Literature DB >> 27615059

Autoradiographic imaging and quantification of the high-affinity GHB binding sites in rodent brain using 3H-HOCPCA.

A B Klein1, T Bay1, I S Villumsen1, C B Falk-Petersen1, A Marek2, B Frølund1, R P Clausen1, H D Hansen3, G M Knudsen3, P Wellendorph4.   

Abstract

GHB (γ-hydroxybutyric acid) is a compound endogenous to mammalian brain with high structural resemblance to GABA. GHB possesses nanomolar-micromolar affinity for a unique population of binding sites, but the exact nature of these remains elusive. In this study we utilized the highly selective GHB analogue, 3-hydroxycyclopent-1-enecarboxylic acid (HOCPCA) as a tritiated version (3H-HOCPCA) to radioactively label the specific GHB high-affinity binding site and gain further insight into the density, distribution and developmental profile of this protein. We show that, in low nanomolar concentrations, 3H-HOCPCA displays excellent signal-to-noise ratios using rodent brain autoradiography, which makes it a valuable ligand for anatomical quantification of native GHB binding site levels. Our data confirmed that 3H-HOCPCA labels only the high-affinity specific GHB binding site, found in high density in cortical and hippocampal regions. The experiments revealed markedly stronger binding at pH 6.0 (Kd 73.8 nM) compared to pH 7.4 (Kd 2312 nM), as previously reported for other GHB radioligands but similar Bmax values. Using 3H-HOCPCA we analyzed the GHB binding protein profile during mouse brain development. Due to the high sensitivity of this radioligand, we were able to detect low levels of specific binding already at E15 in mouse brain, which increased progressively until adulthood. Collectively, we show that 3H-HOCPCA is a highly sensitive radioligand, offering advantages over the commonly used radioligand 3H-NCS-382, and thus a very suitable in vitro tool for qualitative and quantitative autoradiography of the GHB high-affinity site.
Copyright © 2016 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Expression; HOCPCA; Mouse brain development; Quantitative autoradiography; Radioligand; γ-hydroxybutyric acid

Mesh:

Substances:

Year:  2016        PMID: 27615059     DOI: 10.1016/j.neuint.2016.09.002

Source DB:  PubMed          Journal:  Neurochem Int        ISSN: 0197-0186            Impact factor:   3.921


  3 in total

1.  Toxicologic/transport properties of NCS-382, a γ-hydroxybutyrate (GHB) receptor ligand, in neuronal and epithelial cells: Therapeutic implications for SSADH deficiency, a GABA metabolic disorder.

Authors:  K R Vogel; G R Ainslie; A McConnell; J-B Roullet; K M Gibson
Journal:  Toxicol In Vitro       Date:  2017-10-12       Impact factor: 3.500

2.  Functional characterization of GABAA receptor-mediated modulation of cortical neuron network activity in microelectrode array recordings.

Authors:  Benjamin M Bader; Anne Steder; Anders Bue Klein; Bente Frølund; Olaf H U Schroeder; Anders A Jensen
Journal:  PLoS One       Date:  2017-10-13       Impact factor: 3.240

3.  GHB analogs confer neuroprotection through specific interaction with the CaMKIIα hub domain.

Authors:  Ulrike Leurs; Anders B Klein; Ethan D McSpadden; Nane Griem-Krey; Sara M Ø Solbak; Josh Houlton; Inge S Villumsen; Stine B Vogensen; Louise Hamborg; Stine J Gauger; Line B Palmelund; Anne Sofie G Larsen; Mohamed A Shehata; Christian D Kelstrup; Jesper V Olsen; Anders Bach; Robert O Burnie; D Steven Kerr; Emma K Gowing; Selina M W Teurlings; Chris C Chi; Christine L Gee; Bente Frølund; Birgitte R Kornum; Geeske M van Woerden; Rasmus P Clausen; John Kuriyan; Andrew N Clarkson; Petrine Wellendorph
Journal:  Proc Natl Acad Sci U S A       Date:  2021-08-03       Impact factor: 11.205

  3 in total

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