Kozma Eszter, Demeter Orsolya, Kele Péter
Chemical Biology Research Group, Institute of Organic Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences, 1117 Magyar tudósok krt. 2, Budapest, Hungary.
Chembiochem. 2017 Mar 16;18(6):486-501. doi: 10.1002/cbic.201600607. Epub 2017 Feb 1.
Bio-orthogonal labelling schemes based on inverse-electron-demand Diels-Alder (IEDDA) cycloaddition have attracted much attention in chemical biology recently. The appealing features of this reaction, such as the fast reaction kinetics, fully bio-orthogonal nature and high selectivity, have helped chemical biologists gain deeper understanding of biochemical processes at the molecular level. Listing the components and discussing the possibilities and limitations of these reagents, we provide a recent snapshot of the field of IEDDA-based biomolecular manipulation with special focus on fluorescent modulation approaches through the use of bio-orthogonalized building blocks. At the end, we discuss challenges that need to be addressed for further developments in order to overcome recent limitations and to enable researchers to answer biomolecular questions in more detail.
基于逆电子需求狄尔斯-阿尔德(IEDDA)环加成反应的生物正交标记方案最近在化学生物学领域引起了广泛关注。该反应具有吸引人的特点,如快速的反应动力学、完全生物正交的性质和高选择性,有助于化学生物学家在分子水平上更深入地理解生化过程。我们列出了这些试剂的成分,并讨论了它们的可能性和局限性,提供了基于IEDDA的生物分子操作领域的最新概况,特别关注通过使用生物正交化构建块的荧光调制方法。最后,我们讨论了为实现进一步发展需要解决的挑战,以克服近期的局限性,并使研究人员能够更详细地回答生物分子问题。