Skip to content
Publicly Available Published by De Gruyter May 23, 2013

Photo-click chemistry strategies for spatiotemporal control of metal-free ligation, labeling, and surface derivatization

  • Selvanathan Arumugam , Sara V. Orski , Ngalle Eric Mbua , Christopher McNitt , Geert-Jan Boons , Jason Locklin and Vladimir V. Popik

Three photo-click ligation strategies described in this account provide scientists with efficient and selective tools for derivatization of various molecules, polymers, and surfaces. Fast photochemical reactions that are utilized in these techniques permit spatiotemporal control of the process. The absence of activating reagents and catalysts, as well as compatibility with aqueous media, makes photo-click ligations suitable for biomedical applications. The first of these approaches relies on the photochemical decarbonylation of cyclopropenones to produce cyclooctynes. The latter undergo rapid catalyst-free strain-promoted azide–alkyne cycloaddition (SPAAC) to azide-tagged substrates. The second method is based on a very fast (>104 M–1 s–1) light-triggered hetero-Diels–Alder reaction and permits efficient derivatization of substrates bearing vinyl ether moiety. An even faster reaction between photochemically generated naphthoquinone methides (oNQMs) and thiols (~2 × 105 M–1 s–1) serves as a basis for a third method. This thiol photo-click chemistry allows for the selective derivatization of thiol-functionalized substrates or labeling of free cysteine residues in proteins. The thioether linkage produced by the reaction of oNQMs and a thiol is stable under ambient conditions, but can be cleaved by UV irradiation, regenerating free thiol. This feature permits the removal or replacement of immobilized compounds, as well as traceless substrate release.


Conference

IUPAC Symposium on Photochemistry, International Symposium on Photochemistry, PHOTO, Photochemistry, XXIVth, Coimbra, Portugal, 2012-07-15–2012-07-20


References

1 10.1002/1521-3773(20010601)40:11<2004::AID-ANIE2004>3.0.CO;2-5, H. C. Kolb, M. G. Finn, K. B. Sharpless. Angew. Chem., Int. Ed.40, 2004 (2001).Search in Google Scholar

2a 10.1002/adma.200900238, L. Nebhani, C. Barner-Kowollik. Adv. Mater.21, 3442 (2009).Search in Google Scholar

2b 10.1021/cr8004668, L. S. Wong, F. Khan, J. Micklefield. Chem. Rev.109, 4025 (2009).Search in Google Scholar

2c B. D. Ratner. In Biomaterials Science: An Introduction to Materials in Medicine, A. S. Hoffman, F. J. Schoen, J. E. Lemons (Eds.), Academic Press, San Diego (2004).Search in Google Scholar

3a 10.1021/cr900138t, R. K. Iha, K. L. Wooley, A. M. Nyström, D. J. Burke, M. J. Kade, C. J. Hawker. Chem. Rev.109, 5620 (2009).Search in Google Scholar

3b 10.1002/1521-3773(20020715)41:14<2596::AID-ANIE2596>3.0.CO;2-4, V. V. Rostovtsev, L. G. Green, V. V. Fokin, K. B. Sharpless. Angew. Chem., Int. Ed.41, 2596 (2002).Search in Google Scholar

3c 10.1039/b904091a, J. E. Hein, V. V. Fokin. Chem. Soc. Rev.39, 1302 (2010).Search in Google Scholar

3d 10.1039/b901969n, S. K. Mamidyala, M. G. Finn. Chem. Soc. Rev.39, 1252 (2010).Search in Google Scholar

3e 10.1021/ja806030z, S. G. Im, K. W. Bong, B.-S. Kim, S. H. Baxamusa, P. T. Hammond, P. S. Doyle, K. K. Gleason. J. Am. Chem. Soc.130, 14424 (2008).Search in Google Scholar

4a 10.1002/marc.200800095, S. Fleischmann, K. Hinrichs, U. Oertel, S. Reichelt, K.-J. Eichhorn, B. Voit. Macromol. Rapid Commun.29, 1177 (2008).Search in Google Scholar

