provides a set of molecular instructions for turning DNA into proteins. What if we could change the meaning of those instructions and decide for ourselves how to interpret the genetic code? Thursday, September 3, 2015 4:00 PM - 5:00 PM. Caltech - Tirrell Lab.

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