fluorescent ligands
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2021 ◽  
Author(s):  
Max Erhard Huber ◽  
Lara Toy ◽  
Maximilian Franz Schmidt ◽  
Hannah Vogt ◽  
Julian Budzinski ◽  
...  

Author(s):  
Max Erhard Huber ◽  
Lara Toy ◽  
Maximilian Franz Schmidt ◽  
Hannah Vogt ◽  
Julian Budzinski ◽  
...  

2021 ◽  
Author(s):  
Sérgio Marques ◽  
Michaela Slanska ◽  
Klaudia Chmelova ◽  
Radka Chaloupkova ◽  
Martin Marek ◽  
...  

HaloTag labeling technology has introduced unrivaled potential in protein chemistry, molecular and cellular biology. A wide variety of ligands have been developed to meet the specific needs of diverse applications, but only a single protein tag, DhaAHT, is routinely used for their incorporation. Following a systematic kinetic and computational analysis of different reporters, tetramethylrhodamine and three 4-stilbazolium-based fluorescent ligands, we showed that the mechanism of incorporating different ligands depends both on the binding step and the efficiency of the chemical reaction. By studying the different haloalkane dehalogenases DhaA, LinB, and DmmA, we found that the architecture of the access tunnels is critical for the kinetics of both steps and the ligand specificity. We show that highly efficient labelling with specific ligands is achievable with natural dehalogenases. We propose a simple protocol for selecting the optimal protein tag for a specific ligand from a wide pool of available enzymes with diverse access tunnel architectures. The application of this protocol eliminates a need for expensive and laborious protein engineering.


Molecules ◽  
2021 ◽  
Vol 26 (13) ◽  
pp. 3848
Author(s):  
Parijat Sarkar ◽  
Kaleeckal G. Harikumar ◽  
Satinder S. Rawat ◽  
Sanjib Das ◽  
Tushar K. Chakraborty ◽  
...  

Serotonin is a neurotransmitter that plays a crucial role in the regulation of several behavioral and cognitive functions by binding to a number of different serotonin receptors present on the cell surface. We report here the synthesis and characterization of several novel fluorescent analogs of serotonin in which the fluorescent NBD (7-nitrobenz-2-oxa-1,3-diazol-4-yl) group is covalently attached to serotonin. The fluorescent ligands compete with the serotonin1A receptor specific radiolabeled agonist for binding to the receptor. Interestingly, these fluorescent ligands display a high environmental sensitivity of their fluorescence. Importantly, the human serotonin1A receptor stably expressed in CHO-K1 cells could be specifically labeled with one of the fluorescent ligands with minimal nonspecific labeling. Interestingly, we show by spectral imaging that the NBD-labeled ligand exhibits a red edge excitation shift (REES) of 29 nm when bound to the receptor, implying that it is localized in a restricted microenvironment. Taken together, our results show that NBD-labeled serotonin analogs offer an attractive fluorescent approach for elucidating the molecular environment of the serotonin binding site in serotonin receptors. In view of the multiple roles played by the serotonergic systems in the central and peripheral nervous systems, these fluorescent ligands would be useful in future studies involving serotonin receptors.


2021 ◽  
Vol 27 (34) ◽  
Author(s):  
Carlotta Borgarelli ◽  
Yvonne E. Klingl ◽  
Abril Escamilla‐Ayala ◽  
Sebastian Munck ◽  
Ludo Van Den Bosch ◽  
...  

2021 ◽  
pp. 105120
Author(s):  
Hang Zhang ◽  
Mingliang Zhang ◽  
Yi-Chao Zheng ◽  
Jin-Ge Zhang ◽  
Haiwei Xu

Author(s):  
Carlotta Borgarelli ◽  
Yvonne E. Klingl ◽  
Abril Escamilla-Ayala ◽  
Sebastian Munck ◽  
Ludo Van Den Bosch ◽  
...  

Toxins ◽  
2020 ◽  
Vol 12 (12) ◽  
pp. 802
Author(s):  
Oksana V. Nekrasova ◽  
Alexandra L. Primak ◽  
Anastasia A. Ignatova ◽  
Valery N. Novoseletsky ◽  
Olga V. Geras’kina ◽  
...  

Recently developed fluorescent protein-scorpion toxin chimeras (FP-Tx) show blocking activities for potassium voltage-gated channels of Kv1 family and retain almost fully pharmacological profiles of the parental peptide toxins (Kuzmenkov et al., Sci Rep. 2016, 6, 33314). Here we report on N-terminally green fluorescent protein (GFP)-tagged agitoxin 2 (GFP-L2-AgTx2) with high affinity and selectivity for the binding site of Kv1.3 channel involved in the pathogenesis of various (primarily of autoimmune origin) diseases. The basis for this selectivity relates to N-terminal location of GFP, since transposition of GFP to the C-terminus of AgTx2 recovered specific interactions with the Kv1.1 and Kv1.6 binding sites. Competitive binding experiments revealed that the binding site of GFP-L2-AgTx2 overlaps that of charybdotoxin, kaliotoxin 1, and agitoxin 2, the known Kv1.3-channel pore blockers. GFP-L2-AgTx2 was demonstrated to be applicable as a fluorescent probe to search for Kv1.3 pore blockers among individual compounds and in complex mixtures, to measure blocker affinities, and to visualize Kv1.3 distribution at the plasma membrane of Kv1.3-expressing HEK293 cells. Our studies show that definite combinations of fluorescent proteins and peptide blockers can result in considerable modulation of the natural blocker-channel binding profile yielding selective fluorescent ligands of certain channels.


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