Click Chemistry and Bioorthogonal Reactions: Unprecedented Selectivity in the Labeling of Biological Molecules

被引:527
作者
Best, Michael D. [1 ]
机构
[1] Univ Tennessee, Dept Chem, Knoxville, TN 37996 USA
关键词
AZIDE-ALKYNE CYCLOADDITION; TRACELESS STAUDINGER LIGATION; RNA SYNTHETASE-ACTIVITY; ACTIVITY-BASED PROBES; ADDING AMINO-ACIDS; IN-VIVO; 1,3-DIPOLAR CYCLOADDITIONS; GENETIC-CODE; SIALIC-ACID; COPPER-FREE;
D O I
10.1021/bi9007726
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In recent years, a number of bioorthogonal reactions have been developed, exemplified by click chemistry, that enable the efficient formation of a specific product, even within a highly complex chemical environment. While the exquisite selectivity and reliability of these transformations have led to their broad application in diverse research areas, they have proven to be particularly beneficial to biological studies. In this regard, the ability to rationally incorporate reactive tags onto a biomolecular target and subsequently achieve high selectivity in tag derivatization within a complex biological sample has revolutionized the toolbox that is available for addressing fundamental issues. Herein, an introduction to the impact of click chemistry and other bioorthogonal reactions on the study of biological systems is presented. This includes discussion of the philosophy behind click chemistry, the details and benefits of bioorthogonal reactions that have been developed, and examples of recent innovative approaches that have effectively exploited these transformations to study cellular processes. For the latter, the impacts of bioorthogonal reactions on drug design (i.e., in situ combinatorial drug design), biomolecule labeling and detection (site-specific derivatization of proteins, viruses, sugars, DNA, RNA, and lipids), and the recent strategy of activity-based protein profiling are highlighted.
引用
收藏
页码:6571 / 6584
页数:14
相关论文
共 165 条
[1]   A comparative study of bioorthogonal reactions with azides [J].
Agard, Nicholas J. ;
Baskin, Jeremy M. ;
Prescher, Jennifer A. ;
Lo, Anderson ;
Bertozzi, Carolyn R. .
ACS CHEMICAL BIOLOGY, 2006, 1 (10) :644-648
[2]   A strain-promoted [3+2] azide-alkyne cycloaddition for covalent modification of blomolecules in living systems [J].
Agard, NJ ;
Prescher, JA ;
Bertozzi, CR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (46) :15046-15047
[3]   Mechanism of carbamate inactivation of FAAH: Implications for the design of covalent inhibitors and in vivo functional probes for enzymes [J].
Alexander, JP ;
Cravatt, BF .
CHEMISTRY & BIOLOGY, 2005, 12 (11) :1179-1187
[4]   The role of phosphatidic acid in the regulation of the Ras/MEK/Erk signaling cascade [J].
Andresen, BT ;
Rizzo, MA ;
Shome, K ;
Romero, G .
FEBS LETTERS, 2002, 531 (01) :65-68
[5]  
[Anonymous], 2005, POSTTRANSLATIONAL MO
[6]   Identification of proteases that regulate erythrocyte rupture by the malaria parasite Plasmodium falciparum [J].
Arastu-Kapur, Shirin ;
Ponder, Elizabeth L. ;
Fonovic, Ursa Pecar ;
Yeoh, Sharon ;
Yuan, Fang ;
Fonovic, Marko ;
Grainger, Munira ;
Phillips, Carolyn I. ;
Powers, James C. ;
Bogyo, Matthew .
NATURE CHEMICAL BIOLOGY, 2008, 4 (03) :203-213
[7]   A new chemical probe for proteomics of carbohydrate-binding proteins [J].
Ballell, L ;
Alink, KJ ;
Slijper, M ;
Versluis, C ;
Liskamp, RMJ ;
Pieters, RJ .
CHEMBIOCHEM, 2005, 6 (02) :291-295
[8]   A new chemical probe for the detection of the cancer-linked galectin-3 [J].
Ballell, Lluis ;
van Scherpenzeel, Monique ;
Buchalova, Katerina ;
Liskamp, Rob M. J. ;
Pieters, Roland J. .
ORGANIC & BIOMOLECULAR CHEMISTRY, 2006, 4 (23) :4387-4394
[9]   Discovering disease-associated enzymes by proteome reactivity profiling [J].
Barglow, KT ;
Cravatt, BF .
CHEMISTRY & BIOLOGY, 2004, 11 (11) :1523-1531
[10]   Bioorthogonal click chemistry: Covalent labeling in living systems [J].
Baskin, Jeremy M. ;
Bertozzi, Carolyn R. .
QSAR & COMBINATORIAL SCIENCE, 2007, 26 (11-12) :1211-1219