4b 10.1039/b700809k, D. Fournier, R. Hoogenboom, U. S. Schubert. Chem. Rev. Soc.36, 1369 (2007).Search in Google Scholar

4c 10.1021/bc0502311, X.-L. Sun, C. L. Stabler, C. S. Cazalis, E. L. Chaikof. Bioconjugate Chem.17, 52 (2006).Search in Google Scholar PubMed

4d 10.1021/la802304w, O. Michel, B. J. Ravoo. Langmuir24, 12116 (2008).Search in Google Scholar PubMed

4e 10.1021/ja078183d, S.-Y. Ku, K.-T. Wong, A. Bard. J. Am. Chem. Soc.130, 2392 (2008).Search in Google Scholar PubMed

4f 10.1039/b613014n, J. E. Moses, A. D. Moorhouse. Chem. Soc. Rev.36, 1242 (2007).Search in Google Scholar PubMed

4g 10.1002/adma.200602739, H. Nandivada, X. Jiang, J. Lahann. Adv. Mater.19, 2197 (2007).Search in Google Scholar

5a 10.1002/anie.200454078, P. Wu, A. K. Feldman, A. K. Nugent, C. J. Hawker, A. Scheel, B. Voit, J. Pyun, J. M. J. Frechet, K. B. Sharpless, V. V. Fokin. Angew. Chem., Int. Ed.43, 3928 (2004).Search in Google Scholar PubMed

5b 10.1021/bc0501496, S. Punna, E. Kaltgrad, M. G. Finn. Bioconjugate Chem.16, 1536 (2005).Search in Google Scholar PubMed

5c 10.1002/anie.200461656, S. Punna, J. Kuzelka, Q. Wang, M. G. Finn. Angew. Chem., Int. Ed.44, 2215 (2005).Search in Google Scholar PubMed

5d 10.1021/ja0612910, J. A. Johnson, D. R. Lewis, D. D. Diaz, M. G. Finn, J. T. Koberstein, N. J. Turro. J. Am. Chem. Soc.128, 6564 (2006).Search in Google Scholar PubMed

5e 10.1021/ja0648209, R. J. Thibault, K. Takizawa, P. Lowenheilm, B. Helms, J. L. Mynar, J. M. J. Frechet, C. J. Hawker. J. Am. Chem. Soc.128, 12084 (2006).Search in Google Scholar PubMed

5f 10.1021/ja053919x, M. J. Joralemon, R. K. O’Reilly, C. J. Hawker, K. L. Wooley. J. Am. Chem. Soc.127, 16892 (2005).Search in Google Scholar

5g 10.1021/ja0549751, M. Malkoch, R. J. Thibault, E. Drockenmuller, M. Messerschmidt, B. Voit, T. P. Russell, C. J. Hawker. J. Am. Chem. Soc.127, 14942 (2005).Search in Google Scholar

6a 10.1021/ja021381e, Q. Wang, T. R. Chan, R. Hilgraf, V. V. Fokin, K. B. Sharpless, M. G. Finn. J. Am. Chem. Soc.125, 3192 (2003).Search in Google Scholar PubMed

6b 10.1021/bc700390r, E. Strable, D. E. Prasuhn, A. K. Udit, S. Brown, A. J. Link, J. T. Ngo, G. Lander, J. Quispe, C. S. Potter, B. Carragher, D. A. Tirrell, M. G. Finn. Bioconjugate Chem.19, 866 (2008).Search in Google Scholar

7a 10.1021/bc800077y, G. von Maltzahn, Y. Ren, J.-H. Park, D.-H. Min, V. R. Kotamraju, J. Jayakumar, V. Fogal, M. J. Sailor, E. Ruoslahti, S. N. Bhatia. Bioconjugate Chem.19, 1570 (2008).Search in Google Scholar

