A Study of Ligand-binding Properties of Hepatocyte Nuclear Factor 4: a Study of the Ligand-binding Properties of Hepatocyte Nuclear Factor 4, Using a Dauda Fluorescence Displacement Assay - Nick Plant - Books - LAP LAMBERT Academic Publishing - 9783846580820 - February 22, 2012
In case cover and title do not match, the title is correct

A Study of Ligand-binding Properties of Hepatocyte Nuclear Factor 4: a Study of the Ligand-binding Properties of Hepatocyte Nuclear Factor 4, Using a Dauda Fluorescence Displacement Assay


Get an email once the item is available
Do you have a profile? Log in
Get notified about new Nick Plant releases
Add to your iMusic wish list

Not rated yet

Hepatocyte nuclear factor 4? (HNF4?) is a liver enriched transcription factor that belongs to the nuclear receptor family, and controls the expression of genes involved in various different functions, such as nutrient transport, metabolism, growth and differentiation. Recently, fatty acids and/or fatty acyl CoAs as well as some xenobiotics (e.g. hypolipidemic drugs) have been suggested as HNF4? ligands. The aim of this study was to identify potential ligands for HNF4?, using a DAUDA fluorescence displacement assay. LFABP was expressed and purified as a positive control, and used successfully to validate the DAUDA assay. Rat HNF4?LBD was successfully expressed and purified, therefore further work for ligand identification was performed using the rat HNF4?. Suitability of the DAUDA fluorescence displacement assay for screening of ligands for rat HNF4? was confirmed by a characteristic blue shift in fluorescence emission upon protein binding, as previously reported. Ligands screened in this study included five different fatty acids, palmitoyl CoA, and hypolipidemic xenobiotics of the fibrate family (fenofibrate, bezafibrate, clofibrate), as well as pioglitazone (a thionolidinedione).

Media Books     Paperback Book   (Book with soft cover and glued back)
Released February 22, 2012
ISBN13 9783846580820
Publishers LAP LAMBERT Academic Publishing
Pages 220
Dimensions 150 × 13 × 226 mm   ·   326 g
Language English  

More by Nick Plant

Show all