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首页> 外文期刊>Journal of Medicinal Chemistry >Discovery, synthesis, and biological evaluation of novel SMN protein modulators
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Discovery, synthesis, and biological evaluation of novel SMN protein modulators

机译:新型SMN蛋白调节剂的发现,合成和生物学评估

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Spinal muscular atrophy (SMA) is an autosomal recessive disorder affecting the expression or function of survival motor neuron protein (SMN) due to the homozygous deletion or rare point mutations in the survival motor neuron gene 1 (SMN1). The human genome includes a second nearly identical gene called SMN2 that is retained in SMA. SMN2 transcripts undergo alternative splicing with reduced levels of SMN. Up-regulation of SMN2 expression, modification of its splicing, or inhibition of proteolysis of the truncated protein derived from SMN2 have been discussed as potential therapeutic strategies for SMA. In this manuscript, we detail the discovery of a series of arylpiperidines as novel modulators of SMN protein. Systematic hit-to-lead efforts significantly improved potency and efficacy of the series in the primary and orthogonal assays. Structure-property relationships including microsomal stability, cell permeability, and in vivo pharmacokinetics (PK) studies were also investigated. We anticipate that a lead candidate chosen from this series may serve as a useful probe for exploring the therapeutic benefits of SMN protein up-regulation in SMA animal models and a starting point for clinical development.
机译:脊髓性肌萎缩症(SMA)是一种常染色体隐性遗传疾病,由于生存运动神经元基因1(SMN1)的纯合缺失或稀有点突变而影响生存运动神经元蛋白(SMN)的表达或功能。人类基因组包含第二个几乎相同的称为SMN2的基因,该基因保留在SMA中。 SMN2转录本经过选择性剪接,降低了SMN的水平。已经讨论了SMN2表达的上调,其剪接的修饰或对源自SMN2的截短蛋白的蛋白水解的抑制作为SMA的潜在治疗策略。在这份手稿中,我们详细介绍了一系列芳基哌啶作为SMN蛋白的新型调节剂的发现。系统化的从头到尾的努力显着提高了该系列在主要和正交试验中的效价和功效。还研究了结构性质关系,包括微粒体稳定性,细胞通透性和体内药代动力学(PK)研究。我们预计,从该系列中选择的一个主要候选人可能会成为探索SMA动物模型中SMN蛋白上调的治疗益处和临床开发起点的有用探针。

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