7b 10.1016/S1359-6446(03)02933-7, H. C. Kolb, K. B. Sharpless. Drug Discov. Today8, 1128 (2003).Search in Google Scholar

7c 10.1517/17460441.1.6.525, K. B. Sharpless, R. Manetsch. Exp. Opin. Drug Discov.1, 525 (2006).Search in Google Scholar

8a 10.1016/S0300-483X(03)00159-8, L. M. Gaetke, C. K. Chow. Toxicology189, 147 (2003).Search in Google Scholar

8b 10.1021/cr960421s, C. J. Burrows, J. G. Muller. Chem. Rev.98, 1109 (1998).Search in Google Scholar PubMed

8c 10.1021/ja021381e, Q. Wang, T. R. Chan, R. Hilgraf, V. V. Fokin, K. B. Sharpless, M. G. Finn. J. Am. Chem. Soc.125, 3192 (2003).Search in Google Scholar

9a 10.1073/pnas.0707090104, J. M. Baskin, J. A. Prescher, S. T. Laughlin, N. J. Agard, P. V. Chang, I. A. Miller, A. Lo, J. A. Codelli, C. R. Bertozzi. Proc. Natl. Acad. Sci. USA104, 16793 (2007).Search in Google Scholar PubMed PubMed Central

9b 10.1021/ol801141k, E. M. Sletten, C. R. Bertozzi. Org. Lett.10, 3097 (2008).Search in Google Scholar PubMed PubMed Central

9c 10.1021/ja803086r, J. A. Codelli, J. M. Baskin, N. J. Agard, C. R. Bertozzi. J. Am. Chem. Soc.130, 11486 (2008).Search in Google Scholar PubMed PubMed Central

9d 10.1002/anie.201003761, J. Dommerholt, S. Schmidt, R. Temming, L. J. A. Hendriks, F. P. J. T. Rutjes, J. C. M. van Hest, D. J. Lefeber, P. Friedl, F. L. van Delft. Angew. Chem., Int. Ed.49, 9422 (2010).Search in Google Scholar PubMed PubMed Central

10 10.1002/anie.200705456, X. Ning, J. Guo, M. A. Wolfert, G.-J. Boons. Angew. Chem., Int. Ed.47, 2253 (2008).Search in Google Scholar PubMed PubMed Central

11a 10.1021/ja100014q, J. C. Jewett, E. M. Sletten, C. R. Bertozzi. J. Am. Chem. Soc.132, 3688 (2010).Search in Google Scholar PubMed PubMed Central

11b 10.1039/b917797c, M. F. Debets, S. S. van Berkel, S. Schoffelen, F. P. J. T. Rutjes, J. C. M. van Hest, F. L. van Delft. Chem. Commun.46, 97 (2010).Search in Google Scholar PubMed

11c 10.1021/bc100306u, A. Kuzmin, A. Poloukhtine, M. Wolfert, V. V. Popik. Bioconjugate Chem.21, 2076 (2010).Search in Google Scholar PubMed

12 10.1002/anie.201106325, G. de Almeida, E. M. Sletten, H. Nakamura, K. K. Palaniappan, C. R. Bertozzi. Angew. Chem., Int. Ed.51, 2443 (2012).Search in Google Scholar PubMed PubMed Central

13a 10.1021/ol8003657, D. H. Ess, G. O. Jones, K. N. Houk. Org. Lett.10, 1633 (2008).Search in Google Scholar PubMed

13b 10.1039/b901970g, J. C. Jewett, C. R. Bertozzi. Chem. Soc. Rev.39, 1272 (2010).Search in Google Scholar PubMed PubMed Central

13c 10.1002/cbic.201000064, M. F. Debets, C. W. J. van der Doelen, F. P. J. T. Rutjes, F. L. van Delft. ChemBioChem11, 1168 (2010).Search in Google Scholar PubMed

