Photoaffinity Labeling and Quantitative Chemical Proteomics Identify LXRβ as the Functional Target of Enhancers of Astrocytic apoE. Issue 2 (18th February 2021)
- Record Type:
- Journal Article
- Title:
- Photoaffinity Labeling and Quantitative Chemical Proteomics Identify LXRβ as the Functional Target of Enhancers of Astrocytic apoE. Issue 2 (18th February 2021)
- Main Title:
- Photoaffinity Labeling and Quantitative Chemical Proteomics Identify LXRβ as the Functional Target of Enhancers of Astrocytic apoE
- Authors:
- Seneviratne, Uthpala
Huang, Zhen
am Ende, Christopher W.
Butler, Todd W.
Cleary, Leah
Dresselhaus, Erica
Evrard, Edelweiss
Fisher, Ethan L.
Green, Michael E.
Helal, Christopher J.
Humphrey, John M.
Lanyon, Lorraine F.
Marconi, Michael
Mukherjee, Paramita
Sciabola, Simone
Steppan, Claire M.
Sylvain, Emily K.
Tuttle, Jamison B.
Verhoest, Patrick R.
Wager, Travis T.
Xie, Longfei
Ramaswamy, Gayathri
Johnson, Douglas S.
Pettersson, Martin - Abstract:
- Summary: Utilizing a phenotypic screen, we identified chemical matter that increased astrocytic apoE secretion in vitro . We designed a clickable photoaffinity probe based on a pyrrolidine lead compound and carried out probe-based quantitative chemical proteomics in human astrocytoma CCF-STTG1 cells to identify liver x receptor β (LXRβ) as the target. Binding of the small molecule ligand stabilized LXRβ, as shown by cellular thermal shift assay (CETSA). In addition, we identified a probe-modified peptide by mass spectrometry and proposed a model where the photoaffinity probe is bound in the ligand-binding pocket of LXRβ. Taken together, our findings demonstrated that the lead chemical matter bound directly to LXRβ, and our results highlight the power of chemical proteomic approaches to identify the target of a phenotypic screening hit. Additionally, the LXR photoaffinity probe and lead compound described herein may serve as valuable tools to further evaluate the LXR pathway. Graphical Abstract: Highlights: A phenotypic screen identifies novel chemical matter regulating apoE secretion in vitro Chemical biology strategy identifies LXRβ as the functional target of phenotypic hit Study highlight the critical nature of counter-screening strategy as part of hit triage Photoaffinity probe and potent lead may serve as valuable tools to probe LXR biology Abstract : Phenotypic screens can potentially deliver first-in-class drugs. Seneviratne et al. describe a screen and hit triageSummary: Utilizing a phenotypic screen, we identified chemical matter that increased astrocytic apoE secretion in vitro . We designed a clickable photoaffinity probe based on a pyrrolidine lead compound and carried out probe-based quantitative chemical proteomics in human astrocytoma CCF-STTG1 cells to identify liver x receptor β (LXRβ) as the target. Binding of the small molecule ligand stabilized LXRβ, as shown by cellular thermal shift assay (CETSA). In addition, we identified a probe-modified peptide by mass spectrometry and proposed a model where the photoaffinity probe is bound in the ligand-binding pocket of LXRβ. Taken together, our findings demonstrated that the lead chemical matter bound directly to LXRβ, and our results highlight the power of chemical proteomic approaches to identify the target of a phenotypic screening hit. Additionally, the LXR photoaffinity probe and lead compound described herein may serve as valuable tools to further evaluate the LXR pathway. Graphical Abstract: Highlights: A phenotypic screen identifies novel chemical matter regulating apoE secretion in vitro Chemical biology strategy identifies LXRβ as the functional target of phenotypic hit Study highlight the critical nature of counter-screening strategy as part of hit triage Photoaffinity probe and potent lead may serve as valuable tools to probe LXR biology Abstract : Phenotypic screens can potentially deliver first-in-class drugs. Seneviratne et al. describe a screen and hit triage strategy to identify small molecule activators of apoE secretion in human astrocytes. The team applied comprehensive chemical biology tactics for target deconvolution to identify LXRβ as the target of the lead chemical matter disclosed. … (more)
- Is Part Of:
- Cell chemical biology. Volume 28:Issue 2(2021)
- Journal:
- Cell chemical biology
- Issue:
- Volume 28:Issue 2(2021)
- Issue Display:
- Volume 28, Issue 2 (2021)
- Year:
- 2021
- Volume:
- 28
- Issue:
- 2
- Issue Sort Value:
- 2021-0028-0002-0000
- Page Start:
- 148
- Page End:
- 157.e7
- Publication Date:
- 2021-02-18
- Subjects:
- chemical proteomics -- target identification -- CETSA -- apoE -- LXRβ -- phenotypic screening -- MOA
Biochemistry -- Periodicals
572.05 - Journal URLs:
- http://www.cell.com/cell-chemical-biology/home ↗
http://www.sciencedirect.com/ ↗ - DOI:
- 10.1016/j.chembiol.2020.09.002 ↗
- Languages:
- English
- ISSNs:
- 2451-9456
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3097.733000
British Library DSC - BLDSS-3PM
British Library HMNTS - ELD Digital store - Ingest File:
- 15790.xml