Neurolixis Inc., Dana Point, CA, USA.
Pierre Fabre Médicament, Castres, France.
J Pharm Pharmacol. 2017 Sep;69(9):1178-1190. doi: 10.1111/jphp.12762. Epub 2017 Jun 14.
NLX-112 (befiradol, F13640) is a selective serotonin 5-HT receptor agonist. Although it has been tested in vivo, little has been reported on its in vitro signal transduction profile.
NLX-112 was tested on G-protein activation, inhibition of adenylyl cyclase, ERK1/2 phosphorylation (pERK) and receptor internalization in recombinant cell lines. NLX-112 was also tested on G-protein activation in rat hippocampal membranes. Gα subunit mRNA expression in cell lines and rat brain tissue was quantified by quantitative PCR.
For all signalling measures, NLX-112 exhibited agonist efficacy greater than for reference compounds ((±)8-OH-DPAT or buspirone), but similar to the endogenous agonist, serotonin, and was more potent for pERK than other responses. In rat hippocampal membranes, NLX-112 stimulated 'total G-proteins' but, unlike (±)8-OH-DPAT and buspirone, was more potent for Gαo activation. Cell lines predominantly expressed Gαi1 and Gαi2 mRNA, with low levels of Gαo, whereas in rat brain Gαo subunits showed highest mRNA expression.
Unlike reference compounds, NLX-112 was a highly efficacious agonist in vitro, preferentially activating pERK in cell lines and Gαo proteins in rat hippocampal membranes. However, Gα subunit mRNA levels differ markedly between rat brain and cell lines, warranting caution when extrapolating from recombinant systems to native tissues.
NLX-112(befiradol,F13640)是一种选择性 5-羟色胺受体激动剂。尽管它已在体内进行了测试,但关于其体外信号转导谱的报道甚少。
在重组细胞系中测试 NLX-112 对 G 蛋白激活、腺苷酸环化酶抑制、ERK1/2 磷酸化(pERK)和受体内化的作用。还在大鼠海马膜中测试了 NLX-112 对 G 蛋白激活的作用。通过定量 PCR 定量测定细胞系和大鼠脑组织中的 Gα 亚基 mRNA 表达。
对于所有信号测量,NLX-112 的激动效力均大于参考化合物((±)8-OH-DPAT 或丁螺环酮),但与内源性激动剂 5-羟色胺相似,对 pERK 的作用强于其他反应。在大鼠海马膜中,NLX-112 刺激“总 G 蛋白”,但与(±)8-OH-DPAT 和丁螺环酮不同,对 Gαo 激活的作用更强。细胞系主要表达 Gαi1 和 Gαi2 mRNA,Gαo 水平较低,而在大鼠脑中,Gαo 亚基的 mRNA 表达水平最高。
与参考化合物不同,NLX-112 是一种在体外具有高效力的激动剂,在细胞系中优先激活 pERK,在大鼠海马膜中优先激活 Gαo 蛋白。然而,大鼠脑和细胞系之间 Gα 亚基 mRNA 水平差异很大,因此从重组系统推断到天然组织时需要谨慎。