13d 10.1021/ar200059z, M. F. Debets, S. S. van Berkel, J. Dommerholt, A. J. Dirks, A. F. P. J. T. Rutjes, F. L. van Delft. Acc. Chem. Res.44, 805 (2011).Search in Google Scholar PubMed

13e 10.1021/ar200148z, E. M. Sletten, C. R. Bertozzi. Acc. Chem. Res.44, 666 (2011).Search in Google Scholar PubMed PubMed Central

14 10.1002/chem.200400597, D. B. Ramachary, C. F. Barbas. Chem.—Eur. J.10, 5323 (2004).Search in Google Scholar PubMed

15a 10.1002/pola.21275, H. Durmaz, B. Colakoglu, U. Tunca, G. Hizal. J. Polym. Sci., Part A44, 1667 (2006).Search in Google Scholar

15b 10.1002/pola.22381, A. Dag, H. Durmaz, G. Hizal, U. Tunca. J. Polym. Sci., Part A46, 302 (2008).Search in Google Scholar

15c 10.1021/ma060690c, B. Gacal, H. Durmaz, M. A. Tasdelen, G. Hizal, U. Tunca, Y. Yagci, A. L. Demirel. Macromolecules39, 5330 (2006).Search in Google Scholar

15d 10.1039/b402375g, J. L. Delgado, P. de la Cruz, F. Langa, A. Urbina, J. Casado, J. T. Lopez Navarrete. Chem. Commun.40, 1734 (2004).Search in Google Scholar PubMed

16a 10.1081/NCN-120023019, H. A. Latham-Timmons, A. Wolter, J. S. Roach, R. Giare, M. Leuck. Nucleosides, Nucleotides Nucleic Acids22, 1495 (2003).Search in Google Scholar PubMed

16b 10.1021/bc0502311, X.-L. Sun, C. L. Stabler, C. S. Cazalis, E. L. Chaikof. Bioconjugate Chem.17, 52 (2006).Search in Google Scholar

16c 10.1081/NCN-200059170, M. Proupin-Perez, R. Cosstick, L. M. Liz-Marzan, V. Salgueirino-Maceira, M. Brust. Nucleosides, Nucleotides Nucleic Acids24, 1075 (2005).Search in Google Scholar

16d 10.1073/pnas.101112898, M. N. Yousaf, B. T. Houseman, M. Mrksich. Proc. Natl. Acad. Sci. USA98, 5992 (2001).Search in Google Scholar

16e 10.1021/la049826v, W. S. Dillmore, M. N. Yousaf, M. Mrksich. Langmuir20, 7223 (2004).Search in Google Scholar

16f 10.1021/bm061197b, F. Rusmini, Z. Zhong, J. Feijen. Biomacromolecules3, 1775 (2007).Search in Google Scholar

17a 10.1016/S0040-4039(97)10151-4, B. Seelig, A. Jaschke. Tetrahedron Lett.38, 7729 (1997).Search in Google Scholar

17b 10.2174/157017906775473920, D. Graham, A. Enright. Curr. Org. Synth.3, 9 (2006).Search in Google Scholar

17c 10.1021/ol026179v, V. Pozsgay, N. E. Vieira, A. Yergey. Org. Lett.4, 3191 (2002).Search in Google Scholar

17d 10.1002/(SICI)1099-0690(199910)1999:10<2593::AID-EJOC2593>3.0.CO;2-C, R. J. B. H. N. Van den Berg, D. Noort, E. S. Milder-Enacache, G. A. Van der Marel, J. H. Van Boom, H. P. Benschop. Eur. J. Org. Chem. 2593 (1999).Search in Google Scholar

17e C. C. A. M. Peeters, P. R. Lagerman, O. de Weers, L. A. Oomen, P. Hoogerhout, M. Beurret, J. T. Poolman. In Vaccine Protocols, A. Robinson, G. Farrar, C. Wiblin (Eds.), p. 111, Humana Press, Totowa, NJ (1996).Search in Google Scholar

17f Methods in Enzymology, Vol. 242, Academic Press, San Diego (1994).Search in Google Scholar

