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双点击荧光双点结合剂或交联探针的比他唑嗪-氰基染料

Bistetrazine-Cyanines as Double-Clicking Fluorogenic Two-Point Binder or Crosslinker Probes.

机构信息

Institute of Organic Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Magyar tudósok krt. 2., 1117, Budapest, Hungary.

Departments of Biology and Chemistry, Pharmacy and Geosciences, Johannes Gutenberg-University Mainz, Johannes-von-Mullerweg 6, 55128, Mainz, Germany.

出版信息

Chemistry. 2018 Jun 21;24(35):8841-8847. doi: 10.1002/chem.201800910. Epub 2018 May 29.

Abstract

Fluorogenic probes can be used to minimize the background fluorescence of unreacted and nonspecifically adsorbed reagents. The preceding years have brought substantial developments in the design and synthesis of bioorthogonally applicable fluorogenic systems mainly based on the quenching effects of azide and tetrazine moieties. The modulation power exerted by these bioorthogonal motifs typically becomes less efficient on more conjugated systems; that is, on probes with redshifted emission wavelength. To reach efficient quenching, that is, fluorogenicity, even in the red range of the spectrum, we present the synthesis, fluorogenic, and conjugation characterization of bistetrazine-cyanine probes with emission maxima between 600 and 620 nm. The probes can bind to genetically altered proteins harboring an 11-amino acid peptide tag with two appending cyclooctyne motifs. Moreover, we also demonstrate the use of these bistetrazines as fluorogenic, covalent cross-linkers between monocyclooctynylated proteins.

摘要

荧光探针可用于最小化未反应和非特异性吸附试剂的背景荧光。近年来,在设计和合成基于叠氮化物和四嗪部分的正交应用荧光系统方面取得了重大进展。这些生物正交基序施加的调制能力在更共轭的系统上通常效率较低;也就是说,在发射波长红移的探针上。为了达到有效的猝灭,即荧光性,即使在光谱的红色范围内,我们也提出了发射最大值在 600 到 620nm 之间的双四嗪-菁染料的合成、荧光和共轭特性。这些探针可以与带有两个附加环辛炔基序的 11 个氨基酸肽标签的基因改变蛋白结合。此外,我们还证明了这些双四嗪可以作为单环辛炔基化蛋白之间的荧光、共价交联剂。

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