Multiplexed Analysis of Protein–Ligand Interactions by Fluorescence Anisotropy
in a Microfluidic Platform
Posted on 2015-12-17 - 05:00
Homogeneous assay platforms for measuring
protein–ligand
interactions are highly valued due to their potential for high-throughput
screening. However, the implementation of these multiplexed assays
in conventional microplate formats is considerably expensive due to
the large amounts of reagents required and the need for automation.
We implemented a homogeneous fluorescence anisotropy-based binding
assay in an automated microfluidic chip to simultaneously interrogate
>2300 pairwise interactions. We demonstrated the utility of this
platform
in determining the binding affinities between chromatin-regulatory
proteins and different post-translationally modified histone peptides.
The microfluidic chip assay produces comparable results to conventional
microtiter plate assays, yet requires 2 orders of magnitude less sample
and an order of magnitude fewer pipetting steps. This approach enables
one to use small samples for medium-scale screening and could ease
the bottleneck of large-scale protein purification.
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Cheow, Lih Feng; Viswanathan, Ramya; Chin, Chee-Sing; Jennifer, Nancy; Jones, Robert
C.; Guccione, Ernesto; et al. (2015). Multiplexed Analysis of Protein–Ligand Interactions by Fluorescence Anisotropy
in a Microfluidic Platform. ACS Publications. Collection. https://doi.org/10.1021/ac502605f