17g In Neoglycoconjugates. Preparation and Applications, Y. C. Lee, R. T. Lee (Eds.), p. 325, Academic Press, New York (1994).Search in Google Scholar

17h 10.1001/jama.276.14.1181, J. B. Robbins, R. Schneerson, P. Anderson, D. H. Smith. J. Am. Med. Assoc.276, 1181 (1996).Search in Google Scholar

18a 10.1016/S1074-5521(99)89008-5, B. Seelig, A. Jaschke. Chem. Biol.6, 167 (1999).Search in Google Scholar

18b 10.1081/NCN-100002332, G. M. Husar, D. J. Anziano, M. Leuck, D. P. Sebesta. Nucleosides, Nucleotides Nucleic Acids20, 559 (2001).Search in Google Scholar PubMed

19a 10.1021/cr990011e, J. L. Segura, N. Martin. Chem. Rev.11, 3199 (1999).Search in Google Scholar PubMed

19b 10.1080/00304949109458320, N. Martin, C. Seoane, M. Hanack. Org. Prep. Proc. Int.23, 237 (1991).Search in Google Scholar

19c 10.1055/s-1978-24895, W. Oppolzer. Synthesis 793 (1978).Search in Google Scholar

20a 10.1002/anie.200901220, Y. Wang, W. Song, W. J. Hu, Q. Lin. Angew. Chem., Int. Ed.48, 5330 (2009).Search in Google Scholar PubMed PubMed Central

20b 10.1002/anie.200705805, W. Song, Y. Wang, J. Qu, M. M. Madden, Q. Lin. Angew. Chem., Int. Ed.47, 2832 (2008).Search in Google Scholar PubMed

21a 10.1038/nmat2473, C. A. De Forest, B. D. Polizzotti, K. S. Anseth. Nat. Mater.8, 659 (2009).Search in Google Scholar PubMed PubMed Central

21b 10.1021/jo900514w, M. Fiore, A. Marra, A. Dondoni. J. Org. Chem.74, 4422 (2009).Search in Google Scholar PubMed

21c 10.1039/b912686d, M. Fiore, A. Chambery, A. Marra, A. Dondoni. Org. Biomol. Chem.7, 3910 (2009).Search in Google Scholar PubMed

21d 10.1021/ja8006325, K. L. Killops, L. M. Campos, C. J. Hawker. J. Am. Chem. Soc.130, 5062 (2008).Search in Google Scholar PubMed

21e 10.1021/ma801630n, L. M. Campos, K. L. Killops, R. Sakai, J. M. J. Paulusse, D. Damiron, E. Drockenmuller, B. W. Messmore, C. J. Hawker. Macromolecules41, 7063 (2008).Search in Google Scholar

21f 10.1039/b813438c, J. W. Chan, B. Yu, C. E. Hoyle, A. B. Lowe. Chem. Commun. 4959 (2008).Search in Google Scholar PubMed

22 10.1021/ja9071157, R. M. Hensarling, V. A. Doughty, J. W. Chan, D. L. Patton. J. Am. Chem. Soc.131, 14673 (2009).Search in Google Scholar PubMed

23a 10.1021/jo034869m, A. Poloukhtine, V. V. Popik. J. Org. Chem.68, 7833 (2003).Search in Google Scholar PubMed

23b 10.1039/b513248g, N. K. Urdabayev, A. Poloukhtine, V. V. Popik. Chem. Comm. 454 (2006).Search in Google Scholar PubMed

23c 10.1021/jp0563641, A. Poloukhtine, V. V. Popik. J. Phys. Chem. A110, 1749 (2006).Search in Google Scholar PubMed

24a S. E. Rokita (Ed.). Quinone Methides, Wiley Series of Reactive Intermediates in Chemistry and Biology, Vol. 1, John Wiley, Hoboken (2009).Search in Google Scholar

