| Literature DB >> 28111304 |
Ling Li1, Lijian Feng2, Minlong Shi2, Jue Zeng2, Zijun Chen2, Li Zhong2, Li Huang2, Weihui Guo2, Ying Huang2, Wei Qi2, Chris Lu2, En Li2, Kehao Zhao2, Justin Gu3.
Abstract
The EED (embryonic ectoderm development) subunit of the Polycomb repressive complex 2 (PRC2) plays an important role in the feed forward regulation of the PRC2 enzymatic activity. We recently identified a new class of allosteric PRC2 inhibitors that bind to the H3K27me3 pocket of EED. Multiple assays were developed and used to identify and characterize this type of PRC2 inhibitors. One of them is a genetically encoded EED biosensor based on the EED[G255D] mutant and the split firefly luciferase. This EED biosensor can detect the compound binding in the transfected cells and in the in vitro biochemical assays. Compared to other commonly used cellular assays, the EED biosensor assay has the advantage of shorter compound incubation with cells. The in vitro EED biosensor is much more sensitive than other label-free biophysical assays (e.g. DSF, ITC). Based on the crystal structure, the DSF data as well as the biosensor assay data, it's most likely that compound-induced increase in the luciferase activity of the EED[G255D] biosensor results from the decreased non-productive interactions between the EED subdomain and other subdomains within the biosensor construct. This new insight of the mechanism might help to broaden the use of the split luciferase based biosensors.Entities:
Keywords: Biosensor; EED; EED[G255D]; H3K27me3-pocket; PRC2; Split luciferase
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Year: 2017 PMID: 28111304 DOI: 10.1016/j.ab.2017.01.014
Source DB: PubMed Journal: Anal Biochem ISSN: 0003-2697 Impact factor: 3.365