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首页> 外文期刊>Journal of Medicinal Chemistry >Identification of new functional inhibitors of acid sphingomyelinase using a structure-property-activity relation model
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Identification of new functional inhibitors of acid sphingomyelinase using a structure-property-activity relation model

机译:使用结构-性质-活性关系模型鉴定酸性鞘磷脂酶的新功能抑制剂

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Some organic weak bases induce a detachment from inner lysosomal membranes and subsequent inactivation of acid sphingomyelinase (ASM) and thus work as functional ASM inhibitors. The aim of the present investigation was to develop a structure-property-activity relation (SPAR) model in order to specify the structural and physicochernical characteristics of probes capable of functionally inhibiting ASM. High pK(a) and high log P values are necessary but not sufficient preconditions for functional inhibition of ASM. The experimental data supported the requirement of an additional factor, which is necessary for functional inhibition of ASM. This factor k is related to the steric hindrance of the most basic nitrogen atom and presumably modulates the free presentation of a protonated nitrogen atom at the inner lysosomal surface. During the course of the study, we characterized 26 new functional ASM inhibitors, including doxepine 63, fluoxetine 104, maprotiline 109, nortriptyline 114, paroxetine 118, sertraline 124, suloctidil 125, and terfenadine 127.
机译:一些有机弱碱会诱导从溶酶体膜的内部脱离,并随后使酸性鞘磷脂酶(ASM)失活,因此可以用作功能性ASM抑制剂。本研究的目的是开发一种结构-性质-活性关系(SPAR)模型,以便确定能够功能性抑制ASM的探针的结构和物理化学特性。高pK(a)和高log P值是ASM功能抑制的必要前提,但不是充分前提。实验数据支持对附加因子的要求,这对于ASM的功能抑制是必需的。该因子k与最碱性氮原子的空间位阻有关,并可能调节溶酶体内部表面的质子化氮原子的自由呈递。在研究过程中,我们鉴定了26种新的功能性ASM抑制剂,包括多西平63,氟西汀104,马普替林109,去甲替林114,帕罗西汀118,舍曲林124,苏舒替尼125和特非那定127。

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