24b 10.1351/pac200173030529, P. Wan, D. W. Brousmiche, C. Z. Chen, J. Cole, M. Lukeman, M. Xu. Pure Appl. Chem.73, 529 (2001).Search in Google Scholar

24c 10.1021/jo034918v, E. A. Leo, J. Delgado, L. R. Domingo, A. Espinos, M. A. Miranda, R. Tormos. J. Org. Chem.68, 9647 (2003).Search in Google Scholar PubMed

24d 10.1021/ja001557h, Y. Chiang, A. J. Kresge, Y. Zhu. J. Am. Chem. Soc.122, 9854 (2000).Search in Google Scholar

25 10.1021/ja9031924, S. Arumugam, V. V. Popik. J. Am. Chem. Soc.131, 11892 (2009).Search in Google Scholar PubMed

26a 10.1021/ja9054096, A. A. Poloukhtine, N. E. Mbua, M. A. Wolfert, G.-J. Boons, V. V. Popik. J. Am. Chem. Soc.131, 15769 (2009).Search in Google Scholar PubMed PubMed Central

26b 10.1021/ja105066t, S. V. Orski, A. A. Poloukhtine, S. Arumugam, L. Mao, V. V. Popik, J. Locklin. J. Am. Chem. Soc.132, 11024 (2010).Search in Google Scholar PubMed

26c 10.1039/c2ob26581h, C. D. McNitt, V. V. Popik. Org. Biomol. Chem.10, 8200 (2012).Search in Google Scholar PubMed PubMed Central

27a 10.1021/ja200356f, S. Arumugam, V. V. Popik. J. Am. Chem. Soc.133, 5573 (2011).Search in Google Scholar PubMed

27b 10.1021/ja205652m, S. Arumugam, V. V. Popik. J. Am. Chem. Soc.133, 15730 (2011).Search in Google Scholar PubMed

27c 10.1021/ja210350d, S. Arumugam, S. Orski, J. Locklin, V. V. Popik. J. Am. Chem. Soc.134, 179 (2012).Search in Google Scholar PubMed

28a 10.1021/ja302970x, S. Arumugam, V. V. Popik. J. Am. Chem. Soc.134, 8408 (2012).Search in Google Scholar PubMed

28b S. Arumugam, J. Guo, N. E. Mbua, E. E. Nekongo, G.-J. Boons, V. V. Popik. Chem. Sci. (2013). Submitted for publication.Search in Google Scholar

29a 10.1002/anie.201003549, F. R. Fischer, C. Nuckolls. Angew. Chem., Int. Ed.49, 7257 (2010);Search in Google Scholar PubMed

29b 10.3998/ark.5550190.0011.b28, F. Starke, M. Walter, H.-J. Pietzsch. ARKIVOC 350 (2010).Search in Google Scholar

30a 10.1016/S0040-4020(02)00496-9, R. W. Van De Water, T. R. R. Pettus. Tetrahedron58, 5367 (2002).Search in Google Scholar

30b 10.1021/jo0479213, H. Wang, Y. Wang, K.-L. Han, X.-J. Peng. J. Org. Chem.70, 4910 (2005).Search in Google Scholar PubMed

30c M. Fischer, Y. Shi, B.-P. Zhao, V. Snieckus, P. Wan. Can. J. Chem.77, 868 (1999).Search in Google Scholar

31 10.1039/c1pp05317e, S. Arumugam, V. V. Popik. Photochem. Photobiol. Sci.11, 518 (2012).Search in Google Scholar PubMed

32 10.1021/la902553f, S. V. Orski, K. H. Fries, G. R. Sheppard, J. Locklin. Langmuir26, 2136 (2010).Search in Google Scholar PubMed

Online erschienen: 2013-5-23
Erschienen im Druck: 2013-5-23

© 2013 Walter de Gruyter GmbH, Berlin/Boston

Downloaded on 1.5.2024 from https://www.degruyter.com/document/doi/10.1351/PAC-CON-13-01-08/html
Scroll to top button