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Evaluation of Synthetic CytochromeP450-Mimetic Metalloporphyrins To Facilitate BiomimeticBiotransformation of a Series of mGlu5 Allosteric Ligands

机译:合成细胞色素的评价P450模拟金属卟啉促进仿生一系列mGlu5变构配体的生物转化

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摘要

Allosteric ligands within a given chemotype can have the propensity to display a wide range of pharmacology, as well as unexpected changes in GPCR subtype selectivity, typically mediated by single-atom modifications to the ligand. Due to the unexpected nature of these “molecular switches”, chemotypes with this property are typically abandoned in lead optimization. Recently, we have found that in vivo oxidative metabolism by CYP450s can also engender molecular switches within allosteric ligands, changing the mode of pharmacology and leading to unwanted toxicity. We required a higher-throughput approach to assess in vivo metabolic molecular switches, and we turned to a “synthetic liver”, a 96 well kit of biomimetic catalysts (e.g., metalloporphyrins) to rapidly survey a broad panel of synthetic CYP450s’ ability to oxidize/“metabolize” an mGlu5 PAM (VU0403602) known to undergo an in vivo CYP450-mediated molecular switch. While the synthetic CYP450s did generate a number of oxidative “metabolites” at known “hotspots”, several of which proved to be pure mGlu5 PAMs comparable in potency to the parent, the known CYP450-mediated in vivo ago-PAM metabolite, namely, VU0453103, was notformed. Thus, this technology platform has potential to identify hotspots for oxidative metabolism and produce active metabolites of small-moleculeligands in a high-throughput, scalable manner.
机译:给定化学型内的变构配体可能倾向于显示广泛的药理学,以及GPCR亚型选择性的意外变化,通常由对配体的单原子修饰介导。由于这些“分子开关”的出乎意料的性质,具有这种特性的化学型通常在铅优化中被放弃。最近,我们发现CYP450的体内氧化代谢也可引起变构配体内的分子转换,从而改变药理学模式并导致不良的毒性。我们需要一种更高通量的方法来评估体内代谢分子的转换,我们转向了一个“合成肝脏”,这是一种96孔仿生催化剂(例如金属卟啉)试剂盒,可以快速调查广泛的合成CYP450的氧化能力。 /“代谢”已知经历体内CYP450介导的分子转换的mGlu5 PAM(VU0403602)。尽管合成CYP450确实在已知的“热态”下产生了许多氧化性“代谢物”斑点”,其中几个被证明是纯mGlu5 PAM,其功效与亲本相当,已知的CYP450介导的体内前PAM代谢物即VU0453103并非如此。形成。因此,该技术平台有潜力识别热点氧化代谢的斑点并产生小分子活性代谢产物高通量,可扩展的配体。

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