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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and evaluation of bifunctional sGC regulators: Optimization of a connecting linker
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Synthesis and evaluation of bifunctional sGC regulators: Optimization of a connecting linker

机译:双功能sGC调节剂的合成和评估:连接接头的优化

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Hybrid molecules composed of PpIX and cobyrinic acid derivatives conjugated through linkers of varying length and composition were prepared via 1,3-dipolar cycloaddition (CuAAC) or amidation/esteryfication reactions. They were tested for activation of soluble guanylyl cyclase (sGC), a key enzyme in the NO/cGMP signaling pathway, by an in vitro GTP→cGMP conversion assay. Using purified heme-deficient sGC and truncated sGC variants lacking a heme-binding domain, we demonstrated that such hybrid molecules may activate sGC by targeting heme-binding and/or catalytic domain. While all conjugates activated sGC, only selected compounds served as bifunctional regulators and were capable of simultaneous targeting both heme and catalytic domains of sGC. The length and type of a linker connecting both components had a profound effect on the extent of sGC activation, indicating that the linker's type is crucial for their binding affinities with regulatory and catalytic domains. Only hybrids with the conjugated linker of 13-16 atom length synergistically target both domains and displayed the lowest EC_(50) and highest activating potency. Compounds with shorter connecting linkers were much less potent and were no more active than the cobyrinic acid component alone. The most active conjugate, which showed a 60-fold activation of sGC, was compound 11, in which PpIX and cobyrinic acid components are separated by 11 atoms chain with the triazole moiety in between.
机译:通过1,3-偶极环加成(CuAAC)或酰胺化/酯化反应,制备了由PpIX和通过不同长度和组成的接头缀合的共邻鸟氨酸衍生物组成的杂化分子。通过体外GTP→cGMP转化试验,对它们进行了可溶性鸟嘌呤环化酶(sGC)的活化测试,该酶是NO / cGMP信号传导途径中的关键酶。使用纯化的血红素缺陷性sGC和缺少血红素结合域的截短的sGC变体,我们证明了此类杂合分子可以通过靶向血红素结合和/或催化域来激活sGC。尽管所有结合物均激活sGC,但只有选定的化合物充当双功能调节剂,并且能够同时靶向sGC的血红素和催化域。连接两个组件的接头的长度和类型对sGC活化程度有深远影响,表明接头的类型对于它们与调节域和催化域的结合亲和力至关重要。只有具有13-16个原子长度的共轭连接子的杂合体才能协同靶向两个结构域,并显示出最低的EC_(50)和最高的激活效能。具有较短连接接头的化合物的效力要低得多,并且活性不比单独的邻苯二甲酸成分高。活性最高的共轭物显示出sGC的60倍活化,是化合物11,其中PpIX和cobyrinic酸成分被11个原子链隔开,三唑部分位于两者之间。

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